IP Library Granted Patent US 9,642,565
Granted Patent B2
US 9,642,565 · App. 12/163,181 · Granted May 9, 2017

Deformable physiological sensor

Inventors: Oleg Gonopolskiy (West Bloomfield, MI); Rick Scheuing (Rochester Hills, MI)
Assignee: Covidien LP
A61B5/14552A61B5/0059A61B5/14553A61B2562/085A61B2562/164
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Quick Facts
Patent No.
US 9,642,565
App. No.
12/163,181
Granted
May 9, 2017
Kind
B2
Abstract

A sensor for measuring physiological characteristics is provided that includes a circuit assembly and a means of deforming the sensor to a desired shape of small radius compound curvature. In one embodiment, the sensor includes a deformable layer configured to conform and maintain a shape of a surface on which the sensor is applied.

Claims (33)

1. A sensor for measuring physiological characteristics, comprising:

a circuit assembly having a plurality of optical components mounted on a flexible planar substrate; and

a deformable material layer configured to deform as the sensor is applied to and conforms to a non-planar, compound curvature surface on the patient, wherein said deformable material causes the sensor to tend to maintain the conformed shape of the sensor independent of an external force;

wherein a center horizontal plane of said flexible planar substrate is axially aligned with the mechanical center of said optical components.

2. The sensor of claim 1 , wherein said deformable material is a metal layer in the sensor.

3. The sensor of claim 2 , wherein said metal layer is an aluminum layer.

4. The sensor of claim 1 , wherein said deformable material is integrated into said flexible planar substrate.

5. The sensor of claim 1 , further comprising at least two planar material layers disposed on opposite parallel surfaces of said flexible planar substrate.

6. The sensor of claim 5 , wherein said material layers are foam.

7. The sensor of claim 5 , wherein a thickness of said two material layers collectively equal the thickness of said plurality of optical components.

8. The sensor of claim 1 , wherein said optical components include at least one light emitter and at least one light detector.

9. The sensor of claim 1 , further comprising an adhesive layer configured to adhere the sensor to a surface of the patient, and wherein said deformable material is configured to tend to maintain the conformed shape of the sensor independent of any adhesion force applied by said adhesive layer.

10. The sensor of claim 1 , wherein said deformable material is configured to tend to maintain the conformed shape of the sensor after the sensor is removed from the patient.

11. A sensor for measuring physiological characteristics, comprising:

a circuit assembly having a plurality of optical components mounted on a flexible planar substrate; and

a deformable material layer configured to deform as the sensor is applied to and conforms to a non-planar, compound curvature surface on the patient, wherein said deformable material causes the sensor to tend to maintain the conformed shape of the sensor independent of an external force;

wherein a center longitudinal axis of each said optical component is aligned with and coincides with a center horizontal plane of said flexible planar substrate.

12. The sensor of claim 11 , wherein said deformable material is a metal layer in the sensor.

13. The sensor of claim 11 , wherein said deformable material is integrated into said flexible planar substrate.

14. The sensor of claim 11 , further comprising at least two planar material layers disposed on opposite major surfaces of said flexible planar substrate, wherein a thickness of said two material layers collectively equal the thickness of said plurality of optical components.

15. The sensor of claim 11 , wherein said optical components include at least one light emitter and at least one light detector.

16. The sensor of claim 11 , further comprising an adhesive layer configured to adhere the sensor to a surface of the patient, and wherein said deformable material is configured to tend to maintain the conformed shape of the sensor independent of any adhesion force applied by said adhesive layer.

17. The sensor of claim 11 , wherein said deformable material is configured to tend to maintain the conformed shape of the sensor after the sensor is removed from the patient.

18. A sensor for measuring physiological characteristics, comprising:

a circuit assembly having a plurality of optical components mounted on a flexible planar substrate; and

a deformable material layer configured to deform as the sensor is applied to and conforms to a non-planar, compound curvature surface on the patient, wherein said deformable material causes the sensor to tend to maintain the conformed shape of the sensor independent of an external force;

wherein said optical components are mounted such that half of each component mounted in said orifice extends above a center horizontal plane of said flexible planar substrate and the other half of each component mounted in said orifices extends below said center horizontal plane of said flexible planar substrate.

19. The sensor of claim 18 , wherein said deformable material is a metal layer in the sensor.

20. The sensor of claim 18 , wherein said deformable material is integrated into said flexible planar substrate.

21. The sensor of claim 18 , further comprising at least two planar material layers disposed on opposite major surfaces of said flexible planar substrate, wherein a thickness of said two material layers collectively equal the thickness of said plurality of optical components.

22. The sensor of claim 18 , wherein said optical components include at least one light emitter and at least one light detector.

23. The sensor of claim 18 , further comprising an adhesive layer configured to adhere the sensor to a surface of the patient, and wherein said deformable material is configured to tend to maintain the conformed shape of the sensor independent of any adhesion force applied by said adhesive layer.

24. The sensor of claim 18 , wherein said deformable material is configured to tend to maintain the conformed shape of the sensor after the sensor is removed from the patient.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2012
From: NELLCOR PURITAN BENNETT LLC
To: COVIDIEN LP
Reel/Frame 029431/0766 →
MERGER Recorded Jan 6, 2011
From: SOMANETICS CORPORATION
To: SOMANETICS LLC
Reel/Frame 025597/0018 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2011
From: SOMANETICS LLC
To: NELLCOR PURITAN BENNETT LLC
Reel/Frame 025597/0088 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2008
From: GONOPOLSKIY, OLEG; SCHEUING, RICK
To: SOMANETICS CORPORATION
Reel/Frame 021476/0315 →
Continuity (2)
Provisional Application 60946607 · Jun 27, 2007
Related Publication 20090012380A1 · Jan 8, 2009