Title :
Design of a real-time ventricular fibrillation waveform analysis system for improved low energy DC defibrillation shock delivery
Author :
Hsia, Peng-Wie ; Mendoza, Dennis ; Gurunathan, Suresh ; Naik, Sandeep ; Damiano, Ralph, Jr.
Author_Institution :
Med. Coll. of Virginia, Virginia Commonwealth Univ., Richmond, VA, USA
Abstract :
The authors´ earlier experiments have shown a relation between ventricular fibrillation (VF) voltage and defibrillation success. They proposed that a period of high absolute ventricular fibrillation voltage (AVFV) may be more susceptible to defibrillation. For the prospective study necessary to test this hypothesis, a PC based real-time system that analyzes VF waveform and synchronizes a defibrillation shock based on the VF analysis was developed. The new system has been used in three defibrillation protocols. The authors demonstrated effective detection of high AVFV periods (p<0.003) and an increase in defibrillation success ranging from 15-24% (p<0.04) with various lead configurations. As such, this system has been useful in increasing defibrillation success through improved delivery of low energy defibrillation shocks based on real-time VF waveform analysis.
Keywords :
defibrillators; electric shocks; electrocardiography; medical signal processing; microcomputer applications; real-time systems; waveform analysis; PC based real-time system; defibrillation protocols; defibrillation success; improved low energy DC defibrillation shock delivery; lead configuration; real-time ventricular fibrillation waveform analysis system; therapeutic technique; ventricular fibrillation voltage; Data acquisition; Defibrillation; Electric shock; Electrocardiography; Electrodes; Fibrillation; Hardware; Microprocessors; Real time systems; Voltage;
Conference_Titel :
Computers in Cardiology, 1996
Conference_Location :
Indianapolis, IN, USA
Print_ISBN :
0-7803-3710-7
DOI :
10.1109/CIC.1996.542545