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US20160302701A1 - End of life detection for analyte sensors - Google Patents

End of life detection for analyte sensors
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Publication number
US20160302701A1
US20160302701A1US15/195,613US201615195613AUS2016302701A1US 20160302701 A1US20160302701 A1US 20160302701A1US 201615195613 AUS201615195613 AUS 201615195613AUS 2016302701 A1US2016302701 A1US 2016302701A1
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United States
Prior art keywords
sensor
life
noise
sensitivity
data
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Abandoned
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US15/195,613
Inventor
Naresh C. Bhavaraju
Arturo Garcia
Hari Hampapuram
Apurv Ullas Kamath
Aarthi Mahalingam
Dmytro Sokolovskyy
Stephen J. Vanslyke
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Dexcom Inc
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Dexcom Inc
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Priority to US15/195,613priorityCriticalpatent/US20160302701A1/en
Publication of US20160302701A1publicationCriticalpatent/US20160302701A1/en
Assigned to DEXCOM, INC.reassignmentDEXCOM, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: MAHALINGAM, AARTHI, SOKOLOVSKY, DMYTRO, VANSLYKE, STEPHEN J., BHAVARAJU, NARESH C., GARCIA, ARTURO, HAMPAPURAM, HARI, KAMATH, APURV ULLAS
Priority to US16/698,498prioritypatent/US11193924B2/en
Priority to US17/523,673prioritypatent/US11879887B2/en
Priority to US18/530,992prioritypatent/US20240175861A1/en
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Abstract

Systems and methods for processing sensor data and end of life detection are provided. In some embodiments, a method for determining the end of life of a continuous analyte sensor includes evaluating a plurality of risk factors using an end of life function to determine an end of life status of the sensor and providing an output related to the end of life status of the sensor. The plurality of risk factors may be selected from the list including the number of days the sensor has been in use, whether there has been a decrease in signal sensitivity, whether there is a predetermined noise pattern, whether there is a predetermined oxygen concentration pattern, and error between reference BG values and EGV sensor values.

Description

Claims (20)

What is claimed is:
1. A system for determining if a continuous analyte sensor has been reused, the system comprising sensor electronics configured to be operably connected to a continuous analyte sensor, the sensor electronics configured to:
evaluate a plurality of risk factors associated with end of life symptoms of the sensor;
determine an end of life status of the sensor by performing an end of life function based on the evaluation of the plurality of risk factors; and
provide an output related to sensor reuse of the sensor within a predetermined time frame after sensor initialization if the end of life status meets one or more predetermined sensor reuse criteria,
wherein the plurality of risk factors comprise at least two risk factors selected from the group consisting of a number of days the sensor has been in use, a rate of change of sensor sensitivity, end of life noise, oxygen concentration, glucose patterns, error between reference values, and sensor values in clinical units.
2. The system ofclaim 1, wherein one of the at least two risk factors comprises a rate of change of sensor sensitivity, and wherein the sensor electronics are configured to evaluate a rate of change of sensor sensitivity by evaluating at least one of a direction of rate of change of sensor sensitivity, an amplitude of rate of change of sensor sensitivity, a derivative of rate of change of sensor sensitivity, or a comparison of the rate of change of sensor sensitivity to a priori rate of change sensitivity information.
3. The system ofclaim 1, wherein one of the at least two risk factors comprises end of life noise, and wherein the sensor electronics are configured to evaluate end of life noise by evaluating at least one of duration of noise, a magnitude of noise, a history of noise, a spectral content of a signal from the sensor, spikes in the signal from the sensor, skewness of the signal of the sensor, or noise patterns by pattern recognition algorithms.
4. The system ofclaim 1, wherein one of the at least two risk factors comprises end of life noise, and wherein the sensor electronics are configured to evaluate end of life noise by evaluating at least two of duration of noise, a magnitude of noise, a history of noise, a spectral content of a signal from the sensor, spikes in the signal from the sensor, skewness of the signal of the sensor, or noise patterns by pattern recognition algorithms.
5. The system ofclaim 1, wherein one of the at least two risk factors comprises glucose patterns, and wherein the sensor electronics are configured to evaluate glucose patterns by evaluating at least one of mean glucose, glucose variability, peak-to-peak glucose excursions, or expected versus unexpected glucose trends based on timing.
6. The system ofclaim 1, wherein one of the at least two risk factors comprises error between reference values and sensor values in clinical units, and wherein the sensor electronics are configured to evaluate error between reference values and sensor values in clinical units by evaluating at least one of a direction of error between reference values and sensor values in clinical units, or a linearity of the sensor and an error at calibration.
7. The system ofclaim 1, wherein the sensor electronics comprise a processor module, the processor module comprising instructions stored in computer memory, wherein the instructions, when executed by the processor module, cause the sensor electronics to perform the evaluating and the providing.
8. The system ofclaim 1, wherein the sensor electronics are configured to provide an output by disabling display of sensor data responsive to the end of life status meeting the one or more predetermined sensor reuse criteria.
9. The system ofclaim 1, wherein the sensor initialization is determined by the sensor electronics in response to an event that indicates a new sensor has been implanted, including one or more of: a user providing input to a sensor system that a new sensor has been implanted, the sensor system detecting electrical connection to a sensor, a predetermined amount of time transpiring since the system prompted a user to use a new sensor.
10. The system ofclaim 1, wherein the sensor electronics are configured to collect a data point or series of data points from the analyte sensor being used, and wherein the evaluation of a plurality of risk factors associated with end of life symptoms of the sensor comprises evaluation of the collected data point or series of data points.
11. A method for determining if a continuous analyte sensor has been reused, comprising:
evaluating a plurality of risk factors associated with end of life symptoms of a sensor;
determining an end of life status of the sensor by performing an end of life function based on the evaluation of the plurality of risk factors; and
providing an output related to a sensor reuse within a predetermined time frame after sensor initialization if the end of life status meets one or more predetermined sensor reuse criteria,
wherein the plurality of risk factors comprise at least two risk factors selected from the group consisting of a number of days the sensor has been in use, a rate of change of sensor sensitivity, end of life noise, oxygen concentration, glucose patterns, error between reference values, and sensor values in clinical units.
12. The method ofclaim 11, wherein one of the at least two risk factors comprises a rate of change of sensor sensitivity, and wherein evaluating a rate of change of sensor sensitivity comprises evaluating at least one of a direction of rate of change of sensor sensitivity, an amplitude of rate of change of sensor sensitivity, a derivative of rate of change of sensor sensitivity or a comparison of the rate of change of sensor sensitivity to a priori rate of change sensitivity information.
13. The method ofclaim 11, wherein one of the at least two risk factors comprises end of life noise, and wherein evaluating end of life noise comprises evaluating at least one of duration of noise, a magnitude of noise, a history of noise, a spectral content of a signal from the sensor, spikes in the signal from the sensor, skewness of the signal of the sensor or noise patterns by pattern recognition algorithms.
14. The method ofclaim 11, wherein one of the at least two risk factors comprises end of life noise, and wherein evaluating end of life noise comprises evaluating at least two of duration of noise, a magnitude of noise, a history of noise, a spectral content of a signal from the sensor, spikes in the signal from the sensor, skewness of the signal of the sensor or noise patterns by pattern recognition algorithms.
15. The method ofclaim 11, wherein one of the at least two risk factors comprises glucose patterns, and wherein evaluating glucose patterns comprises evaluating at least one of mean glucose, glucose variability, peak-to-peak glucose excursions, or expected versus unexpected glucose trends based on timing.
16. The method ofclaim 11, wherein one of the at least two risk factors comprises error between reference values and sensor values in clinical units, and wherein evaluating error between reference values and sensor values in clinical units comprises evaluating at least one of a direction of error between reference values and sensor values in clinical units, a linearity of the sensor, or an error at calibration.
17. The method ofclaim 11, wherein the providing an output comprises disabling display of sensor data responsive to the end of life status meeting the one or more predetermined sensor reuse criteria.
18. The method ofclaim 11, comprising determining sensor initialization in response to an event that indicates a new sensor has been implanted, including one or more of: a user providing input to a sensor system that a new sensor has been implanted, the sensor system detecting electrical connection to a sensor, a predetermined amount of time transpiring since the system prompted a user to use a new sensor.
19. The method ofclaim 11, comprising collecting a data point or series of data points from the analyte sensor being used, wherein the evaluating a plurality of risk factors associated with end of life symptoms of the sensor comprises evaluating the collected data point or series of data points.
20. The method ofclaim 19, comprising performing an initial calibration using the collected data to produce an initial calibration.
US15/195,6132013-01-032016-06-28End of life detection for analyte sensorsAbandonedUS20160302701A1 (en)

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Application NumberPriority DateFiling DateTitle
US15/195,613US20160302701A1 (en)2013-01-032016-06-28End of life detection for analyte sensors
US16/698,498US11193924B2 (en)2013-01-032019-11-27End of life detection for analyte sensors
US17/523,673US11879887B2 (en)2013-01-032021-11-10End of life detection for analyte sensors
US18/530,992US20240175861A1 (en)2013-01-032023-12-06End of life detection for analyte sensors

Applications Claiming Priority (3)

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US13/733,742US9211092B2 (en)2013-01-032013-01-03End of life detection for analyte sensors
US14/523,323US9585609B2 (en)2013-01-032014-10-24End of life detection for analyte sensors
US15/195,613US20160302701A1 (en)2013-01-032016-06-28End of life detection for analyte sensors

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US14/523,323ContinuationUS9585609B2 (en)2013-01-032014-10-24End of life detection for analyte sensors

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US16/698,498ContinuationUS11193924B2 (en)2013-01-032019-11-27End of life detection for analyte sensors

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US13/733,742Active2033-10-31US9211092B2 (en)2013-01-032013-01-03End of life detection for analyte sensors
US13/733,810AbandonedUS20140188402A1 (en)2013-01-032013-01-03Outlier detection for analyte sensors
US14/523,323Active2033-08-30US9585609B2 (en)2013-01-032014-10-24End of life detection for analyte sensors
US14/523,247Active2033-03-01US9474478B2 (en)2013-01-032014-10-24End of life detection for analyte sensors
US15/061,924AbandonedUS20160183858A1 (en)2013-01-032016-03-04End of life detection for analyte sensors
US15/195,613AbandonedUS20160302701A1 (en)2013-01-032016-06-28End of life detection for analyte sensors
US15/606,954ActiveUS9977010B2 (en)2013-01-032017-05-26End of life detection for analyte sensors
US16/698,498Active2033-02-27US11193924B2 (en)2013-01-032019-11-27End of life detection for analyte sensors
US17/523,673ActiveUS11879887B2 (en)2013-01-032021-11-10End of life detection for analyte sensors
US18/530,992PendingUS20240175861A1 (en)2013-01-032023-12-06End of life detection for analyte sensors

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US13/733,810AbandonedUS20140188402A1 (en)2013-01-032013-01-03Outlier detection for analyte sensors
US14/523,323Active2033-08-30US9585609B2 (en)2013-01-032014-10-24End of life detection for analyte sensors
US14/523,247Active2033-03-01US9474478B2 (en)2013-01-032014-10-24End of life detection for analyte sensors
US15/061,924AbandonedUS20160183858A1 (en)2013-01-032016-03-04End of life detection for analyte sensors

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US17/523,673ActiveUS11879887B2 (en)2013-01-032021-11-10End of life detection for analyte sensors
US18/530,992PendingUS20240175861A1 (en)2013-01-032023-12-06End of life detection for analyte sensors

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