IP Library Granted Patent US 11,386,551
Granted Patent B2
US 11,386,551 · App. 16/184,494 · Granted Jul 12, 2022

Method and apparatus for buffy coat imaging

Inventor: Thomas R. Drechsler (Waltham, MA)
Assignee: PERKINELMER HEALTH SCIENCES, INC.
G06T7/0012B01D21/262G01N21/27G01N33/491G06T7/70G06T2207/10141G06T2207/30004H04N5/2256H04N9/07
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,386,551
App. No.
16/184,494
Granted
Jul 12, 2022
Kind
B2
Abstract

A blood sample processor for imaging a centrifuged blood sample is provided including a transparent container with the centrifuged blood sample therein. An illumination source is positioned to illuminate the centrifuged blood sample at a non-right angle to the transparent container. A digital camera disposed opposite the transparent container images the centrifuged blood sample and the image is processed to determine the relative locations of component layers of the centrifuged blood sample.

Claims (28)

1. A blood sample processor for imaging a centrifuged blood sample, comprising:

a transparent container with the centrifuged blood sample therein;

an illumination source for illuminating the centrifuged blood sample, positioned at an oblique angle off of a center axis of the transparent container;

a digital camera disposed opposite the transparent container for imaging the centrifuged blood sample; and

a processor for processing the centrifuged blood sample image and determining relative locations of component layers of the centrifuged blood sample,

wherein the processor comprises a liquid level height sensor for detecting a location of a surface of the centrifuged blood sample by mechanical contact of the liquid level height sensor with the surface; and

wherein the processor determines actual locations of the component layers of the centrifuged blood sample based on the relative locations of component layers of the centrifuged blood sample and the location of the surface of the centrifuged blood sample.

2. The blood sample processor of claim 1 , wherein the illumination source uses monochromatic light below a yellow wavelength.

3. The blood sample processor of claim 1 , wherein the illumination source uses multiple wavelengths of light below a yellow wavelength.

4. The blood sample processor of claim 3 , wherein the multiple wavelengths of light are selected to highlight each of a clean buffy coat layer and a transition layer.

5. The blood sample processor of claim 1 , wherein the illumination source illuminates the centrifuged blood sample at a 30 degree angle to the transparent container.

6. The blood sample processor of claim 1 , wherein the digital camera is a color digital camera.

7. The blood sample processor of claim 1 , further comprising an external reference for determining actual locations of the component layers of the centrifuged blood sample.

8. The blood sample processor of claim 1 , further comprising a pipette for removal of the component layers of the centrifuged blood sample from the transparent container.

9. A method of analyzing a centrifuged blood sample, comprising:

placing the blood sample in a transparent container;

illuminating the centrifuged blood sample with an illumination source positioned at an oblique angle off of a center axis of the transparent container;

imaging the centrifuged blood sample with a digital camera disposed opposite the transparent container;

processing the centrifuged blood sample image and determining relative locations of component layers of the centrifuged blood sample;

detecting a location of a surface of the centrifuged blood sample by mechanical contact of a liquid level height sensor with the surface of the centrifuged blood sample; and

determining actual locations of the component layers of the centrifuged blood sample based on the relative locations of component layers of the centrifuged blood sample and the location of the surface of the centrifuged blood sample.

10. The method of analyzing a centrifuged blood sample of claim 9 , further comprising illuminating the centrifuged blood sample using monochromatic light below a yellow wavelength.

11. The method of analyzing a centrifuged blood sample of claim 9 , further comprising illuminating the blood sample using multiple wavelengths of light below a yellow wavelength.

12. The method of analyzing a centrifuged blood sample of claim 11 , further comprising selecting the multiple wavelengths of light to highlight each of a clean buffy coat layer and a transition layer.

13. The method of analyzing a centrifuged blood sample of claim 9 , further comprising illuminating the centrifuged blood sample at a 30 degree angle to the transparent container.

14. The method of analyzing a centrifuged blood sample of claim 9 , further comprising using a color digital camera for the digital camera.

15. The method of analyzing a centrifuged blood sample of claim 9 , further comprising using an external reference for determining actual locations of the component layers of the centrifuged blood sample.

16. The method of analyzing a centrifuged blood sample of claim 9 , further comprising using a pipette to remove the component layers of the centrifuged blood sample from the transparent container.

Assignments (2)
CHANGE OF NAME Recorded Mar 26, 2024
From: PERKINELMER HEALTH SCIENCES, INC.
To: REVVITY HEALTH SCIENCES, INC.
Reel/Frame 066908/0416 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2019
From: DRECHSLER, THOMAS R.
To: PERKINELMER HEALTH SCIENCES, INC.
Reel/Frame 047964/0189 →