DocumentCode :
784469
Title :
Surface Current Density Mapping for Identification of Gastric Slow Wave Propagation
Author :
Bradshaw, L. Alan ; Cheng, Leo K. ; Richards, William O. ; Pullan, Andrew J.
Author_Institution :
Depts. of Surg., Vanderbilt Univ., Nashville, TN, USA
Volume :
56
Issue :
8
fYear :
2009
Firstpage :
2131
Lastpage :
2139
Abstract :
The magnetogastrogram (MGG) records clinically relevant parameters of the electrical slow wave of the stomach noninvasively. Besides slow wave frequency, gastric slow wave propagation velocity is a potentially useful clinical indicator of the state of health of gastric tissue, but it is a difficult parameter to determine from noninvasive bioelectric or biomagnetic measurements. We present a method for computing the surface current density from multichannel MGG recordings that allows computation of the propagation velocity of the gastric slow wave. A moving dipole source model with hypothetical as well as realistic biomagnetometer parameters demonstrates that while a relatively sparse array of magnetometer sensors is sufficient to compute a single average propagation velocity, more detailed information about spatial variations in propagation velocity requires higher density magnetometer arrays. Finally, the method is validated with simultaneous MGG and serosal electromyography measurements in a porcine subject.
Keywords :
SQUID magnetometers; biological organs; biological tissues; biomagnetism; biomedical measurement; electromyography; SQUID biomagnetometer; clinically relevant parameters; electrical slow wave; gastric slow wave propagation identification; gastric slow wave propagation velocity; gastric tissue health indicator; higher density magnetometer arrays; magnetogastrogram; moving dipole source model; multichannel MGG recordings; noninvasive bioelectric measurement; realistic biomagnetometer parameters; relatively sparse array; serosal electromyography measurement; single average propagation velocity; slow wave frequency; stomach; superconducting quantum interference device; surface current density mapping; Bioelectric phenomena; Biomagnetics; Biosensors; Current density; Frequency measurement; Magnetometers; Sensor arrays; Stomach; Surface waves; Velocity measurement; Biomagnetism; current dipole; electrogastrogram; magnetogastrogram (MGG); superconducting quantum interference devices (SQUIDs); Algorithms; Animals; Electromagnetic Fields; Electrophysiology; Gastrointestinal Motility; Humans; Male; Models, Biological; Reproducibility of Results; Stomach; Swine;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2009.2021576
Filename :
4895313
Link To Document :
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