IP Library › Patent Application 17989804
Patent Application
App. No. 17/989,804

Method And System For Non-Invasive Detection Of A Living Subject's Blood Oxygen Saturation

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Quick Facts
Patent No.
US None
App. No.
17/989,804
Abstract

A method and system for non-invasive detection of a living subject's blood oxygen saturation is disclosed herein. A system, method, and apparatus utilizes an imaging RGB/infrared sensor and an active two-color light source for detecting blood oxygen saturation (SpO2) of a living subject in a non-contact manner. The system comprises a non-contact light source comprising red light or infrared light; an imaging sensor; a processor; and a user interface.

Claims (34)

1 . A method for non-invasive detection of a living subject's blood oxygen saturation, the method comprising:

detecting a presence of a living subject in a room utilizing an object detection algorithm running on a processor of a sensor system within the room;

identifying an area of the living subject's skin using an image analysis search algorithm running on the processor of the sensor system;

focusing light from a non-contact light source on the living subject, the light selected from red light or infrared light;

detecting reflected light from the living subject at an imaging sensor;

transmitting reflected light data from the imaging sensor to a processor for processing to determine the living subject's blood oxygen saturation value; and

transmitting the living subject's blood oxygen saturation value from the processor to a user interface for communication.

2 . The method according to claim 1 wherein the processor which runs an algorithm internally to perform digital signal processing, feature extraction, decision logic, and preparation for communication with the user's module.

3 . The method according to claim 1 further comprising alternating the use of red light or infrared light.

4 . The method according to claim 1 wherein the image analysis search algorithm is selected from the group of a texture segmentation or a ROI calculation.

5 . The method according to claim 4 further comprising controlling the azimuth and elevation angle of the light source based on identifying the area of the living subject's skin.

6 . The method according to claim 4 further comprising controlling a reflected angle of rotation using a mirror with rotation control.

7 . The method according to claim 4 further comprising flooding the subject with light.

8 . The method according to claim 8 further comprising capturing an image when each light source is at full strength and comparing the reflected light of the area of the living subject's skin.

9 . The method according to claim 9 further comprising using a ratio of reflected light to estimate the living subject's blood oxygen saturation (SpO2) using a Sophia (Skin-Oxygen Photoplethysmographic Image Analysis) algorithm.

10 . A system for non-invasive detection of a living subject's blood oxygen saturation, the system comprising:

a non-contact light source comprising red light or infrared light;

an imaging sensor;

a processor; and

a user interface;

wherein the processor is configured to run object detection algorithm trained to detect the presence of a living subject in a room;

wherein non-contact light source is configured to focus light on the living subject;

wherein the imaging sensor is configured to detect reflected light from the living subject;

wherein the imaging sensor is configured to transmit the reflected light data to a processor;

wherein the processor is configured to determine the living subject's blood oxygen saturation value; and

wherein the processor is configured to transmit the living subject's blood oxygen saturation value to the user interface for communication.

11 . The system according to claim 10 wherein the processor is configured to run an algorithm internally to perform digital signal processing, feature extraction, decision logic, and preparation for communication with the user's module.

12 . The system according to claim 10 wherein the light source is configured to alternate the use of red light or infrared light.

13 . The system according to claim 10 wherein imaging sensor is configured to identify an area of the living subject's skin using an image analysis search algorithm selected from the group of a texture segmentation or a ROI calculation.

14 . The system according to claim 14 wherein the light source is configured to control the azimuth and elevation angle of the light source based on identifying the area of the living subject's skin.

15 . The system according to claim 14 further comprising a mirror with rotation control configured to control a reflected angle of rotation using.

16 . The system according to claim 14 wherein the light source is configured to flood the subject with light.

17 . The system according to claim 16 wherein the imaging sensor is configured to capture an image when each light source is at full strength and comparing the reflected light of the area of the living subject's skin.

18 . The system according to claim 17 wherein the processor is configured to use a ratio of reflected light to estimate the living subject's blood oxygen saturation (SpO2) using a Sophia (Skin-Oxygen Photoplethysmographic Image Analysis) algorithm.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2023
From: MIKU, INC.
To: INNOVATIVE HEALTH MONITORING LLC
Reel/Frame 064933/0933 →
RELEASE OF SECURITY INTEREST Recorded Sep 15, 2023
From: W67 LLC
To: MIKU, INC.
Reel/Frame 064926/0100 →
SECURITY INTEREST Recorded Aug 28, 2023
From: MIKU, INC.
To: W67 LLC
Reel/Frame 064724/0056 →
SECURITY INTEREST Recorded Apr 24, 2023
From: MIKU, INC.
To: W67 LLC; JONATHAN D. POLLOCK 2012 FAMILY TRUST
Reel/Frame 063414/0827 →
SECURITY INTEREST Recorded Apr 24, 2023
From: MIKU, INC.
To: W67 LLC; JONATHAN D. POLLOCK 2012 FAMILY TRUST
Reel/Frame 063415/0309 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2022
From: WHITE, ERIC GREGORY; ABRAMS, DAVID ROBERT
To: MIKU, INC.
Reel/Frame 062047/0677 →