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US Patent 11920114 Controlling pressure

Patent 11920114 was granted and assigned to Emulate (company) on March, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Emulate (company)
Emulate (company)
0
Current Assignee
Emulate (company)
Emulate (company)
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119201140
Patent Inventor Names
Christopher David Hinojosa0
Josiah Daniel Sliz0
Jose Fernandez-Alcon0
Joshua Gomes0
Daniel Levner0
Date of Patent
March 5, 2024
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Patent Application Number
171768730
Date Filed
February 16, 2021
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Patent Citations
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US Patent 7501101 Microchannel apparatus comprising plural microchannels and methods of conducting unit operations
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US Patent 7651669 Microsystem process networks
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US Patent 7670797 Method of determining toxicity with three dimensional structures
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US Patent 7759113 Fabrication of tissue lamina using microfabricated two-dimensional molds
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US Patent 7776021 Micromachined bilayer unit for filtration of small molecules
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US Patent 7790028 Systems, methods, and devices relating to a cellularized nephron unit
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US Patent 7858048 Microfluidic system
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US Patent 6915679 Multi-reservoir pressure control system
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...
Patent Primary Examiner
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Brian J. Sines
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CPC Code
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C12M 29/10
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C12N 5/0602
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C12N 2521/00
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A01N 1/021
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A01N 1/0247
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B01L 3/5027
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B01L 3/50273
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B01L 3/502738
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Patent abstract

A culture module is contemplated that allows the perfusion and optionally mechanical actuation of one or more microfluidic devices, such as organ-on-a-chip microfluidic devices comprising cells that mimic at least one function of an organ in the body. A method for pressure control is contemplated to allow the control of flow rate (while perfusing cells) despite limitations of common pressure regulators. The method for pressure control allows for perfusion of a microfluidic device, such as an organ on a chip microfluidic device comprising cells that mimic cells in an organ in the body, that is detachably linked with said assembly, so that fluid enters ports of the microfluidic device from a fluid reservoir, optionally without tubing, at a controllable flow rate.

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