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US Patent 12125216 Motion based pathogen detection using a fluidic imager

Patent 12125216 was granted and assigned to McMaster University on October, 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
McMaster University
McMaster University
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Current Assignee
McMaster University
McMaster University
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
121252160
Patent Inventor Names
Qiyin Fang0
Jessica Kun0
Marek Smieja0
Date of Patent
October 22, 2024
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Patent Application Number
173043370
Date Filed
June 18, 2021
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Patent Citations
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US Patent 11635379 Portable wide field fluorimeter systems
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US Patent 11484239 Systems, devices, components and methods for detecting the locations of sources of cardiac rhythm disorders in a patient's heart
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US Patent 9495742 Analysis and sorting of objects in flow
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US Patent 9743020 Super resolution optofluidic microscopes for 2D and 3D imaging
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US Patent 10201277 Systems, devices, components and methods for detecting the locations of sources of cardiac rhythm disorders in a patient's heart
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US Patent 10229340 System and method for coarse-to-fine video object segmentation and re-composition
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US Patent 10518261 System configured to detect a pattern on a microfluidic device and determine that the microfluidic device has not been normally loaded in a test apparatus
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Patent Primary Examiner
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Gregory M Desire
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CPC Code
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G01N 33/48735
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G01N 33/492
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G01N 2333/195
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G06T 2207/30024
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G06T 7/215
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G06T 7/248
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G06T 7/0012
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B01L 3/502715
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Patent abstract

Systems, methods and devices for detecting a presence of an analyte in a fluid sample are described herein. The devices include a microfluidic module having a microfluidic channel configured to receive the fluid sample at an inlet thereof and direct the fluid sample towards an outlet thereof. The devices also include an image sensor positioned removably abutting the microfluidic module. The image sensor is positioned laterally between the inlet and the outlet of the microfluidic channel and below a lower surface of the microfluidic channel. The image sensor is communicatively coupled to a processor that is configured to receive signal data from the image sensor. The devices also include a light source configured to direct light through the fluid sample and towards the image sensor as the fluid sample passes through the microfluidic channel. The image sensor receives the light and outputs the signal data to the processor.

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