EP1536859B1

System for detection and treatment of myocardial wall stress

Abstract

An apparatus and method for assessing myocardial wall stress is disclosed. The method may be used in conjunction with electro-stimulatory therapy for preventing or reversing ventricular remodeling. In such therapy, one or more stimulatory pulses are delivered to the heart such that a stressed region of the myocardium is pre-excited relative to other regions, thereby subjecting the stressed region to a lessened preload and afterload during systole. The unloading of the stressed myocardium over time effects reversal of undesirable ventricular remodeling.

EP1536859B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 12 September 2023, 3 years ago.

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

10 claims: 1 independent, 9 dependent

  1. 1
    A cardiac rhythm management device, comprising:sensing channels (34a-d, 33a-d, 31a-d, 30a-d) for sensing cardiac electrical activity at a plurality of myocardial sites;pacing channels (34a-d, 33a-d, 32a-d, 30a-d) for delivering pacing pulses to one or more myocardial sites;a controller (10) for controlling the delivery of pacing pulses in accordance with a programmed pacing mode;wherein the device is characterized by : circuitry for measuring activation-recovery intervals at a plurality of myocardial sites indicative of myocardial wall stress;circuitry for measuring an activation-recovery interval as the time between a detected depolarization and a detected repolarization in an electrogram generated by a sensing channel, wherein the sensing channel is a ventricular sensing channel including an R wave bandpass filter (26a, 26b) with passband characteristics selected to match the frequency content of a ventricular depolarization and a T wave bandpass filter (27a, 27b) that has a passband characteristic conforming to the frequency content of a ventricular repolarization;and, circuitry for identifying one or more stressed myocardial sites based upon the measured activation-recovery intervals, wherein a myocardial site is identified as a stressed site if its measured activation-recovery interval is below a specified threshold value.