IP Library Granted Patent US 7,564,045
Granted Patent B2
US 7,564,045 · App. 11/454,993 · Granted Jul 21, 2009

Optical assay system

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Quick Facts
Patent No.
US 7,564,045
App. No.
11/454,993
Granted
Jul 21, 2009
Kind
B2
Abstract

An optical reader for an optical assay arrangement including a polymeric sample substrate having a reaction-site surface provided with protruding microstructures and at least one reaction-site area; a light source for illuminating the reaction-site area; and a detector device for detecting light emitted from the reaction-site area. The light source is arranged to inject exciting light rays into the polymeric sample substrate with a controlled angle of incidence such that the protruding microstructures guide the exciting light rays in the direction of the reaction-site area, and the detector device detects light emitted from the at least one reaction-site area.

Claims (45)

1. An optical reader for an optical assay arrangement, comprising:

a polymeric sample substrate comprising:

a reaction-site surface comprising:

protruding microstructures; and

at least one reaction-site area;

a light source; and

a detector device,

wherein the light source is arranged to inject exciting light rays into the polymeric sample substrate with a controlled angle of incidence such that the protruding microstructures guide the exciting light rays in the direction of the reaction-site area, and the detector device detects light emitted from the at least one reaction-site area.

2. The optical reader of claim 1 , further comprising an additional layer with selected optical properties, wherein the polymeric sample substrate is at least partly covered with the additional layer.

3. The optical reader of claim 2 , wherein the additional layer is applied as an optically wetting layer arranged to increase an angle of refraction of the exciting light rays.

4. The optical reader of claim 2 , wherein the additional layer at least partly covers the protruding microstructures.

5. The optical reader of claim 2 , further comprising a carrier surface of the polymeric sample substrate, wherein the additional layer at least partly covers the carrier surface.

6. The optical reader of claim 2 , wherein the additional layer is arranged to absorb selected optical wavelengths.

7. The optical reader of claim 2 , wherein the additional layer consists of a tape of a suitable material attached to the polymeric sample substrate.

8. The optical reader of claim 1 , further comprising a light guiding device, wherein the light source is adapted to illuminate the polymeric sample substrate through the light guiding device arranged to control an angle of refraction of the exciting light rays inside the polymeric sample substrate.

9. The optical reader of claim 8 , further comprising a carrier surface of the polymeric sample substrate, wherein the light guiding device comprises a prism placed on the reaction-site surface or the carrier surface of the polymeric sample substrate.

10. The optical reader of claim 8 , further comprising a carrier surface of the polymeric sample substrate, wherein the light guiding device comprises a diffractive or refractive grating provided on the reaction-site surface or the carrier surface of the polymeric sample substrate.

11. The optical reader of claim 1 , wherein the light source has a position relative to the polymeric sample substrate to illuminate the reaction-site surface of the polymeric sample substrate.

12. The optical reader of claim 1 , further comprising a carrier surface of the polymeric sample substrate, wherein the light source has a position relative to the polymeric sample substrate to illuminate the carrier surface.

13. The optical reader of claim 1 , further comprising an edge wall of the polymeric sample substrate, wherein the light source has a position relative to the polymeric sample substrate to illuminate the edge wall of the polymeric sample substrate.

14. The optica 1 reader of claim 1 , wherein an arrangement of the light source causes an angle of refraction to exceed a critical angle for total internal reflection to occur within the polymeric sample substrate.

15. The optical reader of claim 1 , wherein the detector device has a position relative to the polymeric sample substrate to collect fluorescent or phosphorescent light emitted from a the reaction-site area of the substrate, the emitted light guided in the direction of the detector device by the protruding microstructures of the polymeric sample substrate.

16. The optical reader of claim 1 , further comprising a carrier surface of the polymeric sample substrate, wherein the detector device has a position relative to the polymeric sample substrate to receive emitted fluorescent or phosphorescent light escaping from the carrier surface.

17. The optical reader of claim 1 , further comprising an edge wall of the polymeric sample substrate, wherein the detector device has a position relative to the polymeric sample substrate to receive emitted fluorescent or phosphorescent light escaping from the edge wall.

18. The optical reader of claim 1 , further comprising a carrier surface and an edge wall of the polymeric sample substrate, wherein the light source has a position relative to the polymeric sample substrate to illuminate the reaction-site surface carrier surface, or edge wall, and the detector device has a position relative to the polymeric sample substrate to receive emitted fluorescent or phosphorescent light escaping from the reaction-site surface, carrier surface, or edge wall.

19. The optical reader of claim 1 , further comprising a carrier surface and an edge wall of the polymeric sample substrate, wherein the light source has a position relative to the polymeric sample substrate to illuminate the reaction-site surface, carrier surface, or edge wall, and the detector device has a position relative to the polymeric sample substrate to receive emitted fluorescent or phosphorescent light escaping from the reaction-site surface, carrier surface, or edge wall.

20. The optical reader of claim 1 , wherein the optical reader is arranged as an imaging optical reader.

21. The optical reader of claim 1 , wherein the optical reader is arranged as a scanning optical reader.

22. An optical assay arrangement comprising an optical reader according to claim 1 , and the optical reader further comprising an additional layer with selected optical properties, a carrier surface, and a light guiding device, wherein the polymeric sample substrate is at least partly covered with the additional layer; the protruding microstructures and the additional layer guide exciting light rays in the direction of the reaction-site area; and

the light guiding device is attached on the reaction-site surface or carrier surface for controlling an angle of incidence of the exciting light rays illuminating the polymeric sample substrate.

23. A polymeric sample substrate for an optical assay arrangement comprising:

a reaction-site surface comprising:

protruding microstructures; and

at least one reaction-site area;

an additional layer with selected optical properties;

a carrier surface; and

a light guiding device,

wherein the protruding microstructures guide exciting light rays from a light source in the direction of the reaction-site area, and the light guiding device is attached to the reaction-site surface or the carrier surface of the polymeric sample substrate to control an angle of incidence of the exciting light rays.

24. The polymeric sample substrate of claim 23 , wherein the additional layer at least partly covers the protruding microstructures .

25. The polymeric sample substrate of claim 23 , wherein the additional layer at least partly covers the carrier surface.

26. The polymeric sample substrate of claim 23 , wherein the additional layer is applied as an optically wetting layer arranged to increase an angle of refraction of the exciting light rays.

27. The polymeric sample substrate of claim 23 , wherein the additional layer is arranged to absorb selected optical wavelengths.

28. The polymeric sample substrate of claim 23 , wherein the additional layer consists of a tape of a suitable material attached to the substrate.

29. The polymeric sample substrate of claim 23 , wherein the light guiding device comprises a prism.

30. The polymeric sample substrate of claim 23 , wherein the light guiding device comprises a diffractive or refractive grating.

Assignments (8)
SECURITY AGREEMENT Recorded Aug 22, 2025
From: CRIMSON INTERNATIONAL ASSETS LLC; MICRO TYPING SYSTEMS, INC.; ORTHO-CLINICAL DIAGNOSTICS, INC.; QUIDEL CARDIOVASCULAR INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 072526/0643 →
RELEASE (REEL 060220 / FRAME 0711) Recorded Aug 22, 2025
From: BANK OF AMERICA, N.A.
To: QUIDEL CORPORATION; BIOHELIX CORPORATION; DIAGNOSTIC HYBRIDS, INC.; QUIDEL CARDIOVASCULAR INC.; ORTHO-CLINICAL DIAGNOSTICS, INC.; CRIMSON U.S. ASSETS LLC; CRIMSON INTERNATIONAL ASSETS LLC; MICRO TYPING SYSTEMS, INC.
Reel/Frame 072577/0536 →
SECURITY AGREEMENT Recorded May 31, 2022
From: QUIDEL CORPORATION; BIOHELIX CORPORATION; DIAGNOSTIC HYBRIDS, INC.; QUIDEL CARDIOVASCULAR INC.; ORTHO-CLINICAL DIAGNOSTICS, INC.; CRIMSON U.S. ASSETS LLC; CRIMSON INTERNATIONAL ASSETS LLC; MICRO TYPING SYSTEMS, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 060220/0711 →
RELEASE OF SECURITY INTEREST Recorded May 31, 2022
From: BANK OF AMERICA, N.A.
To: ORTHO-CLINICAL DIAGNOSTICS, INC.; CRIMSON U.S. ASSETS LLC; CRIMSON INTERNATIONAL ASSETS LLC
Reel/Frame 060219/0571 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2018
From: JOHNSON & JOHNSON AB
To: CRIMSON INTERNATIONAL ASSETS LLC
Reel/Frame 046815/0498 →
MERGER Recorded Aug 14, 2018
From: AMIC AB
To: JOHNSON & JOHNSON AB
Reel/Frame 046826/0391 →
SECURITY INTEREST Recorded Jul 3, 2014
From: ORTHO-CLINICAL DIAGNOSTICS, INC; CRIMSON U.S. ASSETS LLC; CRIMSON INTERNATIONAL ASSETS LLC
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 033276/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2006
From: OHMAN, OVE; LINDSTROM, TOMAS; MENDEL-HARTVIG, IB
To: AMIC AB
Reel/Frame 018377/0730 →