Key result
Computer simulation demonstrated that for optimal pacemaker sensing, intracardiac electrograms with high amplitude should have high slew rates and those with low amplitudes should have low slew rates.
Population
Computer simulation model of intracardiac electrograms based on the voltage at the position of the pacing…
Design
Preclinical
Authors
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Simulation findings may guide sensing algorithm design; clinical translation remains untested and should not alter practice.
Computer simulation demonstrates that optimal pacemaker sensing requires matching high amplitude electrograms with high slew rates, and low amplitudes with low slew rates.
Arai et al. (1984) studied Pacemaker sensing. Simulated intracardiac electrograms with varying amplitudes and slew rates was evaluated on Optimal amplitude and slew rate for pacemaker sensing. Computer simulation demonstrated that for optimal pacemaker sensing, intracardiac electrograms with high amplitude should have high slew rates and those with low amplitudes should have low slew rates.
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