Invention Grant
- Patent Title: Remote sensing and measurement system using time-of-flight detectors
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Application No.: US17666518Application Date: 2022-02-07
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Publication No.: US11596311B2Publication Date: 2023-03-07
- Inventor: Mohammed N. Islam
- Applicant: Omni Medsci, Inc.
- Applicant Address: US MI Ann Arbor
- Assignee: Omni Medsci, Inc.
- Current Assignee: Omni Medsci, Inc.
- Current Assignee Address: US MI Ann Arbor
- Agency: Brooks Kushman P.C.
- Main IPC: A61B5/00
- IPC: A61B5/00 ; G01J3/10 ; G01J3/28 ; G01J3/14 ; G01J3/453 ; G01J3/42 ; G01J3/02 ; G01N21/35 ; G16H40/67 ; G01N21/359 ; A61B5/145 ; G01N33/15 ; G01N33/49 ; G01N21/3563 ; G01N21/39 ; G01N33/02 ; G01N33/44 ; G01N21/88 ; A61B5/1455 ; G16Z99/00 ; A61C19/04 ; G01N21/3504 ; H01S3/30 ; G01J3/18 ; G01J3/12 ; G01N21/85 ; G01N21/95 ; H01S3/067 ; H01S3/00 ; G01M3/38 ; A61C1/00

Abstract:
A measurement system is provided with an array of laser diodes with one or more Bragg reflectors. At least a portion of the light generated by the array is configured to penetrate tissue comprising skin. A detection system configured to: measure a phase shift, and a time-of-flight, of at least a portion of the light from the array of laser diodes reflected from the tissue relative to the portion of the light generated by the array; generate one or more images of the tissue; detect oxy- or deoxy-hemoglobin in the tissue; non-invasively measure blood in blood vessels within or below a dermis layer within the skin; measure one or more physiological parameters based at least in part on the non-invasively measured blood; and measure a variation in the blood or physiological parameter over a period of time.
Public/Granted literature
- US20220160234A1 TIME-OF-FLIGHT IMAGING AND PHYSIOLOGICAL MEASUREMENTS Public/Granted day:2022-05-26
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