IP Library Granted Patent US 10,448,871
Granted Patent B2
US 10,448,871 · App. 15/195,199 · Granted Oct 22, 2019

Advanced pulse oximetry sensor

Inventor: Ammar Al-Ali (San Juan Capistrano, CA)
Assignee: Masimo Corporation
A61B5/14552A61B5/0002A61B5/02416A61B5/14532A61B5/14546A61B5/4875A61B5/6826A61B5/7278A61B5/742A61B2562/04
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Quick Facts
Patent No.
US 10,448,871
App. No.
15/195,199
Filed
Jun 28, 2016
Granted
Oct 22, 2019
Kind
B2
Art Unit
3791
USPC
600/323
Abstract

A non-invasive, optical-based physiological monitoring system is disclosed. One embodiment includes an emitter configured to emit light. A diffuser is configured to receive and spread the emitted light, and to emit the spread light at a tissue measurement site. The system further includes a concentrator configured to receive the spread light after it has been attenuated by or reflected from the tissue measurement site. The concentrator is also configured to collect and concentrate the received light and to emit the concentrated light to a detector. The detector is configured to detect the concentrated light and to transmit a signal representative of the detected light. A processor is configured to receive the transmitted signal and to determine a physiological parameter, such as, for example, arterial oxygen saturation, in the tissue measurement site.

Claims (38)

1. An optical physiological measurement device configured for placement on a patient at a tissue measurement site, the device comprising:

one or more emitters configured to emit light so as to irradiate the tissue measurement site; and

a plurality of detectors configured to detect the emitted light after attenuation by and reflection from a portion of the tissue measurement site, the portion of the tissue measurement site having an at least partially circular shape bounded by a light block, the tissue measurement site located on a wrist of the patient, the plurality of detectors further configured to transmit a signal responsive to the detected light;

wherein the light block comprises an annular ring having a circular shape located between the emitted light at the tissue measurement site and the plurality of detectors, the light block reducing an amount of incident light emitted from the one or more emitters from being detected by the plurality of detectors, wherein the plurality of detectors are arranged in an array having a spatial configuration corresponding to the shape of the portion of the tissue measurement site.

2. The optical physiological measurement device of claim 1 , further comprising a processor configured to receive the transmitted signal responsive to the detected light and to determine a physiological parameter.

3. The optical physiological measurement device of claim 2 , wherein the parameter is arterial oxygen saturation.

4. The optical physiological measurement device of claim 1 , further comprising a diffuser which receives, spreads and emits the spread light, wherein the emitted spread light is directed at the tissue measurement site.

5. The optical physiological measurement device of claim 4 , further comprising a concentrator which receives the light after attenuation by tissue of the patient, concentrates the received light and emits the concentrated light in the direction of the plurality of detectors.

6. The optical physiological measurement device of claim 5 , wherein the concentrator comprises at least one of glass, ground glass, glass beads, opal glass, and a compound parabolic concentrator.

7. The optical physiological measurement device of claim 4 , wherein the diffuser comprises at least one of a glass diffuser, ground glass diffuser, a glass bead diffuser, an opal glass diffuser, and an engineered diffuser.

8. The optical physiological measurement device of claim 4 , wherein the diffuser emits the spread light with a substantially uniform intensity profile.

9. The optical physiological measurement system of claim 4 , wherein the diffuser defines a surface area shape by which the emitted spread light is distributed onto a surface of the tissue measurement site.

10. The optical physiological measurement device of claim 1 , wherein the one or more emitters are positioned outside the annular ring when the optical physiological measurement device is placed on the patient at the tissue measurement site, and wherein the plurality of detectors are positioned inside the annular ring when the optical physiological measurement device is placed on the patient at the tissue measurement site.

11. A method to determine a constituent or analyte in a patient's blood, the method comprising:

emitting, from at least one emitter of an optical sensor, light of one or more wavelengths so as to irradiate a tissue measurement site, wherein the tissue measurement site is located on a wrist of a patient;

detecting, with a plurality of detectors, the emitted light after attenuation by and reflection from a portion of the tissue measurement site, the portion having an at least partially circular shape; and providing an annular ring located between the emitted light at the tissue measurement site and the plurality of detectors, wherein the annular ring reduces an amount of incident light emitted from the at least one emitter from arriving at the plurality of detectors, and wherein the plurality of detectors are arranged in an array having a spatial configuration corresponding to the shape of the portion of the tissue measurement site.

12. The method of claim 11 , further comprising:

transmitting, from the a plurality of detectors, a signal responsive to the detected light;

receiving, by a processor, the transmitted signal responsive to the detected light; and

processing, by the processor, the received signal responsive to the detected light to determine a physiological parameter.

13. The method of claim 11 , further comprising spreading, with a diffuser, the emitted light and emitting the spread light from the diffuser to the tissue measurement site, wherein the diffuser spreads the light over a greater area of the tissue measurement site than would otherwise be illuminated by the emitter directly emitting light at the tissue measurement site.

14. The method of claim 13 , further comprising receiving, by a concentrator, the emitted spread light after the spread light has been attenuated by and reflected from the tissue measurement site and concentrating, by the concentrator, the received light and emitting the concentrated light from the concentrator to the a plurality of detectors.

15. The method of claim 14 , wherein concentrating, by the concentrator, the received light and emitting the concentrated light from the concentrator to the plurality of detectors is performed by at least one of a glass concentrator, a glass bead concentrator, an opal glass concentrator, and a compound parabolic concentrator.

16. The method of claim 13 , wherein spreading, with a diffuser, the emitted light and emitting the spread light from the diffuser to the tissue measurement site is performed by at least one of a glass diffuser, a glass bead diffuser, an opal glass diffuser, and an engineered diffuser.

17. The method of claim 13 , wherein spreading, with a diffuser, the emitted light and emitting the spread light from the diffuser to the tissue measurement site further comprises spreading the emitted light with a substantially uniform intensity profile.

18. The method of claim 13 , wherein spreading, with a diffuser, the emitted light and emitting the spread light from the diffuser to the tissue measurement site further comprises spreading the emitted light so as to define a surface area shape by which the emitted spread light is distributed onto a surface of the tissue measurement site.

19. The method of claim 11 , wherein the at least one emitter is positioned outside the annular ring when the optical sensor is placed on the patient at the tissue measurement site, and wherein the plurality of detectors are positioned inside the annular ring when the optical sensor is placed on the patient at the tissue measurement site.

20. A pulse oximeter sensor comprising:

one or more optical sources configured to emit light at one or more wavelengths, wherein, when the pulse oximeter sensor is placed on a patient at a tissue measurement site, the one or more optical sources are positioned in a reflectance measurement configuration on a first side of the tissue measurement site, and wherein the one or more optical sources are configured to irradiate the tissue measurement site; a plurality of detectors configured to detect light emitted from the one or more optical sources after attenuation by a portion of the tissue measurement site, the portion of the tissue measurement site having an at least partially circular shape, the plurality of detectors arranged in an array having a spatial configuration corresponding to the shape of the portion of the tissue measurement site so as to capture the emitted light reflected from the tissue measurement site, wherein the plurality of detectors are positioned in a reflectance measurement configuration on the first side of the tissue measurement site when the pulse oximeter sensor is placed on the patient, the plurality of detectors further configured to output a signal responsive to the detected light; and a light block comprising an annular ring located between the emitted light at the tissue measurement site and the plurality of detectors, the light block reducing an amount of incident light emitted from the one or more optical sources from arriving at the plurality of detectors.

21. The pulse oximeter sensor of claim 20 , further comprising a concentrator which concentrates the emitted light after it has been attenuated by the tissue measurement site and directs the concentrated light toward the plurality of detectors.

22. The pulse oximeter sensor of claim 20 , wherein the plurality of detectors are further configured to output the signals response to the detected light to a processor configured to receive the signals responsive to the detected light and to determine a physiological parameter.

23. The pulse oximeter sensor of claim 20 , further comprising a diffuser configured to receive the emitted light, to spread the received light, and to emit the spread light, wherein the emitted spread light is directed at the tissue measurement site.

24. The pulse oximeter sensor of claim 23 , wherein the diffuser is further configured to define a surface area shape by which the emitted spread light is distributed onto a surface of the tissue measurement site.

25. The pulse oximeter sensor of claim 20 , wherein the one or more optical sources are positioned outside the annular ring when the pulse oximeter sensor is placed on the patient at the tissue measurement site, and wherein the plurality of detectors are positioned inside the annular ring when the pulse oximeter sensor is placed on the patient at the tissue measurement site.

26. A pulse oximeter sensor comprising:

one or more optical sources configured to emit light at one or more wavelengths, wherein, when the pulse oximeter sensor is placed on a patient at a tissue measurement site, the one or more optical sources are positioned in a reflectance measurement configuration on a first side of the tissue measurement site, and wherein the one or more optical sources are configured to irradiate the tissue measurement site, and wherein the tissue measurement site is located on a wrist of the patient; a plurality of detectors configured to detect light emitted from the one or more optical sources after attenuation by and reflection from a portion of the tissue measurement site, the portion of the tissue measurement site having an annular shape, wherein the plurality of detectors are positioned in a reflectance measurement configuration on the first side of the tissue measurement site when the pulse oximeter sensor is placed on the patient, the plurality of detectors further configured to output signals responsive to the detected light; and a light block comprising an annular ring located between the emitted light at the tissue measurement site and the plurality of detectors, the light block reducing an amount of incident light emitted from the one or more optical sources that does not enter the tissue measurement site arriving at the plurality of detectors, wherein the plurality of detectors are positioned in an array having a spatial configuration corresponding to the annular shape of the portion of the tissue measurement site.

27. The pulse oximeter sensor of claim 26 , wherein the plurality of detectors are further configured to transmit the output signals responsive to the detected light to a processor configured to receive the signals responsive to the detected light and to determine a physiological parameter.

28. The pulse oximeter sensor of claim 26 , wherein the one or more optical sources are positioned outside the annular ring when the pulse oximeter sensor is placed on the patient at the tissue measurement site, and wherein the plurality of detectors are positioned inside the annular ring when the pulse oximeter sensor is placed on the patient at the tissue measurement site.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2019
From: AL-ALI, AMMAR
To: MASIMO CORPORATION
Reel/Frame 049849/0155 →
Continuity (2)
Provisional Application 62188430 · Jul 2, 2015
Related Publication 20170000394A1 · Jan 5, 2017
Cited By (137)
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