DocumentCode
636995
Title
Automated classification of spatiotemporal characteristics of gastric slow wave propagation
Author
Paskaranandavadivel, Niranchan ; Gao, J. ; Peng Du ; O´Grady, Gregory ; Cheng, Leo K.
Author_Institution
Auckland Bioeng. Inst., Univ. of Auckland, Auckland, New Zealand
fYear
2013
fDate
3-7 July 2013
Firstpage
7342
Lastpage
7345
Abstract
Gastric contractions are underpinned by an electrical event called slow wave activity. High-resolution electrical mapping has recently been adapted to study gastric slow waves at a high spatiotemporal detail. As more slow wave data becomes available, it is becoming evident that the spatial organization of slow wave plays a key role in the initiation and maintenance of gastric dsyrhythmias in major gastric motility disorders. All of the existing slow wave signal processing techniques deal with the identification and partitioning of recorded wave events, but not the analysis of the slow wave spatial organization, which is currently performed visually. This manual analysis is time consuming and is prone to observer bias and error. We present an automated approach to classify spatial slow wave propagation patterns via the use of Pearson cross correlations. Slow wave propagations were grouped into classes based on their similarity to each other. The method was applied to high-resolution gastric slow wave recordings from four pigs. There were significant changes in the velocity of the gastric slow wave wavefront and the amplitude of the slow wave event when there was a change in direction to the slow wave wavefront during dsyrhythmias, which could be detected with the automated approach.
Keywords
bioelectric phenomena; correlation methods; medical disorders; medical signal processing; signal classification; spatiotemporal phenomena; Pearson cross correlations; automated spatiotemporal characteristics classification; electrical event; gastric contractions; gastric dsyrhythmias; gastric motility disorder; gastric slow wave propagation; high resolution electrical mapping; slow wave activity; slow wave signal processing; spatial organization; Educational institutions; Electrodes; Gastrointestinal tract; Propagation; Spatiotemporal phenomena; Stomach; Visualization;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location
Osaka
ISSN
1557-170X
Type
conf
DOI
10.1109/EMBC.2013.6611254
Filename
6611254
Link To Document