IP Library Granted Patent US 7,016,714
Granted Patent B2
US 7,016,714 · App. 10/784,731 · Granted Mar 21, 2006

Optical-based sensing devices

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Quick Facts
Patent No.
US 7,016,714
App. No.
10/784,731
Granted
Mar 21, 2006
Kind
B2
Abstract

An optical-based sensor for detecting the presence or amount of an analyte using both indicator and reference channels. The sensor has a sensor body with a source of radiation embedded therein. Radiation emitted by the source interacts with indicator membrane indicator molecules proximate the surface of the body. At least one optical characteristic of these indicator molecules varies with analyte concentration. For example, the level of fluorescence of fluorescent indicator molecules or the amount of light absorbed by light-absorbing indicator molecules can vary as a function of analyte concentration. In addition, radiation emitted by the source also interacts with reference membrane indicator molecules proximate the surface of the body. Radiation (e.g., light) emitted or reflected by these indicator molecules enters and is internally reflected in the sensor body. Photosensitive elements within the sensor body generate both indicator channel and reference channel signals to provide an accurate indication of the concentration of the analyte. Preferred embodiments are totally self-contained and are sized and shaped for use in vivo in a human being. Such embodiments preferably include a power source, e.g. an inductor, which powers the source of radiation using external means, as well as a transmitter, e.g. an inductor, to transmit to external pickup means the signal representing the level of analyte.

Claims (43)

1. An optical-based sensor for determining the presence or concentration of an analyte in a medium, said sensor comprising:

a substrate, said substrate having a first side and a second side, the first and second sides having regions that are masked;

a first radiation source mounted on the first side of said substrate;

a second radiation source mounted on the second side of said substrate;

a first detector for detecting radiation incident thereon and generating an electrical signal responsive thereto, said first detector mounted on the first side of said substrate;

a second detector for detecting radiation incident thereon and generating an electrical signal responsive thereto, said second detector mounted on the second side of said substrate;

a first indicator element having an optical characteristic that is affected by the presence or concentration of an analyte, said first indicator element being positioned to receive radiation from said first radiation source;

a second indicator element having an optical characteristic that is affected by the presence or concentration of an analyte, said second indicator element being positioned to receive radiation from said second radiation source; and

wherein said first detector generates an electrical signal responsive to radiation incident thereon emitted by said first indicator element and wherein said second detector generates an electrical signal responsive to radiation incident thereon emitted by said second indicator element.

2. The sensor of claim 1 , wherein said first and second radiation sources are LEDs.

3. The sensor of claim 1 , wherein said sensor has a sensor body, said sensor body having an outer surface surrounding said sensor body.

4. The sensor of claim 3 , wherein said first indicator element includes indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source.

5. The sensor of claim 4 , wherein said second indicator element includes indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source.

6. The sensor of claim 5 , wherein said indicator molecules from said first and second indicator elements are affected by the presence or concentration of analytes that are different from one another.

7. The sensor of claim 4 , wherein the optical characteristics of said indicator molecules vary as a function of the concentration of oxygen.

8. The sensor of claim 4 , wherein the optical characteristics of said indicator molecules vary as a function of the concentration of glucose.

9. The sensor of claim 3 , wherein said second indicator element includes a reference membrane disposed proximate the outer surface of said sensor body and positioned to receive radiation from said radiation source, said reference membrane containing indicator molecules that are substantially unaffected by the presence or concentration of an analyte.

10. The sensor of claim 3 , wherein said second indicator element includes indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source.

11. The sensor of claim 3 , wherein said sensor body is configured such that some of the radiation received by either said first or second photosensitive elements is reflected internally within said sensor body before striking the photosensitive elements.

12. The sensor of claim 3 , wherein said sensor body is an optically transmissive sensor body which functions as an optic wave guide.

13. The sensor of claim 1 , wherein said first radiation source and said second radiation source are mounted on opposite sides of said substrate.

14. The sensor of claim 1 , wherein said first radiation source and said second radiation source are mounted on the masked regions of the first and second sides of said substrate.

15. An optical-based sensor for determining the presence or concentration of an analyte in a medium, said sensor comprising:

a sensor body having an outer surface surrounding the sensor body;

a substrate, said substrate having a first side and a second side;

a first radiation source mounted on the first side of said substrate;

a second radiation source mounted on the second side of said substrate;

a first detector for detecting radiation incident thereon and generating and electrical signal responsive thereto, said first detector mounted on the first side of said substrate;

a second detector for detecting radiation incident thereon and generating and electrical signal responsive thereto, said second detector mounted on the second side of said substrate;

a first indicator element having an optical characteristic that is affected by the presence or concentration of an analyte, said first indicator element being positioned to receive radiation from said first radiation source, said first indicator element including indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source;

a second indicator element having an optical characteristic that is affected by the presence or concentration of an analyte, said second indicator element being positioned to receive radiation from said second radiation source, said second indicator element including indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source; and

wherein said first detector generates an electrical signal responsive to radiation incident thereon emitted by said first indicator element and wherein said second detector generates an electrical signal responsive to radiation incident thereon emitted by said second indicator element, and

wherein said indicator molecules from said first and second indicator elements are affected by the presence or concentration of analytes that are different from one another.

16. The sensor of claim 15 , wherein said first and second radiation sources are LEDs.

17. The sensor of claim 15 , wherein said second indicator element includes a reference membrane disposed proximate the outer surface of said sensor body and positioned to receive radiation from said radiation source, said reference membrane containing indicator molecules that are substantially unaffected by the presence or concentration of an analyte.

18. The sensor of claim 15 , wherein said second indicator element includes indicator molecules disposed within an indicator membrane proximate the outer surface of said sensor body, said indicator membrane containing indicator molecules that are affected by the presence or concentration of an analyte and positioned to receive radiation from said radiation source.

19. The sensor of claim 15 , wherein the optical characteristics of one of said indicator molecules varies as a function of the concentration of oxygen.

20. The sensor of claim 15 , wherein the optical characteristics of one of said indicator molecules varies as a function of the concentration of glucose.

21. The sensor of claim 15 , wherein said first radiation source and said second radiation source are mounted on opposite sides of said substrate.

22. The sensor of claim 15 , wherein said sensor body is configured such that some of the radiation received by either said first or second photosensitive elements is reflected internally within said sensor body before striking the photosensitive elements.

23. The sensor of claim 15 , wherein said sensor body is an optically transmissive sensor body which functions as an optic wave guide.

24. The sensor of claim 23 , wherein said first side of said substrate and said second side of said substrate contain regions that are masked.

25. The sensor of claim 24 , wherein said first radiation source and said second radiation source are mounted on the masked regions of the first and second sides of said substrate.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Mar 23, 2020
From: SOLAR CAPITAL LTD., AS AGENT
To: SENSEONICS, INCORPORATED
Reel/Frame 052207/0242 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Aug 1, 2019
From: SENSEONICS, INCORPORATED
To: SOLAR CAPITAL LTD., AS AGENT
Reel/Frame 049926/0827 →
RELEASE OF SECURITY INTEREST Recorded Jul 25, 2019
From: OXFORD FINANCE LLC, AS COLLATERAL AGENT AND AS LENDER
To: SENSEONICS, INCORPORATED
Reel/Frame 049873/0713 →
CHANGE OF NAME Recorded Jun 25, 2019
From: SENSORS FOR MEDICINE AND SCIENCE, INC.
To: SENSEONICS, INCORPORATED
Reel/Frame 049588/0046 →
SECURITY INTEREST Recorded Jan 26, 2018
From: SENSEONICS, INCORPORATED
To: OXFORD FINANCE LLC, AS COLLATERAL AGENT AND AS LENDER
Reel/Frame 045164/0154 →
RELEASE OF SECURITY INTEREST Recorded Dec 12, 2011
From: NEW ENTERPRISE ASSOCIATES 10, LIMITED PARTNERSHIP
To: SENSORS FOR MEDICINE AND SCIENCE, INC.
Reel/Frame 027362/0509 →
SECURITY AGREEMENT Recorded Jan 14, 2011
From: SENSORS FOR MEDICINE AND SCIENCE, INC.
To: NEW ENTERPRISE ASSOCIATES 10, LIMITED PARTNERSHIP
Reel/Frame 025644/0315 →