EP0804939A2

Using MV to classify patient cardiac condition in an implanted device

Abstract

An implantable rate responsive pacemaker uses the physiological demand parameter to determine the classification of the patient (i.e., his degree of congestive heart failure). For this purpose, the parameter is monitored for extended time periods (i.e., several days) to determine the levels for said parameter corresponding to different levels of physical activity, such as maximum physical activity or rest The variation in these levels is then translated into corresponding classification (0-IV) using a preselected criteria.

EP0804939A2, drawing sheet 1
Sheet 1 of 5

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Term ended

Projected expiry passed 29 April 2017, 9.4 years ago.

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21 claims: 3 independent, 18 dependent

  1. 1
    An implantable rate responsive pacemaker comprising:a sensor for sensing intrinsic cardiac events and generating a corresponding sensed signal;. a pacing generator generating pacing signals in response to commands;a metabolic demand sensor for sensing a physiological demand of the patient from a physiological characteristic, and generating in response a metabolic indicated pacing parameter;a controller receiving said sensed signal and said metabolic indicated pacing parameter and generating said commands;and a classifier for generating an index indicative of a degree of congestive heart failure in said patient, said classifier including means for analyzing said physiological demand.
  2. 2
    The pacemaker of Claim 1 wherein said physiological demand corresponds to a peak oxygen consumption of said patient during exercise.
  3. 3
    The pacemaker of Claim 2 wherein said physiological demand is a minute volume;
  4. 5
    The pacemaker of Claim 4 wherein said variation is a ratio between a peak minute volume corresponding to a peak exercise and a rest minute volume corresponding to resting.
  5. 6
    A rate responsive implantable pacemaker comprising:an intrinsic sensor for sensing intrinsic cardiac activity in a patient's heart, said intrinsic sensor generating in response sensed signals;a pace generator for generating pacing signals in response to pacing commands;a physiological sensor for sensing a metabolic demand of said patient based on a physiological characteristic of the patient;a mapping circuit for mapping said metabolic demand into a corresponding metabolic pacing parameter;a patient classifier for generating an indicia corresponding to a degree of congestive heart failure in a patient from said metabolic demand;and a controller receiving said sensed signals, said metabolic pacing parameter and generating said pacing commands.
  6. 9
    The pacemaker of Claim 6 wherein said physiological characteristic is one of minute volume QT interval and cardiac contractibility.
  7. 10
    The pacemaker of Claim 6 wherein said physiological sensor senses a minute volume.
  8. 11
    The pacemaker of Claim 10 wherein said patient classifier includes an accumulator for collecting the minute volume levels corresponding to various levels of exercise by said patient.
  9. 12
    The pacemaker of Claim 11 wherein said classifier includes a first accumulator for accumulating a maximum minute volume corresponding to periods of maximum exercise and a second accumulator for accumulating a rest minute volume corresponding to periods of minimum exercise.
  10. 17
    A method of determining the CHF classification of a patient comprising the steps of:measuring a physiological parameter related to the metabolic demand;determining a variation of said parameter as a function of various levels of physical activity;and correlating said variation to a particular degree of classification.