Analyte sensor sensitivity attenuation mitigation
First Claim
1. An apparatus, comprising:
- a data communication interface;
one or more processors coupled to the data communication interface; and
a memory storing instructions which, when executed by the one or more processors, receives a first signal from a first working electrode of a glucose sensor positioned at a first predetermined position under a skin layer, receives a second signal from a second working electrode of the glucose sensor positioned at a second predetermined position under the skin layer, the second signal received contemporaneously to receiving the first signal, detects a dropout in a signal level associated with one of the first signal or the second signal, compares the first signal and the second signal to determine a variation between the first signal and the second signal in response to detecting the dropout in the signal level, and confirming the one of the first signal or the second signal as a valid glucose sensor signal when the determined variation between the first signal and the second signal is less than a predetermined threshold level.
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Abstract
Method and apparatus for receiving a first signal from a first working electrode of a glucose sensor positioned at a first predetermined position under the skin layer, receiving a second signal from a second working electrode of the glucose sensor positioned at a second predetermined position under the skin layer, the second signal received substantially contemporaneous to receiving the first signal, detecting a dropout in the signal level associated with one of the first or second signals, comparing the first signal and the second signal to determine a variation between the first and second signals, and confirming one of the first or second signals as a valid glucose sensor signal output when the determined variation between the first and the second signals is less than a predetermined threshold level are provided.
908 Citations
5 Claims
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1. An apparatus, comprising:
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a data communication interface; one or more processors coupled to the data communication interface; and a memory storing instructions which, when executed by the one or more processors, receives a first signal from a first working electrode of a glucose sensor positioned at a first predetermined position under a skin layer, receives a second signal from a second working electrode of the glucose sensor positioned at a second predetermined position under the skin layer, the second signal received contemporaneously to receiving the first signal, detects a dropout in a signal level associated with one of the first signal or the second signal, compares the first signal and the second signal to determine a variation between the first signal and the second signal in response to detecting the dropout in the signal level, and confirming the one of the first signal or the second signal as a valid glucose sensor signal when the determined variation between the first signal and the second signal is less than a predetermined threshold level. - View Dependent Claims (2, 3, 4)
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5. An apparatus, comprising:
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means for receiving a first signal from a first working electrode of a glucose sensor positioned at a first predetermined position under a skin layer; means for receiving a second signal from a second working electrode of the glucose sensor positioned at a second predetermined position under the skin layer, the second signal received contemporaneously to receiving the first signal; means for detecting a dropout in a signal level associated with one of the first signal or the second signal; means for comparing the first signal and the second signal to determine a variation between the first signal and the second signal in response to detecting the dropout in the signal level; and means for confirming the one of the first signal or the second signal as a valid glucose sensor signal when the determined variation between the first signal and the second signal is less than a predetermined threshold level.
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Specification