homocysteine has been researched along with Arrhythmia in 7 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (28.57) | 29.6817 |
2010's | 4 (57.14) | 24.3611 |
2020's | 1 (14.29) | 2.80 |
Authors | Studies |
---|---|
Kiouri, E; Kosmas, N; Pavlakis, G; Rallidi, T; Rallidis, LS; Zolindaki, M | 1 |
Abraham, MR; Guo, X; Li, Z; Liu, Y; Sun, G; Sun, Y; Zheng, L | 1 |
Batur, MK; Duyuler, S; Türker Duyuler, P | 1 |
Givvimani, S; Maldonado, C; Pushpakumar, S; Rosenberger, D; Soni, CV; Todnem, ND; Tyagi, SC; Villafane, J | 1 |
Kharche, S; Law, P; Stott, J; Zhang, H | 1 |
Gargoum, R; Maldonado, C; Metreveli, N; Rosenberger, D; Sen, U; Tyagi, N; Tyagi, S | 1 |
Frank, I; Metreveli, N; Moshal, KS; Tyagi, SC | 1 |
2 review(s) available for homocysteine and Arrhythmia
Article | Year |
---|---|
Hyperhomocysteinemia and sudden cardiac death: potential arrhythmogenic mechanisms.
Topics: Animals; Arrhythmias, Cardiac; Calcium Signaling; Connexins; Coronary Disease; Death, Sudden, Cardiac; Dietary Supplements; Heart; Heart Conduction System; Homocysteine; Humans; Hyperhomocysteinemia; Matrix Metalloproteinases; Myocardium; Oxidative Stress; Receptors, N-Methyl-D-Aspartate; Risk Factors; Vitamin B Complex | 2010 |
Mitochondrial MMP activation, dysfunction and arrhythmogenesis in hyperhomocysteinemia.
Topics: Animals; Arrhythmias, Cardiac; Calcium; Enzyme Activation; Extracellular Matrix; Heart Failure; Homocysteine; Humans; Hydroxymethylglutaryl-CoA Reductase Inhibitors; Hyperhomocysteinemia; Matrix Metalloproteinases; Mitochondria, Heart; Myocytes, Cardiac; Oxidative Stress; Receptors, N-Methyl-D-Aspartate; Signal Transduction | 2008 |
5 other study(ies) available for homocysteine and Arrhythmia
Article | Year |
---|---|
Homocysteine is an independent predictor of long-term cardiac mortality in patients with stable coronary artery disease in the era of statins.
Topics: Acute Coronary Syndrome; Aged; Arrhythmias, Cardiac; Cardiovascular Diseases; Cholesterol, LDL; Coronary Artery Disease; Coronary Stenosis; Female; Greece; Homocysteine; Hospitalization; Humans; Hydroxymethylglutaryl-CoA Reductase Inhibitors; Hyperhomocysteinemia; Ischemic Stroke; Male; Middle Aged; Myocardial Revascularization; Prognosis; Proportional Hazards Models; Registries | 2020 |
Plasma homocysteine levels associated with a corrected QT interval.
Topics: Action Potentials; Adult; Aged; Arrhythmias, Cardiac; Biomarkers; China; Electrocardiography; Female; Heart Conduction System; Heart Rate; Homocysteine; Humans; Hyperhomocysteinemia; Male; Middle Aged; Predictive Value of Tests; Risk Factors; Time Factors | 2017 |
Impact of Iron and Homocysteine Levels on T Peak-to-End Interval and Tp-e/QT Ratio in Elite Athletes.
Topics: Adolescent; Adult; Arrhythmias, Cardiac; Athletes; Biomarkers; Echocardiography; Electrocardiography; Homocysteine; Humans; Iron; Male | 2016 |
Effects of elevated Homocysteine hormone on electrical activity in the human atrium: A simulation study.
Topics: Action Potentials; Algorithms; Arrhythmias, Cardiac; Atrial Fibrillation; Biophysics; Computer Simulation; Electric Conductivity; Electrophysiology; Gap Junctions; Heart Atria; Homocysteine; Humans; Models, Anatomic; Potassium Channels; Time Factors | 2009 |
Homocysteine enriched diet leads to prolonged QT interval and reduced left ventricular performance in telemetric monitored mice.
Topics: Animals; Arrhythmias, Cardiac; Cardiovascular Diseases; Connexins; Diet; Disease Models, Animal; Echocardiography; Heart Ventricles; Homocysteine; Hyperhomocysteinemia; Male; Matrix Metalloproteinase 2; Matrix Metalloproteinase 9; Mice; Mice, Inbred C57BL; Neural Conduction; Random Allocation; Telemetry; Ventricular Dysfunction, Left; Ventricular Remodeling | 2011 |