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American Journal of Physiology. Gastrointestinal and Liver Physiology|June 13, 2003
Enhancement of antral contractions and vagal afferent signaling with synchronized electrical stimulationShachar Peles, Jaime Petersen, Ricardo Aviv, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|October 22, 2020
Two weeks of remote ischemic conditioning improves brachial artery flow mediated dilation in chronic stroke survivorsAllison S Hyngstrom, Jennifer N Nguyen, Michael T Wright, et al.Circulation Research|November 23, 2016
Contribution of KV1.5 Channel to Hydrogen Peroxide-Induced Human Arteriolar Dilation and Its Modulation by Coronary Artery DiseaseYoshinori Nishijima, Sheng Cao, Dawid S Chabowski, et al.Basic Research in Cardiology|December 21, 2016
Transition in the mechanism of flow-mediated dilation with aging and development of coronary artery diseaseAndreas M Beyer, Natalya Zinkevich, Bradley Miller, et al.Plos One|December 3, 2015
Impaired Hyperemic Response to Exercise Post StrokeMatthew J Durand, Spencer A Murphy, Kathleen K Schaefer, et al.American Journal of Physiology. Heart and Circulatory Physiology|March 18, 2005
Mechanism of vasodilation to adenosine in coronary arterioles from patients with heart diseaseAtsushi Sato, Ken Terata, Hiroto Miura, et al.American Journal of Physiology. Heart and Circulatory Physiology|December 8, 2009
TRPV4-mediated endothelial Ca2+ influx and vasodilation in response to shear stressSuelhem A Mendoza, Juan Fang, David D Gutterman, et al.British Journal of Pharmacology|August 29, 2018
Lysophosphatidic acid acts on LPA1 receptor to increase H2 O2 during flow-induced dilation in human adipose arteriolesDawid S Chabowski, Andrew O Kadlec, Karima Ait-Aissa, et al.Topics in Stroke Rehabilitation|December 14, 2023
Reduced oxygen desaturation in the vastus lateralis of chronic stroke survivors during graded muscle contractionsAllison S Hyngstrom, Jennifer N Nguyen, Spencer A Murphy, et al.The Journal of Biological Chemistry|April 24, 2013
The intermediate conductance calcium-activated potassium channel KCa3.1 regulates vascular smooth muscle cell proliferation via controlling calcium-dependent signalingDan Bi, Kazuyoshi Toyama, Vincent Lemaître, et al.Pageof 19