EP2004285B1

Implantable medical device system and method with signal quality monitoring and response

Abstract

This record has no abstract on file.

EP2004285B1, drawing sheet 1
Sheet 1 of 5

Term

0.5 yearsleft in the term

Expires 12 March 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

13 claims: 3 independent, 10 dependent

  1. 1
    An implantable medical device system, comprising:a plurality of subcutaneous electrodes (28) forming a plurality of subcutaneous sensing vectors;and a sensing circuit (26, 190, 191) for receiving signals from the plurality of subcutaneous sensing vectors;and a processor (142) for determining a plurality of signal quality metrics each in response to a respective subcutaneous sensing vector signal, and comparing each signal quality metric to a predetermined threshold;characterised in that the processor is configured to generate a loss of signal quality response in response to a signal quality metric crossing the threshold, wherein determining the signal quality metrics comprises calculation of a characteristic of the respective vector signal, the characteristic comprising any of a signal amplitude, a signal-to-noise ratio, a total signal energy, a signal slope, a signal frequency, a frequency of sensing at a minimum sensing threshold, a frequency of short intervals, a cross-correlation metric, a channel consistency metric, and an inter-electrode impedance and wherein the processor is further configured to determine a vector selection metric corresponding to the quality of the vector signal for providing accurate heart rate estimation and accurate morphological waveform separation between a usual sinus rhythm of a patient and a ventricular tachyarrhythmia of the patient for each of the plurality of sensing vectors, and to select one or more sensing vectors based on a comparison of the vector selection metric to a vector selection threshold.
  2. 11
    A method for use in a subcutaneously implanted medical device system, comprising:selecting a plurality of subcutaneous sensing vectors from a plurality of subcutaneous electrodes;determining a first signal quality metric in response to a first selected subcutaneous sensing vector signal, comparing the first signal quality metric to a predetermined threshold, and characterised in that the method further comprises generating a first loss of signal quality response in response to the first signal quality metric crossing the threshold, wherein determining the first signal quality metric comprises calculation of a characteristic of the vector signal, the characteristic comprising any of a signal amplitude, a signal-to-noise ratio, a total signal energy, a signal slope, a signal frequency, a frequency of sensing at a minimum sensing threshold, a frequency of short interval a cross-correlation metric, a channel consistency metric, and an inter-electrode impedance determining a vector selection metric corresponding to the quality of the vector signal for providing accurate heart rate estimation and accurate morphological waveform separation between a usual sinus rhythm of a patient and a ventricular tachyarrhythmia of the patient for each of the plurality of sensing vectors, and selecting one or more sensing vectors based on a comparison of the vector selection metric to a vector selection threshold
  3. 13
    A computer readable medium for storing a set of instructions which, when executed on a system as claims in any of claims 1 to 10, cause said subcutaneously implanted medical device system to:sense signals from a plurality of subcutaneous sensing vectors formed between a plurality of subcutaneous electrodes;determine a signal quality metric for each of the subcutaneous sensing vector signals;compare the signal quality metric for each subcutaneous sensing vector to a threshold;and provide a loss of signal quality response in response to the signal quality metric crossing the threshold, wherein determining the first signal quality metric comprises calculation of a characteristic of the vector signal, the characteristic comprising any of a signal amplitude, a signal-to-noise ratio, a total signal energy, a signal slope, a signal frequency, a frequency of sensing at a minimum sensing threshold, a frequency of short intervals, a cross-correlation metric, a channel consistency metric, and an inter-electrode impedance characterised by causing the processor to determine a vector selection metric corresponding to the quality of the vector signal for providing accurate heart rate estimation and accurate morphological waveform separation between a usual sinus rhythm of a patient and a ventricular tachyarrhythmia of the patient for each of the plurality of sensing vectors, and to select one or more sensing vectors based on a comparison of the vector selection metric to a vector selection threshold.