IP Library Patent Application 13114980
Patent Application
App. No. 13/114,980

OPTO-FLUIDIC MICROSCOPE SYSTEM WITH EVALUATION CHAMBERS

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Quick Facts
Patent No.
US None
App. No.
13/114,980
Abstract

An image sensor integrated circuit may contain image sensor pixels. A channel containing a fluid with particles such as cells may be formed on top of the image sensor. The image sensor pixels may form light sensors and imagers. The imagers may gather images of the cells or other particles as the fluid passes over the imagers. The channel may have multiple branches. Gating structures and other fluid control structures may control the flow of fluid through the channel branches. Portions of the channel may be used to form chambers. The chambers may each be provided with one or more light sensors, light sources, and color filters to alter the color of illumination form a light source, one or more reactants such as dyes, antigens, and antibodies, and heaters. The branches may route the fluid to respective chambers each of which has a different set of capabilities.

Claims (31)

1 . Apparatus, comprising:

an image sensor integrated circuit containing image sensor pixels that form at least one imager;

a fluid channel on the image sensor integrated circuit that is configured to receive fluid, wherein the at least one imager is located in the channel; and

at least one evaluation chamber coupled to the channel that contains reactant.

2 . The apparatus defined in claim 1 wherein the evaluation chamber comprises part of the channel and contains multiple different reactants.

3 . The apparatus defined in claim 1 further comprising a light source that illuminates the evaluation chamber.

4 . The apparatus defined in claim 3 further comprising a heater that heats the evaluation chamber.

5 . The apparatus defined in claim 4 further comprising at least one light sensor in the evaluation chamber, wherein the light sensor is formed from image sensor pixels contained in the image sensor integrated circuit.

6 . The apparatus defined in claim 5 further comprising multiple color filters in the evaluation chamber, wherein the multiple color filters are arranged in a tiled pattern over the at least one light sensor.

7 . The apparatus defined in claim 6 wherein the light source comprises multiple light-generating elements, wherein the multiple light-generating elements are configured to emit multiple corresponding colors of light.

8 . The apparatus defined in claim 7 wherein the multiple reactants are arranged in a tiled pattern in the evaluation chamber.

9 . The apparatus defined in claim 1 wherein the at least one reactant includes at least one reactant selected from the group consisting of: dilutant, dye, antigens, and antibodies.

10 . The apparatus defined in claim 1 wherein the at least one reactant comprises multiple different dyes.

11 . The apparatus defined in claim 10 further comprising:

a light source that illuminates the sample in the evaluation chamber; and

at least one light sensor in the evaluation chamber formed from image sensor pixels contained within the image sensor integrated circuit.

12 . The apparatus defined in claim 1 wherein the channel contains multiple branches.

13 . The apparatus defined in claim 12 wherein the at least one evaluation chamber comprise a plurality of evaluation chambers each of which is associated with a respective one of the branches.

14 . The apparatus defined in claim 13 further comprising at least some gate structures that control fluid flow between the branches.

15 . Apparatus, comprising:

an image sensor integrated circuit containing image sensor pixels that form at least one imager;

a fluid channel on the image sensor integrated circuit that is configured to receive a sample of fluid, wherein the at least one imager is located in the channel and is configured to acquire image data on biological specimens in the sample of fluid; and

at least one reactant in a portion of the fluid channel, wherein the reactant is selected from the group consisting of: dyes, antigens, and antibodies.

16 . The apparatus defined in claim 15 wherein the portion of the fluid channel is configured to form an evaluation chamber and wherein the evaluation chamber comprises at least one light sensor formed from image sensor pixels on the image sensor integrated circuit.

17 . The apparatus defined in claim 16 wherein the at least one reactant comprise a tiled pattern of multiple different reactants in the evaluation chamber.

18 . Apparatus, comprising:

an image sensor integrated circuit containing image sensor pixels;

a plurality of interconnected channels on the image sensor integrated circuit that are configured to receive a sample of fluid, wherein the image sensor pixels are configured to form a plurality of imagers, wherein each of the imagers is contained within a different respective one of the interconnected channels; and

a plurality of light sensors each light sensor being formed from at least one image pixel on the image sensor integrated circuit, wherein the interconnected channels are configured to distribute the sample of fluid to each of the plurality of light sensors after the fluid has passed over at least one of the imagers.

19 . The apparatus defined in claim 18 further comprising a light source adjacent to each of the light sensors.

20 . The apparatus defined in claim 19 further comprising dye in the channels that dyes cells in the fluid, wherein the light sources generate illumination that causes the dyed cells to fluoresce and wherein the light sensors are configured to receive light from the dyed cells as the dyed cells fluoresce.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2014
From: APTINA IMAGING CORPORATION
To: NANOSCOPIA (CAYMAN), INC.
Reel/Frame 033050/0626 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2011
From: STITH, CURTIS W.; BAKIN, DMITRY; BOETTIGER, ULRICH; SALSMAN, KENNETH EDWARD
To: APTINA IMAGING CORPORATION
Reel/Frame 026338/0112 →