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US Patent 11944973 Non-poissonian droplet partitioning using feedback

Patent 11944973 was granted and assigned to Sharp Life Science (EU) Limited on April, 2024 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
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Sharp Life Science (EU) Limited
1
Current Assignee
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Sharp Life Science (EU) Limited
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
119449731
Patent Inventor Names
Laura Huang1
Benjamin James Hadwen1
Adam Christopher Wilson1
Date of Patent
April 2, 2024
1
Patent Application Number
173968191
Date Filed
August 9, 2021
1
Patent Citations
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US Patent 8809068 Manipulation of beads in droplets and methods for manipulating droplets
1
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US Patent 7163612 Method, apparatus and article for microfluidic control via electrowetting, for chemical, biochemical and biological assays and the like
1
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US Patent 7901947 Droplet-based particle sorting
1
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US Patent 8173000 Active matrix device and method of driving the same
1
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US Patent 8653832 Array element circuit and active matrix device
1
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US Patent 9476856 Droplet-based affinity assays
1
Patent Primary Examiner
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Christine T Mui
1
CPC Code
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G01N 15/1484
1
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G01N 2015/1043
1
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G01N 2015/1481
1
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G01N 2015/1486
1
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G01N 15/1031
1
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B01L 2400/0427
1
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B01L 2200/061
1
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B01L 2200/06
1
...
Patent abstract

A microfluidic device performs a method of partitioning droplets from a fluid reservoir containing particles that provides a non-Poissonian distribution of dispensed droplets containing a desired number of particles. Using an electrowetting on dielectric (EWOD) device, droplets are dispensed having a Poissonian distribution of dispensed droplets containing a desired number of particles, and the droplets are interrogated to determine whether each dispensed droplet has a desired number of particles. Droplets that contain the desired number of particles are moved by EWOD operation to a reaction area on the EWOD device, and droplets that do not contain the desired number of particles are rejected and moved by EWOD operation to a holding area on the EWOD device that is different and spaced apart from the reaction area. The result is that droplets in the reaction area have a non-Poissonian distribution of droplets containing the desired number of particles.

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