IP Library Granted Patent US 7,923,252
Granted Patent B2
US 7,923,252 · App. 11/069,529 · Granted Apr 12, 2011

Droplet formation systems for flow cytometers

Assignee: University of Washington
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Quick Facts
Patent No.
US 7,923,252
App. No.
11/069,529
Granted
Apr 12, 2011
Kind
B2
Abstract

A droplet forming flow cytometer system ( 1 ) allows high speed processing without the need for high oscillator drive powers through the inclusion of an oscillator or piezoelectric crystal ( 10 ) within the nozzle volume ( 3 ) and directly coupled to the sheath fluid. The nozzle container ( 27 ) continuously converges so as to amplify unidirectional oscillations ( 11 ) which are transmitted as pressure waves through the nozzle volume ( 3 ) to the nozzle exit so as to form droplets from the fluid jet. A variation in substance concentration is achieved through a movable substance introduction port ( 9 ) which is positioned within a convergence zone ( 32 ) to vary the relative concentration of substance to sheath fluid while still maintaining optimal laminar flow conditions. This variation may be automatically controlled through a sensor and controller configuration.

Claims (15)

1. A method of creating a droplet from a jet of a flow cytometer comprising:

introducing a flow of sheath fluid into a nozzle, said sheath fluid having a primary flow direction through the nozzle;

converging said sheath fluid in a convergence zone in the nozzle;

introducing a flow of a substance at a location within said sheath fluid in said convergence zone;

adjusting the location along the primary flow direction at which said substance is introduced within said convergence zone;

allowing said sheath fluid to exit from said nozzle; and

forming at least one droplet from said sheath fluid after allowing said sheath fluid to exit from said nozzle.

2. A method of creating a droplet from a jet of a flow cytometer according to claim 1 wherein said adjusting the location at which said substance is introduced within said convergence zone comprises establishing a desired concentration of said substance relative to said sheath fluid.

3. A method of creating a droplet from a jet of a flow cytometer according to claim 1 or 2 wherein said adjusting the location at which said substance is introduced within said convergence zone comprises establishing laminar flow of said substance within said sheath fluid.

4. A method of creating a droplet from a jet of a flow cytometer according to claim 1 wherein said adjusting the location at which said substance is introduced within said convergence zone is automatic.

5. A method of creating a droplet from a jet of a flow cytometer according to claim 1 wherein said adjusting the location at which said substance is introduced within said convergence zone comprises:

sensing values representative of conditions within said flow cytometer; and

automatically moving said location based upon said sensed values.

6. A method of creating a droplet from a jet of a flow cytometer according to claim 5 wherein said conditions are at least one of the following: the pressure of said sheath fluid; the pressure of said substance; the location at which said droplet is formed; the rate at which droplet is determined to contain some of said substance; or a property of said substance.

7. A method of creating a droplet from a jet of a flow cytometer according to claim 1 wherein said substance is introduced through a substance tube and wherein said adjusting the location at which said substance is introduced within said convergence zone comprises replacing said substance tube.

Assignments (1)
CONFIRMATORY LICENSE Recorded May 18, 2020
From: UNIVERSITY OF WASHINGTON
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 052681/0787 →
Continuity (4)
Continuation 09689585 · Oct 12, 2000
Division 08627963 · Apr 16, 1996
Continuation 08323270 · Oct 14, 1994
Related Publication 20050153458A1 · Jul 14, 2005