IP Library Granted Patent US 11,484,227
Granted Patent B2
US 11,484,227 · App. 16/178,431 · Granted Nov 1, 2022

Method for conditioning of a sensor

Inventors: Mihailo V. Rebec (Portland, OR); Robert Bruce (Beaverton, OR); Ralph Dutt-Ballerstadt (Portland, OR)
Assignee: WAVEFORM TECHNOLOGIES, INC.
A61B5/14532A61B5/1486A61B5/1495G01N27/49
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Quick Facts
Patent No.
US 11,484,227
App. No.
16/178,431
Granted
Nov 1, 2022
Kind
B2
Abstract

A method of in vivo conditioning of an indwelling sensor to reduce run-in time, (stabilization time) comprising: a) applying a first potential to the sensor and measuring a first current at the first potential; b) applying a second potential to the sensor and measuring a second current at the second potential; c) determining a relationship of the first current measured to the second current measured; repeating a, b, and c until the relationship between the first current measured and the second current measured has stabilized, thereby reducing sensor run-in time.

Claims (25)

1. A method of conditioning of an indwelling sensor to reduce run-in time, comprising:

performing a plurality of conditioning cycles, wherein each conditioning cycle is performed by:

measuring a current of the indwelling sensor when applying a first potential to the indwelling sensor in a respective time period, wherein the first potential is greater than or equal to a running voltage of the indwelling sensor,

measuring the current of the indwelling sensor when applying a second potential to the indwelling sensor in a respective time period, wherein the first potential is greater than the second potential and the respective time period in which the first potential is applied to the indwelling sensor is greater than the respective time period in which the second potential is applied to the indwelling sensor, and

determining a ratio of the current measured when applying the first potential to the current measured when applying the second potential; and terminating the conditioning cycles when the ratio has stabilized.

2. The method of claim 1 , where the second potential is between about 200 mV and about 900 mV and the first potential is between about 300 mV and about 1000 mV.

3. The method of claim 1 , where the second potential is between about 200 mV and about 900 mV and the first potential is between about 700 mV and about 900 mV.

4. The method of claim 1 , where at least 3 of the conditioning cycles are performed.

5. The method of claim 1 , where in each conditioning cycle, the first potential is applied for about 30 seconds to about 15 minutes and the second potential is applied for about 10 seconds to about 3 minutes.

6. The method of claim 1 , where the method is repeated for between about 5 minutes and about 120 minutes.

7. The method of claim 1 , where the indwelling sensor comprises a glucose sensor.

8. The method of claim 1 , where the method is initiated before about 5 minutes after insertion of the indwelling sensor into a tissue of a subject.

9. The method of claim 1 , where the method is performed after a predetermined time period to determine if the indwelling sensor is functioning properly.

10. The method of claim 1 , where the method is performed in response to a determination that a signal drift as recorded by the indwelling sensor does not correspond to actual levels of an analyte the indwelling sensor is configured to measure.

11. The method of claim 1 , where the measured current when applying the first potential and when applying the second potential is between about 1 nA and about 50 nA.

12. The method of claim 1 , where in each conditioning cycle the ratio is between about 3 and about 14.

13. The method of claim 1 , where the method is performed prior to calibration of the indwelling sensor.

14. The method of claim 1 , where the method is performed in vitro prior to insertion of the indwelling sensor into a tissue of a subject.

15. The method of claim 1 , where the method is performed partially in vitro prior to insertion of the indwelling sensor into a tissue of a subject and partially in vivo after insertion of the indwelling sensor into the tissue of the subject.

16. The method of claim 1 , wherein in each conditioning cycle the respective time period in which the first potential is applied to the indwelling sensor is 10 minutes or more and the respective time period in which the second potential is applied to the indwelling sensor is 5 minutes or less.

17. The method of claim 1 , wherein in each conditioning cycle the respective time period in which the first potential is applied to the indwelling sensor is at least twice the respective time period in which the second potential is applied to the indwelling sensor.

18. The method of claim 1 , wherein in each conditioning cycle the respective time period in which the first potential is applied to the indwelling sensor is at least ten times the respective time period in which the second potential is applied to the indwelling sensor.

19. The method of claim 1 , wherein in each conditioning cycle the respective time period in which the first potential is applied to the indwelling sensor is at least five times the respective time period in which the second potential is applied to the indwelling sensor.

20. The method of claim 1 , wherein the second potential is used for estimating a completion of the run-in of the indwelling sensor.

21. The method of claim 1 , wherein in each conditioning cycle the respective time period in which the first potential is applied to the indwelling sensor is at least twenty times the respective time period in which the second potential is applied to the indwelling sensor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2024
From: WAVEFORM TECHNOLOGIES, INC.; WAVEFORM HOLDINGS, LLC
To: KONAMITE LIMITED
Reel/Frame 067073/0813 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2020
From: REBEC, MIHAILO V.; BRUCE, ROBERT; DUTT-BALLERSTADT, RALPH
To: WAVEFORM TECHNOLOGIES, INC.
Reel/Frame 051683/0269 →
Continuity (2)
Provisional Application 62580376 · Nov 1, 2017
Related Publication 20190125225A1 · May 2, 2019