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Xiao Ya Zhou
whuzhouxiaoya@163.com
Chinese, English
Hubei
Wuhan University
Medical School
  • 1997-2002: Bachelor in Clinical Medicine, Chinese People's Armed Police Forces Medical College
  • 2008-2010: Master in Internal Medicine, Wuhan University First Clinical College
  • 2010-2013: PhD in Internal Medicine, Wuhan University First Clinical College
  • Directed 4 scientific research projects including the National Natural Science Foundation of China
  • Participated in over 10 national key R&D programs
  • 2002-2006: Physician, Hainan Provincial Armed Police Hospital
  • 2006-2007: Visiting Scholar, Sechenov Medical Academy, Russia
  • 2013-2013: Physician, Cardiovascular Department, Renmin Hospital, Wuhan University
  • 2014-2015: Attending Physician, Cardiovascular Department, Renmin Hospital, Wuhan University
  • 2015-2021: Deputy Chief Physician, Cardiovascular Department, Renmin Hospital, Wuhan University
  • 2016-2017: Visiting Scholar, David Geffen School of Medicine, UCLA, USA
  • 2018-Present: Associate Professor, Cardiovascular Department, Renmin Hospital, Wuhan University
  • 2021-Present: Chief Physician, Cardiovascular Department, Renmin Hospital, Wuhan University
  • 2022-Present: Vice Director of Cardiology Ward II, Renmin Hospital, Wuhan University
  • 2022: First Prize, Hubei Province Science and Technology Progress Award
  • 2018: First Prize, Hubei Province Science and Technology Progress Award
  • 2021: Chinese Medical Science and Technology Award
Autonomic nerve system and cardiovascular diseases
Cardio-Oncology
Cardiac electrophysiology and arrhythmia
  • Wireless Self-Powered Optogenetic System for Long-Term Cardiac Neuromodulation to Improve Post-MI Cardiac Remodeling and Malignant Arrhythmia, Zhou L, Zhang Y, Cao G, Zhang C, Zheng C, Meng G, Lai Y, Zhou Z, Liu Z, Liu Z, Guo F, Dong X, Liang Z, Wang Y, Guo S, Zhou X, Jiang H, Yu L, 2023
  • Gut microbe-derived metabolite trimethylamine N-oxide activates the cardiac autonomic nervous system and facilitates ischemia-induced ventricular arrhythmia via two different pathways, Meng G, Zhou X, Wang M, Zhou L, Wang Z, Wang M, Deng J, Wang Y, Zhou Z, Zhang Y, Lai Y, Zhang Q, Yang X, Yu L, Jiang H, 2019
  • Non-invasive transcutaneous vagal nerve stimulation improves myocardial performance in doxorubicin-induced cardiotoxicity, Lai Y, Zhou X, Guo F, Jin X, Meng G, Zhou L, Chen H, Liu Z, Yu L, Jiang H, 2022
  • Vagus nerve stimulation protects against acute liver injury induced by renal ischemia reperfusion via antioxidant stress and anti-inflammation, Lai Y, Deng J, Wang M, Wang M, Zhou L, Meng G, Zhou Z, Wang Y, Guo F, Yin M, Zhou X, Jiang H, 2019
  • Increased sympathetic outflow induced by emotional stress aggravates myocardial ischemia-reperfusion injury via activation of TLR7/MyD88/IRF5 signaling pathway, Liu Z, Liu Z, Zhou H, Zhou Y, Xu X, Li Z, Guo F, Wang Y, Zhou Z, Zhou L, Wang Y, Zhou X, Xia H, Jiang H, 2023
  • Subthreshold splenic nerve stimulation prevents myocardial Ischemia-Reperfusion injury via neuroimmunomodulation of proinflammatory factor levels, Jin X, Wang X, Sun J, Tan W, Zhang G, Han J, Xie M, Zhou L, Yu Z, Xu T, Wang C, Wang Y, Zhou X, Jiang H, 2023
  • Spinal cord stimulation suppresses atrial fibrillation by inhibiting autonomic remodeling, Wang S, Zhou X, Huang B, Wang Z, Zhou L, Chen M, Yu L, Jiang H, 2016
  • Spinal cord stimulation protects against ventricular arrhythmias by suppressing left stellate ganglion neural activity in an acute myocardial infarction canine model, Wang S, Zhou X, Huang B, Wang Z, Liao K, Saren G, Lu Z, Chen M, Yu L, Jiang H, 2015
  • Impacts of Renal Sympathetic Activation on Atrial Fibrillation: The Potential Role of the Autonomic Cross Talk Between Kidney and Heart, Yu L, Huang B, Wang Z, Wang S, Wang M, Li X, Zhou L, Meng G, Yuan S, Zhou X, Jiang H, 2017
  • Minocycline protects against myocardial ischemia and reperfusion injury by inhibiting high mobility group box 1 protein in rats, Hu X, Zhou X, He B, Xu C, Wu L, Cui B, Wen H, Lu Z, Jiang H, 2010
Autonomic Nervous System Cardiovascular Diseases Heart Rate Blood Pressure Stress Response Neurocardiology Heart Failure Arrhythmia Electrophysiology Cardiac Therapy

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