IP Library Patent Application 19090897
Patent Application
App. No. 19/090,897

ENHANCED RESOLUTION IMAGING

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Quick Facts
Patent No.
US None
App. No.
19/090,897
Abstract

Provided herein are systems and methods that combine the use of first and second optical transformations (e.g., implemented using optical photon reassignment (OPRA)) with time delay and integration (TDI) imaging and external illumination to provide high throughput imaging while maintaining a high signal to noise ratio and providing enhanced image resolution.

Claims (24)

1 .- 51 . (canceled)

52 . A method of imaging, comprising:

a. providing a substrate, wherein the substrate is substantially planar and wherein said substrate is rotating;

b. illuminating a region of the substrate with one or more illumination beams, wherein the one or more illumination beams are not directed through an objective lens; and

c. directing emission light from the region of the substrate to a detector through the objective lens, thereby generating a scanned image of the region of the substrate, wherein the emission light is directed through an optical transformation device prior to being received by the detector.

53 . The method of claim 52 , wherein the substrate comprises a first and second surface, wherein the first surface is closer to the objective lens than the second surface.

54 . The method of claim 53 , wherein the first surface and the second surface are parallel to each other, and wherein the substrate is positioned normal to the objective lens.

55 . The method of claim 54 , wherein the one or more illumination beams are incident on the first surface of the substrate.

56 . The method of claim 55 , wherein each of the one or more illumination beams are transmitted through a liquid immersion coupler prior to illuminating the substrate.

57 . The method of claim 52 , wherein each of the one or more illumination beams illuminates a same sized field of view on the region of the substrate.

58 . The method of claim 52 , wherein the optical transformation device comprises one or more components selected from the group consisting of a micro-lens array (MLA), a diffractive optical element, a digital micro-mirror device (DMD), a phase mask, an amplitude mask, a spatial light modulator (SLM), and a pinhole array.

59 . The method of claim 52 , further comprising providing initial illumination from a radiation source, wherein the initial illumination is directed through an additional optical transformation device to produce the one or more illumination beams.

60 . The method of claim 59 , wherein the additional optical transformation device comprises one or more components selected from the group consisting of a micro-lens array (MLA), a diffractive optical element, a digital micro-mirror device (DMD), a phase mask, an amplitude mask, a spatial light modulator (SIM), and a pinhole array.

61 . The method of claim 52 , wherein the emission light is directed through an additional optical transformation device prior to being received by the detector.

62 . The method of claim 52 , wherein each of the one or more illumination beams are directed to the region of the substrate at a respective angle relative to the objective lens.

63 . The method of claim 52 , wherein the detector comprises one or more image sensors configured for time delay and integration imaging.

64 . The method of claim 52 , wherein the one or more illumination beams comprise an illumination pattern on the region of the substrate, wherein the illumination pattern comprises a plurality of light intensity maxima.

65 . The method of claim 64 , wherein the illumination pattern comprises an interference pattern.

66 . The method of claim 52 , wherein the scanned image exhibits a lateral spatial resolution that exceeds a diffraction-limited spatial resolution.

67 . The method of claim 52 , wherein the region of the substrate comprises an analyte and the emission light comprises light reflected, transmitted, scattered, or emitted by the analyte.

68 . The method of claim 67 , wherein the analyte comprises a nucleic acid molecule.

69 . The method of claim 68 , wherein the emission light corresponds to incorporation or a lack of incorporation of a nucleic acid base into a primer hybridized to the nucleic acid molecule.

70 . The method of claim 69 , wherein the emission light corresponds to incorporation of more than one nucleic acid base into the primer.

71 . The method of claim 69 , wherein repeating b) and c) determines a sequence of the nucleic acid.

Assignments (1)
SECURITY INTEREST Recorded Apr 3, 2026
From: ULTIMA GENOMICS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 075435/0595 →