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US Patent 11754486 Systems and methods for measuring properties of particles

Patent 11754486 was granted and assigned to Massachusetts Institute of Technology on September, 2023 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Patent Applicant
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Current Assignee
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11754486
Patent Inventor Names
Joon Ho Kang
Selim Olcum
Scott R. Manalis
Date of Patent
September 12, 2023
Patent Application Number
16624000
Date Filed
June 18, 2018
Patent Citations
‌
US Patent 8087284 Method and apparatus for measuring particle characteristics through mass detection
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US Patent 8291750 Resonant measurement system and method
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US Patent 8722419 Flow cytometry methods and immunodiagnostics with mass sensitive readout
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US Patent 9027388 Method and apparatus for measuring particle characteristics through mass detection
‌
US Patent 9134294 Method and apparatus for high throughput diagnosis of diseased cells with microchannel devices
‌
US Patent 9134295 Serial arrays of suspended microchannel resonators
‌
US Patent 9344805 Micro-electromechanical system microphone
‌
US Patent 9347815 Single-protein nanomechanical mass spectrometry in real time
...
Patent Citations Received
‌
US Patent 12013304 Electronic force and pressure sensor devices having flexible layers
0
Patent Primary Examiner
‌
Joseph C Rodriguez
CPC Code
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G01N 2015/1043
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G01N 2015/1006
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G01N 33/5011
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B01L 3/502761
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G01N 15/1056
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B01L 2200/0652

Systems and methods for measuring the properties (e.g., mechanical properties) of particles such as biological entities, in a fluidic channel(s) are generally provided. In some embodiments, the systems and methods comprise measuring an acoustic scattering of single particles. For example, a single particle (e.g., a biological entity) may be flowed in a suspended fluidic channel (e.g., a suspended microfluidic channel) and the fluidic channel is oscillated at or near a (mechanical) resonant frequency (e.g., at a second or higher bending mode) of the suspended fluidic channel. In some cases, an acoustic scattering signal (e.g., the change in resonant frequency of the fluidic channel as the particle flows along a longitudinal axis of the channel) may correspond to a property (e.g., a mechanical property, a cross-linking density, a transport rate of small molecules into/out of the particle) of the particle. In certain embodiments, the systems and methods comprise determining a node deviation due to a single particle (or node deviations for a plurality of particles).

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