IP Library Granted Patent US 9,733,233
Granted Patent B2
US 9,733,233 · App. 15/075,917 · Granted Aug 15, 2017

Method and apparatus for analyzing individual cells or particulates using fluorescent quenching and/or bleaching

Inventors: Robert A. Levine (Guilford, CT); Stephen C. Wardlaw (Lyme, CT); Niten V. Lalpuria (Mumbai, IN); Darryn W. Unfricht (North Haven, CT)
Assignee: Abbott Point of Care, Inc.
G01N33/49G01N15/1463G01N15/1475G01N21/6428G01N21/6456G01N33/48G01N33/5091G01N2015/008G01N2015/1477G01N2021/6432G01N2021/6439G01N2201/062
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Quick Facts
Patent No.
US 9,733,233
App. No.
15/075,917
Granted
Aug 15, 2017
Kind
B2
Abstract

A method for analyzing a blood sample is provided that includes the steps of: providing a blood sample having one or more of each first and second constituents; admixing a colorant with the sample, which colorant is operative to cause the first constituents and second constituents to fluoresce and absorb light; illuminating at least a portion of the sample; e) imaging a portion of the sample; determining a fluorescence value for each the first constituents and second constituents; determining an optical density value for each of the first constituents and second constituents; and identifying the first constituents and the second constituents using the determined fluorescence and optical density values.

Claims (19)

1. A method for identifying constituents within a biologic fluid sample quiescently residing within a chamber, which sample has at least one first constituent and at least one second constituent, and which second constituent is a different type than that of the first constituent, and which sample is mixed with a colorant, the method comprising:

using a processor to execute stored instructions, which instructions cause the processor to:

control a sample illuminator to illuminate at least a portion of the sample containing the first constituent and the second constituent with light at one or more wavelengths that cause the colorant to fluoresce, and with light at one or more wavelengths that are absorbed by the colorant;

control an imaging device to image the at least a portion of the sample, including producing first image signals indicative of fluorescent emissions from the colorant disposed within the first constituent and second image signals indicative of fluorescent emissions from the colorant disposed within the second constituent, and including producing third image signals indicative of the optical density of at least one region within the first constituent and producing fourth image signals indicative of the optical density of at least one region within the second constituent;

determine at least one first fluorescent emissions value using the first image signals and at least one second fluorescent emissions value using the second image signals;

determine at least one first optical density value associated with the first constituent using the third image signals and at least one second optical density value associated with the second constituent using the fourth image signals; and

identify the first constituent and the second constituent using the determined first and second fluorescent emission values and the determined first and second optical density values.

2. The method of claim 1 , wherein the first constituent and the second constituent are selected from the group consisting of eosinophils, neutrophils, and basophils.

3. The method of claim 1 , wherein the first and second constituents are selected from the group consisting of white blood cells and particulates.

4. The method of claim 3 , wherein the first and second constituents are each types of white blood cells.

5. An apparatus for analyzing a biologic fluid sample quiescently residing within a chamber, which sample has at least one first constituent and at least one second constituent, and which second constituent is a different type than that of the first constituent, and which sample is mixed with a colorant, comprising:

a sample illuminator;

an imaging device;

a processor that executes stored instructions that cause the processor to:

control the sample illuminator to illuminate at least a portion of the sample containing the first constituent and the second constituent with light at one or more first wavelengths that cause the colorant to fluoresce, and with light at one or more second wavelengths that are absorbed by the colorant;

control the imaging device to image the at least a portion of the sample, including producing first image signals indicative of fluorescent emissions from the colorant disposed within the first constituent illuminated by the one or more first wavelengths and second image signals indicative of fluorescent emissions from the colorant disposed within the second constituent illuminated by the one or more first wavelengths, and including producing third image signals indicative of an absorbance of the one or more second wavelengths light within at least one region within the first constituent and producing fourth image signals indicative of an absorbance of the one or more second wavelengths light within at least one region within the second constituent;

determine at least one first fluorescent emissions value using the first image signals and at least one second fluorescent emissions value using the second image signals;

determine at least one first optical density value associated with the first constituent using the third image signals and at least one second optical density value associated with the second constituent using the fourth image signals; and

identify the first constituent and the second constituent using the determined first and second fluorescent emission values and the determined first and second optical density values.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2016
From: LEVINE, ROBERT A.; WARDLAW, STEPHEN C.; LALPURIA, NITEN V.; UNFRICHT, DARRYN W.
To: ABBOTT POINT OF CARE, INC.
Reel/Frame 038051/0253 →
Continuity (7)
Continuation 14673294 · Mar 30, 2015
Continuation 13959294 · Aug 5, 2013
Continuation 13645075 · Oct 4, 2012
Continuation 13330236 · Dec 19, 2011
Division 12408448 · Mar 20, 2009
Provisional Application 61038578 · Mar 21, 2008
Related Publication 20160266091A1 · Sep 15, 2016