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Alla A Gimbel, 37Andover, MA

Alla Gimbel Phones & Addresses

Andover, MA   

30 High St UNIT 22, Medford, MA 02155   

Burlington, MA   

Tampa, FL   

Brookline, MA   

Lynn, MA   

Mentions for Alla A Gimbel

Publications & IP owners

Us Patents

Biomimetic Microfluidic Device For High Efficiency Carbon Dioxide Removal From Patients At Low Blood Flow Rates

US Patent:
2019018, Jun 20, 2019
Filed:
May 26, 2017
Appl. No.:
16/320897
Inventors:
- Cambridge MA, US
Alla A. Gimbel - Medford MA, US
Jose A. Santos - Westwood MA, US
James G. Truslow - Boston MA, US
International Classification:
B01D 63/08
B01D 69/10
A61M 1/16
Abstract:
The present disclosure discusses a system and method that includes a microfluidic device that can be used in either an extracorporeal or implantable configuration. The device supports efficient and safe removal of carbon dioxide from the blood of patients suffering from respiratory disease or injury. The microfluidic device can be a multilayer device that includes gas channels and fluid channels. Distensible membranes within the device can affect a cross-sectional area of the blood channels.

Microfluidic System For Evaluation Of Chemotherapeutic And Immunotherapeutic Drugs

US Patent:
2018028, Oct 4, 2018
Filed:
Mar 30, 2018
Appl. No.:
15/942052
Inventors:
- Cambridge MA, US
Alla A. Gimbel - Medford MA, US
Jose A. Santos - Westwood MA, US
Daniel T. Doty - Arlington MA, US
Nathan F. Moore - Providence RI, US
Louis B. Kratchman - Quincy MA, US
James Truslow - Boston MA, US
International Classification:
B01L 3/00
C12Q 1/24
G01N 33/50
Abstract:
Systems and methods for conducting assays on tissue fragment samples including providing a suspension maintaining pump, and a plurality of fluid reservoirs, wherein the fluid reservoirs are configured to hold a volume of fluid. The fluid reservoirs are fluidically coupled to a microfluidic assay chip, wherein the microfluidic assay chip includes a plurality of parallel assay channels, a first inlet port for introduction of a tissue fragment sample into the microfluidic assay ship, and a second inlet port coupled to the fluid reservoir. Each channel of the microfluidic assay chip also includes a retention barrier configured to trap the tissue fragment sample such that the fluid perfuses through the tissue sample, as well as an outlet port fluidically coupled to a waste receptacle.

Polymer Microwedges And Methods Of Manufacturing Same

US Patent:
2017036, Dec 28, 2017
Filed:
Dec 9, 2015
Appl. No.:
15/534907
Inventors:
- Cambridge MA, US
Tirunelveli S. Sriram - Acton MA, US
Parshant Kumar - Stoneham MA, US
Clayton Morris - Norfolk MA, US
William W. McFarland - Waltham MA, US
Eugene H. Cook - Acton MA, US
John LeBlanc - North Andover MA, US
Alla Gimbel - Medford MA, US
International Classification:
A41D 19/015
B29C 33/42
B29D 99/00
B29C 33/38
B29C 39/10
B29C 45/37
B29C 39/02
B29L 31/48
Abstract:
A mold for casting a micro-scale structure includes an upper surface including a first cavity having a first depth. A negative pattern for an array of micro-scale structures is defined in a surface of the first cavity. The mold includes at least one second cavity having a second depth defined in the cavity outside of the negative pattern for the array of micro-scale structures. The at least one second cavity defines a negative pattern for a standoff of the micro-scale structure. A fabric retaining frame is disposed in the first cavity.

Polymer Microwedges And Methods Of Manufacturing Same

US Patent:
2017036, Dec 21, 2017
Filed:
Dec 9, 2015
Appl. No.:
15/534827
Inventors:
- Cambridge MA, US
Tirunelveli S. Sriram - Acton MA, US
Parshant Kumar - Stoneham MA, US
Clayton Morris - Norfolk MA, US
William W. McFarland - Waltham MA, US
Eugene H. Cook - Acton MA, US
John LeBlanc - North Andover MA, US
Alla Gimbel - Medford MA, US
International Classification:
B29C 39/26
B29C 37/00
B29C 33/38
B29C 33/58
B29C 39/02
B29K 75/00
B29K 105/00
B29L 31/48
Abstract:
A mold for casting a micro-scale dry adhesive structure includes an upper surface including a first cavity having a first depth, a negative pattern for an array of micro-scale structures defined in a surface of the first cavity, and at least one second cavity having a second depth defined in the cavity outside of the negative pattern for the array of micro-scale structures, the at least one second cavity defining a negative pattern for a standoff of the micro-scale dry adhesive structure.

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