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US20060259253A1 - Systems for transiently dynamic flow cytometer analysis - Google Patents

Systems for transiently dynamic flow cytometer analysis
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Publication number
US20060259253A1
US20060259253A1US11/396,035US39603506AUS2006259253A1US 20060259253 A1US20060259253 A1US 20060259253A1US 39603506 AUS39603506 AUS 39603506AUS 2006259253 A1US2006259253 A1US 2006259253A1
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United States
Prior art keywords
signal
additional
occurrence
data
incident
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US11/396,035
Inventor
Carl Ellison
Paul Purcell
George Malachowski
Matthias Ottenberg
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Beckman Coulter Inc
Original Assignee
Dako Colorado Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from PCT/US2000/041372external-prioritypatent/WO2001028700A1/en
Application filed by Dako Colorado IncfiledCriticalDako Colorado Inc
Priority to US11/396,035priorityCriticalpatent/US20060259253A1/en
Assigned to DAKO COLORADO, INC., (F/K/A DAKOCYTOMATION COLORADO, INC.-SEE EXH.B) (F/K/A CYTOMATION, INC.)reassignmentDAKO COLORADO, INC., (F/K/A DAKOCYTOMATION COLORADO, INC.-SEE EXH.B) (F/K/A CYTOMATION, INC.)ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: ELLISON, CARL E., MALACHOWSKI, GEORGE C., PURCELL, PAUL BARCLAY, OTTENBERG, MATTHIAS J.
Publication of US20060259253A1publicationCriticalpatent/US20060259253A1/en
Assigned to BECKMAN COULTER, INC.reassignmentBECKMAN COULTER, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: DAKO COLORADO, INC.
Abandonedlegal-statusCriticalCurrent

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Abstract

A flow cytometry apparatus and methods to process information incident to particles or cells entrained in a sheath fluid stream allowing assessment, differentiation, assignment, and separation of such particles or cells even at high rates of speed. A first signal processor individually or in combination with at least one additional signal processor for applying compensation transformation on data from a signal. Compensation transformation can involve complex operations on data from at least one signal to compensate for one or numerous operating parameters. Compensated parameters can be returned to the first signal processor for provide information upon which to define and differentiate particles from one another.

Description

Claims (20)

1. A method of flow cytometry analysis, comprising the steps of:
establishing a fluid stream;
entraining particles in said fluid stream;
sensing a first occurrence incident to at least one particle;
generating a first signal from said first occurrence incident to said at least one particle;
producing data from said first signal;
sensing at least one additional occurrence incident to said at least one particle;
generating at least one additional signal from said at least one additional occurrence incident to said at least one particle;
producing data from said at least one additional signal;
processing data from said first signal;
processing data from said at least one additional signal;
applying at least one transformation operation to processed data from said first signal;
applying at least one transformation operation to processed data from said at least one additional signal;
compensating at least one parameter shared by said first occurrence and said at least one additional occurrence; and
differentiating said first occurrence from said at least one additional occurrence based upon said at least one compensated parameter.
8. A flow cytometer analyzer comprising:
a fluid stream;
at least one particle entrained in said fluid stream;
a first sensor responsive to said at least one particle entrained in said fluid stream;
at least one signal generator;
data from said at least one signal generator incident to a first occurrence;
data from said at least one signal generator incident to at least one additional occurrence;
a signal processor of said data from said at least one signal generator;
a transformation operation applied to at least a portion of said data from said at least one signal generator incident to said first occurrence;
a transformation operation applied to at least a portion of said data from said at least one signal generator incident to said at least one additional occurrence;
a compensated parameter shared by said first occurrence and by said at least one additional occurrence; and
a particle differentiation element configured to differentiate said first occurrence from said at least one additional occurrence.
US11/396,0351999-10-212006-03-31Systems for transiently dynamic flow cytometer analysisAbandonedUS20060259253A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US11/396,035US20060259253A1 (en)1999-10-212006-03-31Systems for transiently dynamic flow cytometer analysis

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US16071999P1999-10-211999-10-21
US10/111,026US7024316B1 (en)1999-10-212000-10-20Transiently dynamic flow cytometer analysis system
PCT/US2000/041372WO2001028700A1 (en)1999-10-212000-10-20Transiently dynamic flow cytometer analysis system
US11/396,035US20060259253A1 (en)1999-10-212006-03-31Systems for transiently dynamic flow cytometer analysis

Related Parent Applications (2)

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US10/111,026ContinuationUS7024316B1 (en)1999-10-212000-10-20Transiently dynamic flow cytometer analysis system
PCT/US2000/041372ContinuationWO2001028700A1 (en)1999-10-212000-10-20Transiently dynamic flow cytometer analysis system

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US20060259253A1true US20060259253A1 (en)2006-11-16

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US11/396,035AbandonedUS20060259253A1 (en)1999-10-212006-03-31Systems for transiently dynamic flow cytometer analysis

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