IP Library Granted Patent US 7,105,355
Granted Patent B2
US 7,105,355 · App. 10/198,378 · Granted Sep 12, 2006

Flow cytometers and detection system of lesser size

Assignee: The Regents of the University of Michigan
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Quick Facts
Patent No.
US 7,105,355
App. No.
10/198,378
Granted
Sep 12, 2006
Kind
B2
Abstract

Gas focusing flow cytometers are fabricatable employing simple and inexpensive manufacturing techniques. When such cytometers or conventional cytometers are combined with fiber optical light paths and laser diode and semiconductor photodetectors, light weight and handheld, optionally disposable devices which maintain high performance are possible.

Claims (12)

1. A flow cytometer cell, comprising

a) fluid sample inlet comprising a fluid sample channel;

b) at least one focusing fluid inlet comprising a fluid focusing channel;

c) a convergent focusing zone, said fluid sample channel and said fluid focusing channel communicating with an upstream end of said convergent focusing zone, said convergent focusing zone narrowing to form an inlet to an interrogation zone;

d) an interrogation zone, said interrogation zone comprising a channel through which sample fluid enveloped by focusing fluid flows, said interrogation zone terminating in an outlet,

further comprising at least three optical waveguide light impingement and/or collection path(s), internal ends of said optical waveguide light path(s) terminating at or proximate to said interrogation zone, an opposing end of said optical waveguide light path(s) in communication with or adapted to be placed in communication with a light source or a photodetector, said at least three fiber optic waveguides comprising at least a first fiber optic wave guide illuminating said interrogation channel, and at least two fiber optic waveguides conveying light from said interrogation channel to at least one detector, said three fiber optic waveguides all located in a plane which includes the interrogation channel.

2. A flow cytometer cell, comprising

a) a fluid sample inlet comprising a fluid sample channel;

b) at least one focusing fluid inlet comprising a fluid focusing channel;

c) a convergent focusing zone, said fluid sample channel and said fluid focusing channel communicating with an upstream end of said convergent focusing zone, said convergent focusing zone narrowing to form an inlet to an interrogation zone;

d) an interrogation zone, said interrogation zone comprising a channel through which sample fluid enveloped by focusing fluid flows, said interrogation zone terminating in an outlet,

further comprising at least three optical waveguide light impingement and/or collection path(s), internal ends of said optical waveguide light path(s) terminating at or proximate to said interrogation zone, an opposing end of said optical waveguide light path(s) in communication with or adapted to be placed in communication with a light source or a photodetector, said at least three fiber optic waveguides comprising at least two fiber optic wave guides illuminating said interrogation channel, and at least one fiber optic waveguide conveying light from said interrogation channel to at least one detector, said three fiber optic waveguides all located in a plane which includes the interrogation channel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2002
From: KURABAYASHI, KATSUO; TAKAYAMA, SHUICHI; SKERLOS, STEVEN J.; HUH, DONGEUN; GROTBERG, JAMES B.; TUNG, YI-CHUNG
To: REGENTS OF THE UNIVERSITY OF MICHIGAN, THE
Reel/Frame 013510/0728 →
Continuity (2)
Provisional Application 6030638200 · Jul 18, 2001
Related Publication 20030054558A1 · Mar 20, 2003