Prosecution Insights
Last updated: August 12, 2026
Application No. 16/172,465

Compact Illuminator, Imaging and Systems and the Use of the Same

Non-Final OA §103§112
Filed
Oct 26, 2018
Priority
Oct 26, 2017 — provisional 62/577,503
Examiner
THOMPSON, CURTIS A
Art Unit
1798
Tech Center
1700 — Chemical & Materials Engineering
Assignee
Essenlix Corporation
OA Round
9 (Non-Final)
62%
Grant Probability
Moderate
9-10
OA Rounds
0m
Est. Remaining
99%
With Interview

Examiner Intelligence

Grants 62% of resolved cases
62%
Career Allowance Rate
122 granted / 197 resolved
-3.1% vs TC avg
Strong +50% interview lift
Without
With
+50.1%
Interview Lift
resolved cases with interview
Typical timeline
3y 9m
Avg Prosecution
36 currently pending
Career history
240
Total Applications
across all art units

Statute-Specific Performance

§101
4.1%
-35.9% vs TC avg
§103
42.8%
+2.8% vs TC avg
§102
18.4%
-21.6% vs TC avg
§112
31.0%
-9.0% vs TC avg
Black line = Tech Center average estimate • Based on career data from 197 resolved cases

Office Action

§103 §112
DETAILED ACTION Notice of Pre-AIA or AIA Status The present application, filed on or after March 16, 2013, is being examined under the first inventor to file provisions of the AIA . Claim Status Claim 1, 3-4, 8-10, 14-53 are under examination. Claims 2, 5-7 and 11-13 have been canceled. Response to Amendment New claim objections have been set forth. Applicant’s amendments to the claims, received 07/14/2025, have overcome the 112(b) rejection(s) previously set forth in the Non-Final Office Action mailed on 04/14/2025. However, based on the claim amendments, new 112(b) rejection(s) have been set forth. Based on the amended claims and remarks received on 11/27/2019, the previous prior art rejection based on Schmitt has been modified to address the amended claims (see below). Claim Objections Claim 1 is objected to because of the following informalities: Claim 1 lines 20-22 have been amended to recite “wherein, and wherein …”. The examiner believes this is a grammatical/clerical mistake and should read “wherein …”. Appropriate correction is required. Claim Rejections - 35 USC § 112 The following is a quotation of 35 U.S.C. 112(b): (b) CONCLUSION.—The specification shall conclude with one or more claims particularly pointing out and distinctly claiming the subject matter which the inventor or a joint inventor regards as the invention. The following is a quotation of 35 U.S.C. 112 (pre-AIA ), second paragraph: The specification shall conclude with one or more claims particularly pointing out and distinctly claiming the subject matter which the applicant regards as his invention. Claims 15-16, 45-46, and 51 are rejected under 35 U.S.C. 112(b) or 35 U.S.C. 112 (pre-AIA ), second paragraph, as being indefinite for failing to particularly point out and distinctly claim the subject matter which the inventor or a joint inventor, or for pre-AIA the applicant regards as the invention. Claim 45 recites “wherein the assay device is a sample hold … and wherein the sample holder is the object”. This is unclear in view of amended claims 1 and 4, which claim 45 depends from. Specifically, claim 1 now recites “a receptacle slot for holding an assay device for holding the object”. It is unclear how the assay device holds the object if the assay device is the object. Further, claim 4 recites “inserting the assay device containing the object”. How can the assay device contain the object if the assay device is the object? Claim 46 is also rejected by its dependency from claim 45. Claims 15 and 51 recite “a first and a second plates”. Pluralization of the word “plates” renders the claim unclear as to whether applicant is attempting to define multiple first plates and multiple second plates, of if applicant is referring to the first and second plate collectively as “plates”. Perhaps applicant is attempting to recite “a first plate and a second plate” which are collectively “plates”? Claim 16 is also rejected by its dependency from claim 15. Claim Rejections - 35 USC § 103 In the event the determination of the status of the application as subject to AIA 35 U.S.C. 102 and 103 (or as subject to pre-AIA 35 U.S.C. 102 and 103) is incorrect, any correction of the statutory basis for the rejection will not be considered a new ground of rejection if the prior art relied upon, and the rationale supporting the rejection, would be the same under either status. The following is a quotation of 35 U.S.C. 103 which forms the basis for all obviousness rejections set forth in this Office action: A patent for a claimed invention may not be obtained, notwithstanding that the claimed invention is not identically disclosed as set forth in section 102, if the differences between the claimed invention and the prior art are such that the claimed invention as a whole would have been obvious before the effective filing date of the claimed invention to a person having ordinary skill in the art to which the claimed invention pertains. Patentability shall not be negated by the manner in which the invention was made. The factual inquiries set forth in Graham v. John Deere Co., 383 U.S. 1, 148 USPQ 459 (1966), that are applied for establishing a background for determining obviousness under 35 U.S.C. 103 are summarized as follows: 1. Determining the scope and contents of the prior art. 2. Ascertaining the differences between the prior art and the claims at issue. 3. Resolving the level of ordinary skill in the pertinent art. 4. Considering objective evidence present in the application indicating obviousness or nonobviousness. This application currently names joint inventors. In considering patentability of the claims the examiner presumes that the subject matter of the various claims was commonly owned as of the effective filing date of the claimed invention(s) absent any evidence to the contrary. Applicant is advised of the obligation under 37 CFR 1.56 to point out the inventor and effective filing dates of each claim that was not commonly owned as of the effective filing date of the later invention in order for the examiner to consider the applicability of 35 U.S.C. 102(b)(2)(C) for any potential 35 U.S.C. 102(a)(2) prior art against the later invention. Claim(s) 1, 3-4, 8, 14, 18, 20-21, 23, 27, 30, 32, 36, 41, and 52-53 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt et al. (US 2021/0208010; already of record – hereinafter “Schmitt”); already of record, and further in view of Fan (US 2017/0160534; already of record – hereinafter “Fan”). Regarding claim 1, Schmitt discloses a device for illuminating and imaging an object (Schmitt; fig. 7, [0058]), comprising: (a) an imager (Schmitt; “smartphone 700 that includes a camera”, fig. 7, [0058]); (b) a lens (Schmitt; fig. 6, #604, [0052]); (c) a passive illuminator and a light guide for illuminating the object (Schmitt; fig. 6, #606, #614, #616, [0054]), wherein the passive illuminator optically connects with the light guide (Schmitt disclose passive illuminator 616 optically connects with the light guide 614; [0054]), accepts light from one or both ends of the light guide (Schmitt; [0054]), and emits the light from a side wall of the passive illuminator towards the object (Schmitt; fig. 6, #616, [0054]. Schmitt discloses the distal portion 616 illuminates “the camera’s field of view” and “the aperture 624 has a portion sized and located to allow light conducted through the light pipe606 to be emitted from the distal portion 616 of the light pip 606 to illuminate the area in front of the contact member 610”; [0057]. The examiner notes the term “field of view” with respect to a camera describes the viewable area that can be imaged by a lens system, and is different from an “area in front of contact member 610”, later described in [0057]. Accordingly, the distal portion 616 emits light from a sidewall to illuminate the field of view through lens 604 and out of aperture 624 to illuminate the area in from of the contact member 610); and (d) an adaptor housing (Schmitt; fig. 6, 602/610, [0052]) houses an optical chamber that has an exit aperture (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired, figs. 6 & 7, [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]. Accordingly, cylindrical portion of frame 602 that houses the components is an optical chamber having an exit aperture between the lens of the camera on the smartphone and the frame 602 to allow the components to functionally attach and capture images; fig. 8, [0059]), an entrance aperture (Schmitt; the proximal portion of the passive illuminator 614 is configured to optically couple with the light source of the smartphone; [0054]. Therefore, the device 600 comprises an entrance aperture at the interface between the light source from the smartphone 700 and the proximal end of the passive illuminator 614), and an exposure aperture on the adaptor housing (Schmitt; fig. 6, #624, [0057]); and wherein the passive illuminator and the lens are positioned inside the adaptor housing (Schmitt; frame 602 houses components 604, 606, 608; fig. 6, [0052]), the passive illuminator surrounds the lens (Schmitt; the distal portion 616 comprises a ring with an aperture, an axis of the aperture can be aligned with an axis of the lens 604; fig. 6, [0054]), and the imager is positioned outside the adapter housing (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]), wherein the light guide receives light from the entrance aperture (Schmitt; proximal portion 614 of light pipe can be configured to optically couple with the light source of the smartphone; [0054]), wherein the exit aperture is positioned between the imager and the lens (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired; fig. 7, [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]), wherein, and wherein the adaptor housing reduces ambient light outside the adaptor housing entering inside the adaptor housing (Schmitt; frame 602 houses components 604, 606, 608; fig. 6-8, [0052]. NOTE: When the claimed and prior art products are identical or substantially identical in structure or composition, or are produced by identical or substantially identical processes, the prior art products necessarily possess the characteristics of the claimed product. See MPEP 2112.01. As stated in In re Best, 562 F.2d 1252, 1255 (CCPA 1977): Where, as here, the claimed and prior art products are identical or substantially identical, or are produced by identical or substantially identical processes, the PTO can require an applicant to prove that the prior art products do not necessarily or inherently possess the characteristics of his claimed product. Whether the rejection is based on “inherency” under 35 U.S.C. § 102, on “prima facie obviousness” under 35 U.S.C. § 103, jointly or alternatively, the burden of proof is the same, and its fairness is evidenced by the PTO’s inability to manufacture products or to obtain and compare prior art products. See MPEP 2112. Accordingly, because Schmitt discloses a frame 602 configured to house components 604, 606, and 608, which is comprised of a solid material, then the frame of Schmitt would be expected to have the same physical properties as the adaptor housing of applicants instantly claimed device). Schmitt does not teach (e) a receptacle slot for holding an assay device for holding the object therein, wherein the receptacle slot is positioned outside of the adaptor housing and optically aligned with the exposure aperture. However, Fan teach the analogous art of a device for illuminating and imaging an object (Fan; fig. 3, #300, [0019]), comprising an adaptor housing comprising an exposure aperture (Fan teach an adaptor housing comprising an optical chamber above the sample holder 303; fig. 3, [0021]. The examiner notes that light passes from the light emitting diode 321 and travels through the sample holder to an image sensor 343 to image the sample holder; fig. 3, [0022]. Accordingly, the adaptor housing comprising an exposure aperture to allow the image to be processed by the sensor 343) and (e) a receptacle slot for holding an assay device for holding the object therein (Fan teach a sample holder 303 for holding device 311 for holding an object; fig. 3, [0021]) wherein the receptacle slot is positioned outside of the adaptor housing and optically aligned with the exposure aperture (Fan; fig. 3, ;0022]). It would have been obvious of ordinary skill in the art before the effective filing date to modify the device for illuminating and imaging of Schmitt to comprise a receptacle slot for holding a device position outside of the adaptor housing and facing the exposure aperture, as taught by fan, because fan teaches the receptacle slot for holding a device position outside the adaptor housing allows the image sensor 343 to receive light from a light source 307 below the sample holder 303 to illuminate the device to be imaged; [0019]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since Schmitt and Fan both teach devices for illuminating and imaging comprising an adaptor housing. Regarding claim 3, Schmitt discloses an apparatus for illuminating and imaging and object (Schmitt; fig. 7, [0058]), comprising: (a) a mobile phone that has a camera as an imager and a light source (Schmitt; “smartphone 700 that includes a camera”, fig. 7, [0054, 0058]); and (b) a lens (Schmitt; fig. 6, #604, [0052]); (c) a passive illuminator and a light guide for illuminating the object (Schmitt; fig. 6, #606, #614, #616, [0054]), wherein the passive illuminator optically connects with the light guide (Schmitt disclose passive illuminator 616 optically connects with the light guide 614; [0054]), accepts light from one or both ends of the light guide (Schmitt; fig. 6, [0054]), and emits the light from a side wall of the passive illuminator for illuminating the object (Schmitt; fig. 6, #616, [0054]. Schmitt discloses the distal portion 616 illuminates “the camera’s field of view” and “the aperture 624 has a portion sized and located to allow light conducted through the light pipe606 to be emitted from the distal portion 616 of the light pip 606 to illuminate the area in front of the contact member 610”; [0057]. The examiner notes the term “field of view” with respect to a camera describes the viewable area that can be imaged by a lens system, and is different from an “area in front of contact member 610”, later described in [0057]. Accordingly, the distal portion 616 emits light from a sidewall to illuminate the field of view through lens 604 and out of aperture 624 to illuminate the area in from of the contact member 610), (d) an adaptor housing (Schmitt; fig. 6, 602/610, [0052]) comprising an optical chamber that has an exit aperture (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired, figs. 6 & 7, [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]. Accordingly, cylindrical portion of frame 602 that houses the components is an optical chamber having an exit aperture between the lens of the camera on the smartphone and the frame 602 to allow the components to functionally attach and capture images; fig. 8, [0059]), an entrance aperture (Schmitt; the proximal portion of the passive illuminator 614 is configured to optically couple with the light source of the smartphone; [0054]. Therefore, the device 600 comprises an entrance aperture at the interface between the light source from the smartphone 700 and the proximal end of the passive illuminator 614), and an exposure aperture (Schmitt; fig. 6, #624, [0057]); and wherein the passive illuminator and the lens are positioned inside the adaptor housing (Schmitt; frame 602 houses components 604, 606, 608; fig. 6, [0052]), the passive illuminator surrounds the lens (Schmitt; the distal portion 616 comprises a ring with an aperture, an axis of the aperture can be aligned with an axis of the lens 604; fig. 6, [0054]), and the imager is positioned outside the optical chamber (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]); wherein the lightguide receives light from the entrance aperture (Schmitt; proximal portion 614 of light pipe can be configured to optically couple with the light source of the smartphone; [0054]); wherein the exit aperture is positioned between the imager and the lens (Schmitt; the adaptor 702 slidably couples with attachment 600 such that the attachment 600 can be slid into position with the camera when the functionality of attachment 600 is desired; fig. 7, [0058], and frame 602 is configured to position each of the components 604, 606, and 608 in a known relationship with a camera of the smartphone; fig. 7, [0052]), wherein the imager, the exit aperture, the lens, and the exposure aperture are optically aligned for imaging the object (Schmitt; frame 602 can align the optical axis of the lens 604 with an optical axis of the camera of the smartphone; figs. 6-8, [0052], an axis of the aperture of the distal portion 616 of the light pipe can be aligned with an axis of the lens 604; [0054], and the exposure aperture 624 on contact member 610 is optically aligned with lens 604; fig. 7); and wherein the adaptor housing reduces ambient light outside the adaptor housing entering inside the adaptor housing (Schmitt; frame 602 houses components 604, 606, 608; fig. 6-8, [0052]. NOTE: When the claimed and prior art products are identical or substantially identical in structure or composition, or are produced by identical or substantially identical processes, the prior art products necessarily possess the characteristics of the claimed product. See MPEP 2112.01. As stated in In re Best, 562 F.2d 1252, 1255 (CCPA 1977): Where, as here, the claimed and prior art products are identical or substantially identical, or are produced by identical or substantially identical processes, the PTO can require an applicant to prove that the prior art products do not necessarily or inherently possess the characteristics of his claimed product. Whether the rejection is based on “inherency” under 35 U.S.C. § 102, on “prima facie obviousness” under 35 U.S.C. § 103, jointly or alternatively, the burden of proof is the same, and its fairness is evidenced by the PTO’s inability to manufacture products or to obtain and compare prior art products. See MPEP 2112. Accordingly, because Schmitt discloses a frame 602 configured to house components 604, 606, and 608, which is comprised of a solid material, then the frame of Schmitt would be expected to have the same physical properties as the adaptor housing of applicants instantly claimed device). Schmitt does not teach (e) a receptacle slot for holding an assay device for holding the sample therein, wherein the receptacle slot is positioned outside of the adaptor housing and optically aligned with the exposure aperture, the imager, the exit aperture, and the lens, for imaging the object in the assay device positioned in the receptacle slot. However, Fan teach the analogous art of a device for illuminating and imaging an object (Fan; fig. 3, #300, [0019]), comprising a mobile phone that has a camera as an imager (Fan; fig. 3, #343, [0018]), a lens (Fan; fig. 3, #301, [0019]), an adaptor housing comprising an exit aperture, and an exposure aperture (Fan teach an adaptor housing comprising an optical chamber above the sample holder 303; fig. 3, [0021]. The examiner notes that light passes from the light emitting diode 321 and travels through the sample holder to an image sensor 343 to image the sample holder; fig. 3, [0022]. Accordingly, the device and adaptor housing comprises an exit aperture, an exposure aperture, and a lens optically aligned to allow the image to be processed by the sensor 343) and (e) a receptacle slot for holding an assay device therein (Fan teach a sample holder 303 for holding device 311; fig. 3, [0021]) wherein the receptacle slot is positioned outside of the adaptor housing and optically aligned with the exposure aperture, the imager, the exit aperture, and the lens, for imaging the object in the assay device positioned in the receptacle slot (Fan; fig. 3, ;0022]). It would have been obvious of ordinary skill in the art before the effective filing date to modify the device for illuminating and imaging of Schmitt to comprise a receptacle slot for holding a device position outside of the adaptor housing and optically aligned with the exposure aperture, the image, the exit aperture, and the lens for imaging the object, as taught by fan, because fan teaches the receptacle position for holding a device outside the adaptor housing allows the image sensor 343 to receive light from a light source 307 to illuminate the object being imaged; [0019]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since Schmitt and Fan bot teach devices for illuminating and imaging comprising an adaptor housing. Regarding claim 4, modified Schmitt teach a method for illuminating and imaging an object, the method comprising: (a) providing the device of claim 1 (The device of claim 1 has previously been discussed above); (b) inserting the assay device containing the object into the receptacle slot; (c) illuminating the object using the passive illuminator; and (d) imaging the object with the imager (The modification of the device for illuminating and imaging of Schmitt to comprise a receptacle slot for holding a device position outside of the adaptor housing and facing the exposure aperture, as taught by fan, has previously been discussed in claim 1 above. Fan disclose inserting the assay device containing the object into the receptacle slot (Fan; fig. 3, #311). Additionally, the modification of the device for illuminating and imaging an object of Schmitt to comprise the receptacle slot for holding the assay device would result in illuminating the object using the passive illuminator, and imaging the object with the imager of Schmitt; [0054, 0057-0058]). Regarding claim 8, modified Schmitt teach the apparatus of claim 3 above, wherein the passive illuminator is in a form of a ring configured to surround an optical axis of the lens (Schmitt; fig. 6, [0054]). Regarding claim 14, modified Schmitt teach the apparatus of claim 3 above, wherein the exit aperture is disposed at a first side of the adaptor housing (Schmitt; exit aperture aligns with camera on smart phone), the exposure aperture is disposed at a second side of the adaptor housing (Schmitt; exposure aperture 624 is on an opposite side of the housing as the exit aperture which aligns with the camera on the smartphone; fig. 6), wherein the light guide has a first end aligned with the entrance aperture of the adaptor housing (Schmitt; [0054]), and wherein each of the entrance aperture, the exit aperture, and the exposure aperture is optionally or removably covered with a window (Schmitt; figs. 6-8. Note: The exit aperture, the exposure aperture, and the entrance aperture have previously been discussed in claim 3 above). Regarding claim 18, modified Schmitt discloses the apparatus of claim 3 above. Modified Schmitt does not explicitly teach wherein the distance between the passive illuminator and an outside peripheral of the imager is in a range of 2 mm to 50 mm. However, Schmitt does teach a distance between the passive illuminator and an outside peripheral of the imager (Schmitt teaches the passive illuminator 606 is disposed within the adaptor 602 that attaches to the mobile phone; fig. 7, [0058]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the distance between the passive illuminator and an outside peripheral of the imager of Schmitt such that the distance is in a range of 2 mm to 50 mm, because the distance between the passive illuminator and an outside peripheral of the imager in the range of 2 mm to 50 mm is a design choice that would achieve a desired focal length between the lens 604 optically aligned within the passive illuminator 606 and the camera on the smart phone, thereby achieving the ability to focus on objects at various distances; [0054]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since Schmitt teaches a distance between the passive illuminator and the outside peripheral of the imager for imaging an object. Regarding claim 20, modified Schmitt teach the device of claim 1 above, wherein the passive illuminator has a rotationally symmetric shape (Schmitt; “the distal portion 616 comprises a ring with an aperture”, fig. 6, [0054]). Regarding claim 21, modified Schmitt teach the device of claim 1 above, wherein the passive illuminator has a rotationally non-symmetric shape (Schmitt; proximal portion 614 is linear, fig. 6, [0054]). Regarding claim 23, modified Schmitt teach the device of claim 1 above, wherein the passive illuminator has a shape of a convex polygon, a star polygon, an ellipse, or a circle (Schmitt; fig. 6, [0054]). Regarding claim 27, modified Schmitt teach the device of claim 1 above, wherein the passive illuminator has a ring shape that surrounds an optical axis of the lens (Schmitt; figs. 7-8, [0058-0059]). Regarding claim 30, modified Schmitt teach the device of claim 1 above, further comprising a light source that inputs light into one end of the passive illuminator (Schmitt; fig. 7, [0054]). Regarding claim 32, modified Schmitt teach the device of claim 1 above, further comprising a light source that is supplied by a smartphone (Schmitt; fig. 7, [0054]). Regarding claim 36, modified Schmitt teach the method of claim 4 above, wherein the assay device is a sample holder (The modification of the adapter housing of Schmitt, to further comprise a receptacle slot for holding an assay device therein, as taught by Fan, has previously been discussed in claims 1 and 4 above. Fan additionally teach the assay device for imaging is a sample holder 303/311; [0021-0022]). Regarding claim 41, modified Schmitt teach the method of claim 4 above, wherein the assay device is a sample, and wherein the imaging is for a measurement of an analyte in the sample (The modification of the adapter housing of Schmitt, to further comprise a receptacle slot for holding an assay device therein, as taught by Fan, has previously been discussed in claims 1 and 4 above. Fan additionally teach the assay device is a sample for sample analysis; fig. 5, [0010, 0026-0029]. Note: What the image is for relates to function/intended use. However, functional language does not add any further structure to an apparatus beyond that of a capability. Apparatus claims must distinguish over the prior art in terms of structure rather than function. See MPEP 2114). Regarding claim 52, modified Schmitt teach the apparatus of claim 1 above, further the receptacle slot having two side walls forming a cavity for holding the assay device therein (The modification of the adapter housing of Schmitt, to further comprise a receptacle slot for holding a device therein, as taught by Fan, has previously been discussed in claim 1 above. Fan disclose the receptacle slot is formed by an upper side wall and bottom side wall and device 311 is inserted thereinto). Regarding claim 53, modified Schmitt teach the apparatus of claim 1 above, wherein the exposure aperture, the lens, the exit aperture, and the imager are optically aligned in sequence to create a light path from the exposure aperture to the imager (Schmitt teach the exposure aperture 624, lens 604, exit aperture between the lens of the camera on the smartphone and the frame 602, and the imager 700 are optically aligned in sequence from the exposure aperture to the imager; fig. 7). Claim 9 is rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Larsen (US 2005/0148085; already of record – hereinafter “Larsen”). Regarding claim 9, modified Schmitt discloses the apparatus of claim 3 above, further comprising a lens in the camera of the mobile phone (Schmitt discloses smartphone 700 comprises a camera; fig. 7, [0058]. NOTE: When the claimed and prior art products are identical or substantially identical in structure or composition, or are produced by identical or substantially identical processes, the prior art products necessarily possess the characteristics of the claimed product. See MPEP 2112.01. As stated in In re Best, 562 F.2d 1252, 1255 (CCPA 1977): Where, as here, the claimed and prior art products are identical or substantially identical, or are produced by identical or substantially identical processes, the PTO can require an applicant to prove that the prior art products do not necessarily or inherently possess the characteristics of his claimed product. Whether the rejection is based on “inherency” under 35 U.S.C. § 102, on “prima facie obviousness” under 35 U.S.C. § 103, jointly or alternatively, the burden of proof is the same, and its fairness is evidenced by the PTO’s inability to manufacture products or to obtain and compare prior art products. See MPEP 2112. Accordingly, because Schmitt discloses a smartphone that includes a camera, then the smartphone camera of Schmitt would be expected to have the same physical lens as the smartphone lens of applicants instantly claimed device), and the adaptor housing (Schmitt; fig. 6, 602/610, [0052]). Modified Schmitt does not teach an auxiliary lens having an optical axis aligned with an optical axis of the lens in the camera of the mobile phone when the adaptor housing is engaged with the mobile phone, wherein the auxiliary lens has a diameter in a range of 2 mm to 15 mm. However, Larsen teaches the analogous art of a camera (Larsen; fig. 14, #1401, [0338]) comprising a lens and an auxiliary lens having an optical axis aligned with an optical axis of the camera (Larsen; fig. 14, #1402, [0338, 0342]) wherein the auxiliary lens has a diameter that is 9mm. It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the apparatus for illuminating and imaging an object of modified Schmitt to further comprise an auxiliary lens having an optical axis aligned with an optical axis of the lens in the camera, wherein the auxiliary lens has a diameter of 9 mm, as taught by Larsen, because Larsen teaches the auxiliary lens is used for focusing the system and imaging a volume inside the sample compartments with the camera; [0338] and the auxiliary lens having a diameter of 9 mm is a low-cost achromatic lens with a focal length of 50 mm (Larsen; [0342]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Larsen both teach imaging systems comprising a lens and a camera for imaging an object. Claims 10, 24, and 47 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Kojima (US 2006/0209417; already of record - hereinafter “Kojima”). Regarding claim 10, modified Schmitt discloses the apparatus of claim 3 above. Modified Schmitt does not teach the apparatus further comprising an optical condenser configured to be placed in front of the light source of the mobile phone when the device is engaged with the mobile phone, or an optical condenser aligned with the entrance aperture of the adaptor housing. However, Kojima teaches the analogous art of an apparatus for illuminating and imaging an object (Kojima; fig. 1, [0035]), comprising: (a) a mobile phone that has a camera as an imager and a light source (Kojima; figs. 1 & 3, #1, #4a, #4b, [0035, 0038]), and c) a passive illuminator for illuminating the object (Kojima; fig. 2, #5, [0039]), wherein the passive illuminator comprises a light guide (Kojima; fig. 3, #5a, [0040]) that accepts light from one or both ends of the light guide (Kojima; fig. 3, #5a1, #5a2, [0040]), and d) an adaptor housing (Kojima discloses an adaptor housing 2 that is removably mounted on the camera-equipped cellular phone 1; figs. 1 & 2, #2, [0035]) further comprising an optical condenser configured to be placed in front of the light source of the mobile phone when the device is engaged with the mobile phone, or an optical condenser aligned with the entrance aperture of the adaptor housing (Kojima; fig. 3, #9, [0038]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the apparatus of modified Schmitt to further comprise an optical condenser configured to be plated in front of the light source of the mobile phone when the device is engaged with the mobile phone, as taught by Kojima, because Kojima teaches the optical condenser condenses a luminous flux emitted from the light source of mobile device (Kojima; [0038]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Kojima both teach the mobile phone as a light source that direct light to a passive illuminator within an adaptor housing. Regarding claim 24, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator. Modified Schmitt does not disclose wherein the passive illuminator is a single piece of illumination fiber. However, Kojima discloses the analogous art of a passive illuminator for illuminating an object (Kojima; fig. 2, #5, [0039]), wherein the passive illuminator is a single piece of illumination fiber (Kojima; [0039]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt to be a single piece of illumination fiber, as taught by Kojima, because Kojima teaches the single piece of illumination fiber may be manufactured from a resin material; [0039], thereby providing a cost effective and durable product with fewer components required. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Kojima both teach the mobile phone as a light source that direct light to a passive illuminator within an adaptor housing. Regarding claim 47, modified Schmitt discloses the apparatus of claim 3 above, further comprising: one light-guide that is different from the light guide of the passive illuminator, having an end thereof aligned with the entrance aperture of an optics chamber to cause light entering such end of the light-guide to travel through the light-guide to reach a corresponding end of the passive illuminator, wherein the passive illuminator has a first end optically coupled to a second end of the light-guide to cause light received at the first end of the light-guide to travel through the light-guide to enter the first end of the passive illuminator (Schmitt; fig. 6, #614, #616, [0054]). Modified Schmitt does not teach two light-guides, light travel through each light-guide. However, Kojima teaches the analogous art of an apparatus for illuminating and imaging an object (Kojima; fig. 1, [0035]), comprising: (a) a mobile phone that has a camera as an imager and a light source (Kojima; figs. 1 & 3, #1, #4a, #4b, [0035, 0038]), and c) a passive illuminator for illuminating the object (Kojima; fig. 2, #5, [0039]), wherein the passive illuminator comprises a light guide (Kojima; fig. 3, #5a, [0040]) and two light guides that are different from the light guide of the passive illuminator, each of the light guides connecting to one end of the passive illuminator, light travel through each light-guide (Kojima; fig. 3, #5a1, #5a2, [0040]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the light guide 614 of modified Schmitt with the two light guides, as taught by Kojima, because Kojima teaches the two light guides change the directions of the luminous fluxes emitted and condensed; [0040]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Kojima both teach an apparatus for illuminating and imaging an object with a passive illuminator and light source. Claims 15, 35, 37-38, 40, 43-45, 51 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Gausepohl (US 2006/0051253; already of record - hereinafter “Gausepohl”). Regarding claim 15, modified Schmitt teach the apparatus of claim 14 above, wherein the exit aperture is optically aligned with the exposure aperture and the receptacle slot for holding the assay device (As best understood, the exit aperture being optically aligned with the exposure aperture has previously been discussed in claim 3 above. Further, the modification of the adapter housing of Schmitt to comprise a receptacle slot for holding an assay device therein, as taught by Fan, has previously been discussed in claim 3 above). Modified Schmitt does not teach the assay device comprises a first and a second plates. However, Gausepohl teaches the analogous art of an assay device (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) wherein the assay device comprising a first and a second plates (Gausepohl teach a first plate 1 and a second plate 3 that are parallel; Gausepohl; fig. 1a, #1, #3, [0103]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the assay device comprising parallel plates, as taught by Gausepohl, because Gausepohl teaches the assay device comprising parallel plates provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for imaging an object. Regarding claim 35, modified Schmitt teach the device of claim 1 above comprising the assay device. Modified Schmitt does not teach the assay device comprises a sample holder, wherein the sample holder comprises first plate, a second plate, and spacers, wherein one or both plates comprise a reagent. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device comprises a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”), wherein the sample holder comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), wherein one or both plates comprise a reagent (Gausepohl; [0012]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Regarding claim 37, modified Schmitt teach the method of claim 4 above comprising the assay device. Modified Schmitt does not teach wherein the assay device is a sample holder comprising a first plate, a second plate, and spacers. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device is a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Regarding claim 38, modified Schmitt teach the method of claim 4 above, comprising the assay device. Modified Schmitt does not teach wherein the assay device is a sample holder comprising a first plate, a second plate, and spacers, wherein the spacers function as a location marker, a scale marker, an imaging marker, or any combination thereof. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device is a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]) wherein the spacers function as a location marker, a scale marker, an imaging marker, or any combination thereof. It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Note: What the spacer are for relates to function/intended use. However, functional language does not add any further structure to an apparatus beyond that of a capability. Apparatus claims must distinguish over the prior art in terms of structure rather than function. See MPEP 2114). Regarding claim 40, modified Schmitt teach the method of claim 4 above comprising the assay device. Modified Schmitt does not teach wherein the assay device is a sample holder comprising a first plate, a second plate, and spacers, wherein one or both plates comprise a reagent. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device is a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), wherein one or both plates comprise a reagent (Gausepohl; [0012]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Regarding claim 43, modified Schmitt teach the device of claim 1 above comprising a sample holder (The modification of the device for illuminating and imaging of Schmitt to comprise a receptacle slot for holding a device position outside of the adaptor housing and facing the exposure aperture, as taught by fan, has previously been discussed in claim 1 above. Fan disclose a slot 303/311 for holding a sample; fig. 3, #303, #311, [0019, 0021]). Modified Schmitt does not teach wherein the sample holder comprises a first plate, a second plate, and spacers, and wherein the spacers have a predetermined substantially uniform height 200 microns or less, and a predetermined fixed inter-spacer-distance However, Gausepohl teaches the analogous art of a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”), wherein the sample holder comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), and wherein the spacers have a predetermined substantially uniform height 200 microns or less, and a predetermined fixed inter-spacer-distance (Gausepohl addition teach a gap width of 0.075 mm and spacers 4 are at predetermined fixed distance near the top and bottom of the first and second plates; [0108]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the sample holder of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach a method for holding a sample. Regarding claim 44, modified Schmitt teach the device of claim 1 above comprising a sample holder (The modification of the device for illuminating and imaging of Schmitt to comprise a receptacle slot for holding a device position outside of the adaptor housing and facing the exposure aperture, as taught by fan, has previously been discussed in claim 1 above. Fan disclose a slot 303/311 for holding a sample; fig. 3, #303, #311, [0019, 0021]). Modified Schmitt does not teach further comprising a sample holder, wherein the sample holder comprises a first plate, a second plate, and spacers, and wherein the spacers have a predetermined substantially uniform height 200 microns or less, a predetermined fixed inter-spacer-distance, and a periodic inter-spacer distance. However, Gausepohl teaches the analogous art a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”), wherein the sample holder comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), wherein the spacers have a predetermined substantially uniform height 200 microns or less, a predetermined fixed inter-spacer-distance, and a periodic inter-spacer distance (Gausepohl addition teach a gap width of 0.075 mm and spacers 4 are at predetermined fixed distance near the top and bottom of the first and second plates; [0108]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the sample holder of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach a method for holding a sample. Regarding claim 45, modified Schmitt teach the method of claim 4 above comprising the assay device. Modified Schmitt does not teach wherein the assay device is a sample holder comprising a first plate, a second plate, and spacers, and wherein the sample holder is the object and comprises a first plate, a second plate, and spacers, and wherein the spacers have a predetermined substantially uniform height 200 microns or less, a predetermined fixed inter-spacer-distance, and a periodic inter-spacer distance. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device is a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), wherein the spacers have a predetermined substantially uniform height 200 microns or less, a predetermined fixed inter-spacer-distance, and a periodic inter-spacer distance (Gausepohl addition teach a gap width of 0.075 mm and spacers 4 are at predetermined fixed distance near the top and bottom of the first and second plates; [0108]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Regarding claim 51, modified Schmitt teach the apparatus of claim 3 above, wherein (a) the receptacle slot operative to hold the assay device while exposing at least part of the assay device to a lens in the camera of the mobile phone when the assay device is inserted into the receptacle slot and the apparatus is engaged with the mobile phone (The modification of the adapter housing of Schmitt to further comprise a receptacle slot for holding an assay device therein, as taught by Fan, has previously been discussed in claim 1 above. The modification would be capable of having a configuration to expose at least part of the assay device to a lens in the camera of the mobile phone when the assay device is inserted into the receptacle slot and the apparatus is engaged with the mobile phone); or (b) the receptacle slot operative to hold the assay device while exposing at least part of the assay device to the exposure aperture of the optics chamber when the assay device is inserted into the receptacle slot; or (c) the receptacle slot having two side walls forming a cavity for holding the assay device therein, wherein one of the two side walls has an opening for forming the exposure aperture of the optics chamber, wherein the light-guide has the first end configured to receive light from the light source of the mobile phone when the apparatus is engaged with the mobile phone (Schmitt; fig. 7, [0054]). Modified Schmitt does not teach the assay device comprises a first and a second plate, or exposing at least part of the first plate in the assay device to a lens. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) comprising a first plate, a second plate (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3; fig. 1a, #1, #3, #4, [0103]). Furthermore, the modification would be capable of having a configuration to expose at least part of the first plate in the assay device to a lens in the camera of the mobile phone when the assay device is inserted into the receptacle slot and the apparatus is engaged with the mobile phone. It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the assay device comprising a first plate and a second plate, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Claim 16 is rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, in view of Gausepohl, and further in view of Larsen. Regarding claim 16, modified Schmitt teaches the apparatus of claim 15 above comprising the exit aperture, the adaptor housing, the passive illuminator, the receptacle slot operative to hold the assay device, and the lens (The modification of the adapter housing of Schmitt to further comprise a receptacle slot for holding an assay device therein, as taught by Fan, has previously been discussed in claim 1 above). Modified Schmitt does not teach the apparatus further comprising an auxiliary lens optically aligned with the exit aperture of the adaptor housing, or an auxiliary lens located between the passive illuminator and the receptacle slot operative to hold the assay device, or an auxiliary lens having an optical axis thereof coaxially aligned with an optical axis of the lens. However, Larsen teaches the analogous art of a camera (Larsen; fig. 14, #1401, [0338]) comprising a lens and an auxiliary lens having an optical axis aligned with an optical axis of the lens (Larsen; fig. 14, #1402, [0338, 0342]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the apparatus for illuminating and imaging an object of modified Schmitt to further comprise an auxiliary lens having an optical axis aligned with an optical axis of the lens, as taught by Larsen, because Larsen teaches the auxiliary lens is used for focusing the system and imaging a volume inside the sample compartments with the camera; [0338]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Larsen both teach imaging systems comprising a lens and a camera for imaging an object. Claims 17, 25, 31, 33, and 48-50 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Mather et al. (US 2011/0123184; already of record - hereinafter “Mather”). Regarding claim 17, modified Schmitt discloses the apparatus of claim 3 above, comprising the passive illuminator, the exposure aperture, and mobile phone comprising a camera. Modified Schmitt does not teach the apparatus further comprising: (a) a diffuser placed at a predetermined distance from the passive illuminator; and (b) an opening on the diffuser configured to expose to the camera of the mobile phone at least a part of the exposure aperture when the device is engaged with the mobile phone, wherein the diffuser is configured to intercept a light path directly between the passive illuminator and the exposure aperture of the optics chamber. However, Mather teaches the analogous art of an apparatus for illuminating and imaging an object (Mather; fig. 3, [0030, 0038]) comprising a passive illuminator (Mather; fig. 7a, #9, [0030]), and a camera of a mobile phone (Mather; fig. 7a, #19, [0049]), wherein (a) the apparatus further comprises a diffuser placed at a predetermined distance from the passive illuminator (Mather; fig 4a in view of fig. 3, #12, [0043]), and (b) an opening on the diffuser configured to expose to the camera of the mobile phone at least a part of the exposure aperture when the device is engaged with the mobile phone, wherein the diffuser is configured to intercept a light path directly between the passive illuminator and the exposure aperture of the optics chamber (Mather teaches a diffuser 12 provided on the front face of the waveguide; [0043]. Mather also discloses the exposure aperture with respect to the camera of the mobile phones is not obstructed by the lightguide 9 comprising the diffuser 12; fig. 7a, [0049]). Accordingly, Mather discloses an opening on the diffuser (i.e. provided on the front face of the waveguide) and is configured to expose the exposure aperture to the camera of the mobile phone when the device is engaged with the mobile phone). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the apparatus for illuminating and imaging an object of modified Schmitt to further comprise a diffuser with an opening placed at a predetermined distance from the passive illuminator, as taught by Mather, because Mather teaches the diffuser with an opening placed at a predetermined distance from the passive illuminator makes the light emission from the face of the light guide more spatially uniform; [0043]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Mather both teach an apparatus for illuminating and imaging an object comprising a passive illuminator and a camera of a mobile phone. Regarding claim 25, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator. Modified Schmitt does not teach wherein the passive illuminator comprises at least two segments of illumination fibers, and wherein the at least two segments form a circular shape. However, Mather teaches the analogous art of a device for illuminating and imaging an object (Mather; fig. 3, [0030, 0038]) comprising a passive illuminator (Mather; fig. 7a, #9, [0030]), and an imager (Mather; fig. 7a, #19, [0049]), wherein the passive illuminator comprises at least two segments of illumination fibers, and wherein the at least two segments form a circular shape (Mather teaches a passive illuminator 9 arranged to extract light at least through one surface; [0009, 0030], therefore comprising illumination fibers), wherein the passive illuminator comprises at least two segments that form a circular shape (Mather; fig. 7b, [0049]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt with the passive illuminator comprising at least two segments of illumination fibers, where the at least two segments form a circular shape, as taught by Mather, because Mather teaches the passive illuminator comprising the two segments of illumination fibers is merely one of many ways to configure the passive illuminator and light source for integration with an image capture device (Mather; fig. 7a-d, [0049-0051]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Mather both teach a device for illuminating and imaging an object comprising a passive illuminator, and an imager. Regarding claim 31, modified Schmitt discloses the device of claim 1 above, comprising a light source that inputs light into the end of the passive illuminator (Schmitt; figs. 6-7, [0054]) Modified Schmitt does not teach the light source inputs light into both ends of the passive illuminator. However, Mather teaches the analogous art of a passive illuminator comprising a light guide (Mather; fig. 7a, #9, [0030]) and a light source (Mather; fig. 7a, #8, [0030]) wherein the light source inputs light into both ends of the passive illuminator (Mather; fig. 7a). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator and light source of modified Schmitt with the configuration of the light source that inputs light into both ends of the passive illuminator, as taught by Mather, because Mather teaches the light source that inputs light into both ends of the passive illuminator is merely one of many ways to configure the passive illuminator and light source for integration with an image capture device (Mather; fig. 7a-d, [0049-0051]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Mather both teach an imager and light source for inputting light into a passive illuminator. Regarding claim 33, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator for imaging an object. Modified Schmitt does not teach the device further comprising a diffusor that is placed between the passive illuminator and the object. However, Mather teaches the analogous art of a device for illuminating and imaging an object (Mather; fig. 3, [0030, 0038]) comprising a passive illuminator (Mather; fig. 7a, #9, [0030]), and an imager (Mather; fig. 7a, #19, [0049]), wherein the device further comprises a diffuser that is placed between the passive illuminator and the object (Mather teaches a diffuser 12 provided on the front face of the waveguide; fig 4a in view of fig. 3, #12, [0043]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the device for illuminating and imaging an object of modified Schmitt to further comprise a diffuser placed between the passive illuminator and the object, as taught by Mather, because Mather teaches the diffuser placed between the passive illuminator and the object makes the light emission from the face of the light guide more spatially uniform; [0043]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Mather both teach an apparatus for illuminating and imaging an object comprising a passive illuminator and an imager. Regarding claim 48, modified Schmitt discloses the apparatus of claim 1 above, comprising the passive illuminator. Modified Schmitt does not teach the apparatus further comprises a diffuser for diffusing the light from the passive illuminator to the object. However, Mather teaches the analogous art of a device for illuminating and imaging an object (Mather; fig. 3, [0030, 0038]) comprising a passive illuminator (Mather; fig. 7a, #9, [0030]), and an imager (Mather; fig. 7a, #19, [0049]), wherein the device further comprises a diffuser that is placed between the passive illuminator and the object (Mather teaches a diffuser 12 provided on the front face of the waveguide; fig 4a in view of fig. 3, #12, [0043]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the device for illuminating and imaging an object of modified Schmitt to further comprise a diffuser placed between the passive illuminator and the object, as taught by Mather, because Mather teaches the diffuser placed between the passive illuminator and the object makes the light emission from the face of the light guide more spatially uniform; [0043]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Mather both teach an apparatus for illuminating and imaging an object comprising a passive illuminator and an imager. Regarding claim 49, modified Schmitt discloses the apparatus of claim 48 above, comprising the passive illuminator and diffuser for diffusing the light from the passive illuminator to the object. Modified Schmitt does not teach wherein the diffuser comprises at least one of the following: (a) polished surfaces on both sides; (b) a volume diffusive material which can be but not limited to opaque white glass and opaque white plastic, wherein the transmissivity of the volume diffusive material is at least 40%, 60%, 80%, 90%; and (c) at least one textured surface, wherein the volume diffusive material can be but not limited to opaque white glass and opaque white plastic, wherein the transmissivity of the volume diffusive material is at least 40%, 60%, 80%, 90%, and wherein the grit of the textured surface is at least 100, 200, 400, 600, 800, 1,000, or 2,000. However, modified Schmitt does teach the passive illuminator comprising the diffuser for diffusing the light from the passive illuminator to the object. It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the surface of the diffuser of modified Schmitt, to have a polished surface on both sides, because the diffuser with a polished surface on both sides for optical imaging provides the additional benefit of evenly distributing light from a source while eliminating bright spots. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt teaches a diffuser for optical imaging. Regarding claim 50, modified Schmitt discloses the apparatus of claim 48 above, comprising the passive illuminator and diffuser. Modified Schmitt does not teach the apparatus further comprising a reflector configured to reflect light emitted from the passive illuminator towards the diffuser, or a reflector configured to reflect light emitted from the passive illuminator towards the exposure aperture of the optics chamber. However, Mather teaches the analogous art of a device for illuminating and imaging an object (Mather; fig. 3, [0030, 0038]) comprising a passive illuminator (Mather; fig. 7a, #9, [0030]), and an imager (Mather; fig. 7a, #19, [0049]), wherein the device further comprises a reflector configured behind the passive illuminator (Mather; fig. 3a, [0030]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the device for illuminating and imaging an object of Schmitt to further comprise a reflector placed behind the passive illuminator, as taught by Mather, because Mather teaches the reflector placed behind the passive ensures light is not lost but is returned; [0043]. The modification resulting in the device of modified Schmitt having a reflector behind the passive illuminator, and therefore being configured to reflect light toward the exposure aperture of the optics chamber. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since Schmitt and Mather both teach an apparatus for illuminating and imaging an object comprising a passive illuminator and an imager. Claims 19, 26, 28-29 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Khosravi Simchi et al. (US 2018/0140196; already of record – hereinafter “Simchi”). Regarding claim 19, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator. Modified Schmitt does not teach wherein the passive illuminator is formed by an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, and wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is at least 1:100, or wherein the passive illuminator is formed by an illumination fiber, and wherein the illumination fiber comprises one or more materials selected from the group consisting of a flexible polymer, a plastic, a glass and a rigid dielectric material. However, Simchi teaches the analogous art of an apparatus for illuminating and imaging an object (Simchi; fig. 4, #10, [0095]), comprising: (a) an imager (Simchi; fig. 4, #91, [0136]), and c) a passive illuminator for illuminating the object (Simchi; fig. 10, #190, [0122]) wherein the passive illuminator is formed by an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, and wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is at least 1:100, or wherein the passive illuminator is formed by an illumination fiber, and wherein the illumination fiber comprises one or more materials selected from the group consisting of a flexible polymer, a plastic, a glass and a rigid dielectric material (Simchi teaches the passive illuminator 190 includes a plurality of fibers 191 that capture light from the mobile device light source and internally reflect the light within the fibers 191 to deliver the light to a first end 194 of each fiber. The fibers 191 are made of a clear material including plastic and/or glass, and are coated with a material having a refractive index that is higher than the refractive index of fiber 191 to enhance the efficiency of light guide 190; [0122].). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt with the passive illuminator formed by an illumination fiber, and wherein the illumination fiber comprises one or more materials selected from the group consisting of a flexible polymer, a plastic, a glass and a rigid dielectric material, as taught by Simchi, because Simchi teaches the passive illuminator formed by an illumination fiber comprised of plastic and/or glass is merely one of several embodiments for passive illumination (Simchi; figs. 7-10, [0118-0122]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Simchi both teach a device for illuminating and imaging an object comprising an imager, and a passive illuminator. Regarding claim 26, modified Schmitt discloses the device of claim 1 above. Modified Schmitt does not teach wherein the passive illuminator has a uniform cross-section. However, Simchi teaches the analogous art of an apparatus for illuminating and imaging an object (Simchi; fig. 4, #10, [0095]), comprising: (a) an imager (Simchi; fig. 4, #91, [0136]), and c) a passive illuminator for illuminating the object (Simchi; fig. 9, #180, [0120]) wherein the passive illuminator has a uniform cross-section (Simchi; fig. 9, #180, [0120]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt to have a uniform cross-section, as taught by Simchi, because Simchi teaches the shape of the passive illuminator can have different configurations to direct light from various sources; [0119, 0120, 0122]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Simchi both teach a device for illuminating and imaging an object comprising an imager, and a passive illuminator. Regarding claim 28, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator. Modified Schmitt does not teach wherein the passive illuminator is an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is a value between 1:100 and 1:10. However, Simchi teaches the analogous art of an apparatus for illuminating and imaging an object (Simchi; fig. 4, #10, [0095]), comprising: (a) an imager (Simchi; fig. 4, #91, [0136]), and c) a passive illuminator for illuminating the object (Simchi; fig. 10, #190, [0122]) wherein the passive illuminator is an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is a value between 1:100 and 1:10 (Simchi teaches the passive illuminator 190 includes a plurality of fibers 191 that capture light from the mobile device light source and internally reflect the light within the fibers 191 to deliver the light to a first end 194 of each fiber. The fibers 191 are made of a clear material including plastic and/or glass, and are coated with a material having a refractive index that is higher than the refractive index of fiber 191 to enhance the efficiency of light guide 190; [0122]. The examiner notes the fibers 191 made of plastic and/or glass and coated with a material having a refractive index that is higher than the refractive index of fiber 191 is structurally equivalent to the illumination fiber disclosed in para. [0235] of applicants printed publication, which states “the passive illuminator can be formed by a side illumination fiber, wherein the side illumination fiber is made of but not limited to flexible polymers, plastic, glass and rigid dielectric materials.”, and would therefore be functionally capable of having a ratio of transmissivity to reflectivity at an interface between the core and the cladding of between 1:100 and 1:10). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt with the passive illuminator formed by an illumination fiber, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is a value between 1:100 and 1:10, as taught by Simchi, because Simchi teaches the passive illuminator formed by an illumination fiber comprised of plastic and/or glass is merely one of several embodiments for passive illumination (Simchi; figs. 7-10, [0118-0122]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Simchi both teach a device for illuminating and imaging an object comprising an imager, and a passive illuminator. Regarding claim 29, modified Schmitt discloses the device of claim 1 above, comprising the passive illuminator. Modified Schmitt does not teach wherein the passive illuminator is an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is 1:10 to 1:1. However, Simchi teaches the analogous art of an apparatus for illuminating and imaging an object (Simchi; fig. 4, #10, [0095]), comprising: (a) an imager (Simchi; fig. 4, #91, [0136]), and c) a passive illuminator for illuminating the object (Simchi; fig. 10, #190, [0122]) wherein the passive illuminator is an illumination fiber, wherein the illumination fiber comprises a core and a cladding layer, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is 1:10 to 1:1 (Simchi teaches the passive illuminator 190 includes a plurality of fibers 191 that capture light from the mobile device light source and internally reflect the light within the fibers 191 to deliver the light to a first end 194 of each fiber. The fibers 191 are made of a clear material including plastic and/or glass, and are coated with a material having a refractive index that is higher than the refractive index of fiber 191 to enhance the efficiency of light guide 190; [0122]. The examiner notes the fibers 191 made of plastic and/or glass and coated with a material having a refractive index that is higher than the refractive index of fiber 191 is structurally equivalent to the illumination fiber disclosed in para. [0235] of applicants printed publication, which states “the passive illuminator can be formed by a side illumination fiber, wherein the side illumination fiber is made of but not limited to flexible polymers, plastic, glass and rigid dielectric materials.”, and would therefore be functionally capable of having a ratio of transmissivity to reflectivity at an interface between the core and the cladding of between 1:100 and 1:10). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the passive illuminator of modified Schmitt with the passive illuminator formed by an illumination fiber, wherein a ratio of transmissivity to reflectivity at an interface between the core and the cladding layer is a value between 1:100 and 1:10, as taught by Simchi, because Simchi teaches the passive illuminator formed by an illumination fiber comprised of plastic and/or glass is merely one of several embodiments for passive illumination (Simchi; figs. 7-10, [0118-0122]). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Simchi both teach a device for illuminating and imaging an object comprising an imager, and a passive illuminator. Claim 22 is rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of GSMArena Apple iPhone 6s (https://web.archive.org/web/20160304054443/https://www.gsmarena.com/apple_iphone_6s-7242.php – hereinafter “GSMArena”; already of record). Regarding claim 22, modified Schmitt discloses the device of claim 1 above, wherein the passive illuminator has a shape of a ring having a diameter thereof and a substantially uniform cross-section (Schmitt discloses the passive illuminator 606 has a ring shape [0054] and is configured to surround the camera of a smartphone; fig. 8, [0059]. Modified Scmitt does not explicitly teach the ring having a diameter in a range between 5 mm and 100 mm. However, GSMArena teaches the analogous art of a smartphone, wherein the smartphone comprises a camera with a 29 mm and 31 mm lens. It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the smartphone of modified Schmitt with an iPhone 6s smartphone having a camera with a 29 mm and 31 mm lens, as taught by GSMArena, because GSMArena teaches the iPhone 6s smartphone was a commonly used iPhone at the time of Schmitt’s disclosure. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and GSMArena both teach smartphones with cameras. Claims 34 and 39 are rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, in view of Gausepohl, and further in view of Walker (“Topical Tips: The multipurpose micrometer slide—much more than just for calibration”, October 2015, Miscape, Issue 234-235, ISSN 1365-070x, http://www.microscopy-uk.org.uk/mag/indexmag.html?http://www.microscopy-uk.org.uk/mag/artoct15/dw-micrometer.html; already of record – hereinafter “Walker”). Regarding claim 34, modified Schmitt disclose the device of claim 1 above comprising the assay device. Modified Schmitt does not teach the assay device comprises a sample holder, wherein the sample holder comprises a first plate, a second plate, and spacers, and the plates sandwich a sample into a thin layer. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device comprises a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]), and the first plate and second plates are configured to sandwich a sample into a thin layer (Gausepohl teaches samples are attached to the first plate 1 in which the second plate 3 is posed across the first plate 1 with a capillary gap 9 formed between the first and second plates; [0094] with a gap width of 0.075 mm; [0108]. Accordingly, a sample suspended between the first and second plate by capillary forces formed by gap 9 being “sandwiched” into a thin layer). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Modified Schmitt does not teach wherein one or both plates comprise a scale marker. However, Walker teaches the analogous art of a plate (Walker; image “2”, “Motic calibration slide”, paragraph 5) comprising a scale marker (Walker; image “2”, “Motic calibration slide”, paragraph 5). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify one or both plates of modified Schmitt to further comprise a scale marker, as taught by Walker, because Walker teaches the plate comprising a scale marker allows calibration of the imaging software used by the device (Walker; image “2”, “Motic calibration slide”, paragraph 5). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Walker both teach a device3 for imaging comprising a plate. Regarding claim 39, modified Schmitt teaches the method of claim 4 above comprising the object. Modified Schmitt does not teach wherein the assay device is a sample holder comprising a first plate, a second plate, and spacers. However, Gausepohl teaches the analogous art an assay device (Gausepohl; fig. 1a, [0103]) wherein the assay device is a sample holder (Gausepohl; fig. 1a; [0103], “sample of biological material 2”) and comprises a first plate, a second plate, and spacers (Gausepohl teach a sample holder comprising a first plate 1, a second plate 3, and spacers 4; Gausepohl; fig. 1a, #1, #3, #4, [0103]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the assay device of modified Schmitt with the sample holder comprising a first plate, a second plate, and spacers, as taught by Gausepohl, because Gausepohl teaches the sample holder comprising the first plate, the second plate, and spacers provides the additional benefit of enclosing the sample between the first and second plate to allow individual treatment of the assay device with reagents, thereby preventing cross contamination; [0010-0013]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Gausepohl both teach an assay device for holding a sample. Modified Schmitt does not teach wherein one or both plates comprise a scale marker. However, Walker teaches the analogous art of a plate (Walker; image “2”, “Motic calibration slide”, paragraph 5) comprising a scale marker (Walker; image “2”, “Motic calibration slide”, paragraph 5). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify one or both plates of modified Schmitt to further comprise a scale marker, as taught by Walker, because Walker teaches the plate comprising a scale marker allows calibration of the imaging software used by the device (Walker; image “2”, “Motic calibration slide”, paragraph 5). One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Walker both teach a device for imaging comprising a plate. Claim 42 is rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, and further in view of Spivey et al. (US 2001/0034068; already of record - hereinafter “Spivey”). Regarding claim 42, modified Schmitt teach the method of claim 4 above comprising the object. Modified Schmitt does not teach wherein the object is a sample comprising a biological sample selected from the group consisting of amniotic fluid, aqueous humour, vitreous humour, blood, breast milk, cerebrospinal fluid (CSF), cerumen (earwax), chyle, chime, endolymph, perilymph, feces, breath, gastric acid, gastric juice, lymph, mucus, pericardial fluid, peritoneal fluid, pleural fluid, pus, rheum, saliva, exhaled breath condensates, sebum, semen, sputum, sweat, synovial fluid, tears, vomit, and urine. However, Spivey teaches the analogous art of an imager (Spivey; fig. 4, #34, [0047]) for imaging an object 10 (Spivey; fig. 4, [0047]), wherein the object is a sample comprising urine (Spivey; [0007]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the method for illuminating and imaging an object of modified Schmitt with the method of illuminating and imaging an object wherein the object is a sample comprising urine, as taught by Spivey, because Spivey teaches the method of illuminating and imaging an object wherein the object is a sample comprising urine may be used to determine the outcome of precipitation reactions, reactions based on electrophoresis, immunoelectrophoresis, immunofixation electrophoresis, enzyme immunoassay and immunofluorescence; [0142]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Spivey both teach an imager for imaging an object. Claim 46 is rejected under 35 U.S.C. 103 as being unpatentable over Schmitt, in view of Fan, in view of Gausepohl, and further in view of Kojima. Regarding claim 46, modified Schmitt discloses the method of claim 45, further comprising: (a) impinging light into one light-guide, that is different from the light guide of the passive illuminator, the light guide connecting to one end of the passive illuminator (Schmitt; fig. 6, #614, [0054]); (b) causing the impinging light to travel through the light-guide to reach the corresponding end of the passive illuminator (Schmitt; fig. 6, #616, [0054]); (c) causing light to be emitted from a side wall of the passive illuminator after the impinging light enters the corresponding end of the passive illuminator (Schmitt; fig. 6, [0054]); (d) generating illumination light from the light emitted from the side wall of the passive illuminator (Schmitt; fig. 6, [0054]); (e) illuminating the object through one of the first and second plates with the illumination light (The modification of the object of modified Schmitt with the sample holder comprising the first plate, the second plate, and spacers, as taught by Gausepohl, has previously been discussed in claim 45 above. The modification illuminating the object through the first and second plates); and (f) imaging the object with an imaging sensor through the lens (Schmitt; frame 602 includes an opening for allowing the camera of the smartphone to capture images therethrough, [0052]). Modified Schmitt does not teach two light-guides that are different from the light guide of the passive illuminator, each of the light guides connecting to one end of the passive illuminator, light travel through each light-guide. However, Kojima teaches the analogous art of an apparatus for illuminating and imaging an object (Kojima; fig. 1, [0035]), comprising: (a) a mobile phone that has a camera as an imager and a light source (Kojima; figs. 1 & 3, #1, #4a, #4b, [0035, 0038]), and c) a passive illuminator for illuminating the object (Kojima; fig. 2, #5, [0039]), wherein the passive illuminator comprises a light guide (Kojima; fig. 3, #5a, [0040]) and two light guides that are different from the light guide of the passive illuminator, each of the light guides connecting to one end of the passive illuminator, light travel through each light-guide (Kojima; fig. 3, #5a1, #5a2, [0040]). It would have been obvious to one of ordinary skill in the art before the effective filing date to modify the light guide 614 of modified Schmitt with the two light guides, as taught by Kojima, because Kojima teaches the two light guides change the directions of the luminous fluxes emitted and condensed; [0040]. One of ordinary skill in the art would have expected this modification could have been performed with a reasonable expectation of success since modified Schmitt and Kojima both teach an apparatus for illuminating and imaging an object with a passive illuminator and light source. Response to Arguments Applicant’s arguments filed on 07/14/2025 have been considered but were not found persuasive. Applicants argue on page 2 of their remarks that the cited references do not teach or suggest a passive illuminator and a light guide for illuminating the object, wherein the passive illuminator light guide optically connects with the light guide, accepts light from one or both ends of the light guide, and emits the light from a side wall of the passive illuminator towards the object. The examiner respectfully disagrees. Schmitt disclose passive illuminator 616 optically connects with the light guide 614; fig. 6, [0054], accepts light from one or both ends of the light guide; [0054]), and the distal portion 616 illuminates “the camera’s field of view” and “the aperture 624 has a portion sized and located to allow light conducted through the light pipe606 to be emitted from the distal portion 616 of the light pip 606 to illuminate the area in front of the contact member 610”; [0057]. The examiner notes the term “field of view” with respect to a camera describes the viewable area that can be imaged by a lens system, and is different from an “area in front of contact member 610”, later described in [0057]. Accordingly, the distal portion 616 emits light from a sidewall to illuminate the field of view through lens 604 and out of aperture 624 to illuminate the area in from of the contact member 610 towards the object. Applicant argues on page 3 that the cited references do not teach or suggest that the imager, the exit aperture, the lens, and the exposure aperture are optically aligned for imaging the object in the assay device positioned in the receptacle slot. The examiner respectfully disagrees. Schmitt disclose the exit aperture, the lens, the imager, and the exposure aperture are optically aligned; fig. 6, [0054]. Further, Fan teach an imager; fig. 3, #343, [0018], a lens; fig. 3, #301, [0019], and an adaptor housing comprising an optical chamber above the sample holder 303; fig. 3, [0021], wherein light passes from the light emitting diode 321 and travels through the sample holder to an image sensor 343 to image the sample holder; fig. 3, [0022]. Accordingly, the device and adaptor housing comprise an exit aperture, an exposure aperture, and a lens optically aligned with the imager to allow image of the object in the assay device positioned in the slot 303 to be processed by the sensor 343. Citations to art In the above citations to documents in the art, an effort has been made to specifically cite representative passages, however rejections are in reference to the entirety of each document relied upon. Other passages, not specifically cited, may apply as well. Conclusion THIS ACTION IS MADE FINAL. Applicant is reminded of the extension of time policy as set forth in 37 CFR 1.136(a). A shortened statutory period for reply to this final action is set to expire THREE MONTHS from the mailing date of this action. In the event a first reply is filed within TWO MONTHS of the mailing date of this final action and the advisory action is not mailed until after the end of the THREE-MONTH shortened statutory period, then the shortened statutory period will expire on the date the advisory action is mailed, and any extension fee pursuant to 37 CFR 1.136(a) will be calculated from the mailing date of the advisory action. In no event, however, will the statutory period for reply expire later than SIX MONTHS from the date of this final action. Any inquiry concerning this communication or earlier communications from the examiner should be directed to CURTIS A THOMPSON whose telephone number is (571)272-0648. The examiner can normally be reached on M-F: 7:00 a.m. - 5:00 p.m.. Examiner interviews are available via telephone, in-person, and video conferencing using a USPTO supplied web-based collaboration tool. To schedule an interview, applicant is encouraged to use the USPTO Automated Interview Request (AIR) at http://www.uspto.gov/interviewpractice. E-mail communication Authorization Per updated USPTO Internet usage policies, Applicant and/or applicant’s representative is encouraged to authorize the USPTO examiner to discuss any subject matter concerning the above application via Internet e-mail communications. See MPEP 502.03. To approve such communications, Applicant must provide written authorization for e-mail communication by submitting the following statement via EFS Web (using PTO/SB/439) or Central Fax (571-273-8300): Recognizing that Internet communications are not secure, I hereby authorize the USPTO to communicate with the undersigned and practitioners in accordance with 37 CFR 1.33 and 37 CFR 1.34 concerning any subject matter of this application by video conferencing, instant messaging, or electronic mail. I understand that a copy of these communications will be made of record in the application file. Written authorizations submitted to the Examiner via e-mail are NOT proper. Written authorizations must be submitted via EFS-Web (using PTO/SB/439) or Central Fax (571-273-8300). A paper copy of e-mail correspondence will be placed in the patent application when appropriate. E-mails from the USPTO are for the sole use of the intended recipient, and may contain information subject to the confidentiality requirement set forth in 35 USC § 122. See also MPEP 502.03. If attempts to reach the examiner by telephone are unsuccessful, the examiner’s supervisor, Jill Warden can be reached on 571-272-1267. The fax phone number for the organization where this application or proceeding is assigned is 571-273-8300. Information regarding the status of published or unpublished applications may be obtained from Patent Center. Unpublished application information in Patent Center is available to registered users. To file and manage patent submissions in Patent Center, visit: https://patentcenter.uspto.gov. Visit https://www.uspto.gov/patents/apply/patent-center for more information about Patent Center and https://www.uspto.gov/patents/docx for information about filing in DOCX format. For additional questions, contact the Electronic Business Center (EBC) at 866-217-9197 (toll-free). If you would like assistance from a USPTO Customer Service Representative, call 800-786-9199 (IN USA OR CANADA) or 571-272-1000. /C.A.T./Examiner, Art Unit 1798 /BENJAMIN R WHATLEY/Primary Examiner, Art Unit 1798
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Prosecution Timeline

Show 17 earlier events
Mar 31, 2025
Response after Non-Final Action
Apr 14, 2025
Non-Final Rejection mailed — §103, §112
Jul 14, 2025
Response Filed
Jul 24, 2025
Final Rejection mailed — §103, §112
Jan 26, 2026
Request for Continued Examination
Jan 29, 2026
Response after Non-Final Action
Jan 29, 2026
Response after Non-Final Action
Aug 10, 2026
Non-Final Rejection mailed — §103, §112 (current)

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