Showing results (1-10 of 95) with videos related to
Sort By:
Pageof 10
Arrhythmia & Electrophysiology Review|December 28, 2018
Catheter Ablation of Paroxysmal Atrial Fibrillation Originating from Non-pulmonary Vein AreasSatoshi Higa, Li-Wei Lo, Shih-Ann ChenClinical and Experimental Pharmacology & Physiology|November 24, 2004
Oscillatory transient inward currents in ventricular myocytes of healthy versus myopathic Syrian hamsterSze-Hsueh Wu, Yao-Chang Chen, Satoshi Higa, et al.Cells|August 28, 2024
Spike Protein of SARS-CoV-2 Activates Cardiac Fibrogenesis through NLRP3 Inflammasomes and NF-κB SignalingHuynh Van Tin, Lekha Rethi, Satoshi Higa, et al.International Journal of Molecular Sciences|September 13, 2025
ZFHX3 Knockdown Enhances Metabolic Distress in Atrial Myocytes Through Mitochondrial and Calcium Dysregulation: Mitigation by TrimetazidineBaigalmaa Lkhagva, Shuen-Hsin Liu, Satoshi Higa, et al.Circulation Reports|March 11, 2021
Cryoballoon Ablation for Patients With Paroxysmal Atrial FibrillationKazuyoshi Suenari, Takayuki Nakano, Shunsuke Tomomori, et al.Cardiac Electrophysiology Clinics|January 31, 2021
Diabetes and Endocrine Disorders (Hyperthyroidism/Hypothyroidism) as Risk Factors for Atrial FibrillationSatoshi Higa, Akira Maesato, Sugako Ishigaki, et al.European Journal of Pharmacology|June 24, 2025
Calcitriol deficiency reduces myocardial ATP production with disturbed mitochondrial dynamics and increased uncoupling protein 2 expressionTing-Wei Lee, Ting-I Lee, Satoshi Higa, et al.Cells|November 27, 2024
Correction: Huynh et al. Spike Protein Impairs Mitochondrial Function in Human Cardiomyocytes: Mechanisms Underlying Cardiac Injury in COVID-19. Cells 2023, 12, 877Tin Van Huynh, Lekha Rethi, Ting-Wei Lee, et al.Cells|March 29, 2023
Spike Protein Impairs Mitochondrial Function in Human Cardiomyocytes: Mechanisms Underlying Cardiac Injury in COVID-19Tin Van Huynh, Lekha Rethi, Ting-Wei Lee, et al.Journal of Cardiovascular Electrophysiology|September 9, 2008
Fluvastatin reduces pulmonary vein spontaneous activity through nitric oxide pathwayYu-Feng Hu, Yao-Chang Chen, Chen-Chuan Cheng, et al.Pageof 10