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US Patent 9289763 Methods, systems, and devices relating to open microfluidic channels

Patent 9289763 was granted and assigned to Tasso on March, 2016 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Tasso
Tasso
Current Assignee
Tasso
Tasso
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9289763
Patent Inventor Names
Erwin Berthier0
Ben Casavant0
Ben Moga0
Date of Patent
March 22, 2016
Patent Application Number
13949108
Date Filed
July 23, 2013
Patent Citations Received
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US Patent 11771352 Device for the attached flow of blood
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US Patent 11772097 Simultaneous spot test and storage of blood samples
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US Patent 11877848 Dermal patch for collecting a physiological sample
0
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US Patent 11957465 Accelerated ergonomic collection of capillary blood
0
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US Patent 11998334 Devices, systems and methods for gravity-enhanced microfluidic collection, handling and transferring of fluids
0
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US Patent 11964121 Mono dose dermal patch for pharmaceutical delivery
0
‌
US Patent 12023156 Dermal patch for collecting a physiological sample
0
0
...
Patent Primary Examiner
‌
Brian J. Sines
Patent abstract

The various embodiments described herein relate to fabricating and using open microfluidic networks according to methods, systems, and devices that can be used in applications ranging from home-testing, diagnosis, and research laboratories. Open microfluidic networks allow the input, handling, and extraction of fluids or components of the fluid into or out of the open microfluidic network. Fluids can be inserted into an open microfluidic channel by using open sections of the open microfluidic network. Passive valves can be created in the microfluidic network, allowing the creation of logic circuits and conditional flow and volume valves. The fluid can be presented via the microfluidic network to diagnostic and analysis components. Fluids and components of the fluid can be extracted from the open microfluidic network via functional open sections that are easily interfaced with other microfluidic networks or common laboratory tools.

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