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Physiology (Bethesda, Md.)|September 3, 2013
Mapping and modeling gastrointestinal bioelectricity: from engineering bench to bedsideL K Cheng, P Du, G O'GradyAmerican Journal of Physiology. Gastrointestinal and Liver Physiology|May 27, 2017
High-resolution mapping of gastric slow-wave recovery profiles: biophysical model, methodology, and demonstration of applicationsN Paskaranandavadivel, L K Cheng, P Du, et al.American Journal of Physiology. Gastrointestinal and Liver Physiology|August 8, 2009
Effects of electrical stimulation on isolated rodent gastric smooth muscle cells evaluated via a joint computational simulation and experimental approachP Du, S Li, G O'Grady, et al.Neurogastroenterology and Motility|August 8, 2015
The impact of surgical excisions on human gastric slow wave conduction, defined by high-resolution electrical mapping and in silico modelingP Du, A Hameed, T R Angeli, et al.Physiological Measurement|January 22, 2011
A comparison of gold versus silver electrode contacts for high-resolution gastric electrical mapping using flexible printed circuit board arraysG O'Grady, N Paskaranandavadivel, T R Angeli, et al.Neurogastroenterology and Motility|March 16, 2013
Circumferential and functional re-entry of in vivo slow-wave activity in the porcine small intestineT R Angeli, G O'Grady, P Du, et al.Neurogastroenterology and Motility|July 13, 2010
Origin, propagation and regional characteristics of porcine gastric slow wave activity determined by high-resolution mappingJ U Egbuji, G O'Grady, P Du, et al.Neurogastroenterology and Motility|July 1, 2011
High-resolution spatial analysis of slow wave initiation and conduction in porcine gastric dysrhythmiaG O'Grady, J U Egbuji, P Du, et al.Neurogastroenterology and Motility|July 12, 2017
Relationships between gastric slow wave frequency, velocity, and extracellular amplitude studied by a joint experimental-theoretical approachT H-H Wang, P Du, T R Angeli, et al.Neurogastroenterology and Motility|January 21, 2015
Multi-channel wireless mapping of gastrointestinal serosal slow wave propagationN Paskaranandavadivel, R Wang, S Sathar, et al.Pageof 85