Title :
Radio-frequency powered atrial defibrillation with a biphasic rectangular pulse waveform: a safety study at 3 and 5 jouls
Author :
Escalona, O.J. ; Walsh, S.J. ; Allen, J.D. ; Anderson, J. McC ; Adgey, A.A.J.
Author_Institution :
Univ. Simon Bolivar, Caracas, Venezuela
Abstract :
A novel device for transvenous atrial defibrillation with a biphasic rectangular pulse waveform, with instant power supplied through a radio-frequency energy-transfer link in a short air gap of up to 18 mm, has been investigated and is briefly described here. Previous waveform assessments, have suggested that a biphasic and asymmetric (second phase at 50% amplitude) pulse waveform of energy discharge is of particular clinical interest. Hence, a safety study upon the haemodynamic effects of such a novel waveform for atrial defibrillation, was carried out on 6 animal models (pigs), at energy levels of 3 J and 5 J. The results demonstrated relatively small and reversible effects on the haemodynamics and the novel waveform was comparable in effect to a conventional, capacitor-based (with RC exponential decay), biphasic waveform. Also, an assessment of the device output performance for various air gap distances is presented.
Keywords :
bioelectric phenomena; defibrillators; haemodynamics; physiological models; waveform analysis; RC exponential decay; air gap; animal models; asymmetric pulse waveform; biphasic rectangular pulse waveform; energy discharge; haemodynamic effects; radiofrequency energy-transfer; radiofrequency powered atrial defibrillation; Atrial fibrillation; Batteries; Blood flow; Circuits; Coils; Defibrillation; Electric shock; Pulsed power supplies; Radio frequency; Safety;
Conference_Titel :
Devices, Circuits and Systems, 2004. Proceedings of the Fifth IEEE International Caracas Conference on
Print_ISBN :
0-7803-8777-5
DOI :
10.1109/ICCDCS.2004.1393403