Title
Measurement of thoracic current flow in pigs for the study of defibrillation and cardioversion.
Abstract
Although defibrillation has been in clinical use for more than 50 years, the complete current flow distribution inside the body during a defibrillation procedure has never been directly measured. This is due to the lack of appropriate imaging technology to noninvasively monitor the current flow inside the body. The current density imaging (CDI) technique, using a magnetic resonance (MR) imager, provides a new approach to this problem [Scott et al (1991)]. CDI measures the local magnetic field generated by the current and calculates the current density by computing its curl. In this study, CDI was used to measure current density at all points within a postmortem pig torso during an electrical current application through defibrillation electrodes. Furthermore, current flow information was visualized along the chest wall and within the chest cavity using streamline analysis. As expected, some of the highest current densities were observed in the chest wall. However, current density distribution varied significantly from one region to another, possibly reflecting underlying heterogeneous tissue conductivity and anisotropy. Moreover, the current flow analysis revealed many complex and unexpected current flow patterns that have never been observed before. This study has, for the first time, noninvasively measured the volume current measurement inside the pig torso.
Year
DOI
Venue
2003
10.1109/TBME.2003.816082
IEEE Trans. Biomed. Engineering
Keywords
Field
DocType
indexing terms,flow analysis,magnetic resonance,magnetic field,patient monitoring,current density
Biomedical engineering,Current density imaging,Current density,Torso,Magnetic field,Defibrillation,Computer science,Flow (psychology),Cardioversion,Magnetic resonance imaging
Journal
Volume
Issue
ISSN
50
10
0018-9294
Citations 
PageRank 
References 
6
1.09
3
Authors
5
Name
Order
Citations
PageRank
Richard S. Yoon161.09
Tim P. DeMonte281.78
Karshi F. Hasanov361.09
Dawn B. Jorgenson461.09
Michael L. G. Joy5158.47