Phase Relationship between Alternans of Early and Late Phases of Ventricular Action Potentials
暂无分享,去创建一个
Abhijit Patwardhan | Anuj Agarwal | Linyuan Jing | Linyuan Jing | A. Patwardhan | Sonam Chourasia | Anuj Agarwal | S. Chourasia
[1] R C Barr,et al. Extracellular discontinuities in cardiac muscle: evidence for capillary effects on the action potential foot. , 1998, Circulation research.
[2] M. Koller,et al. Dynamic restitution of action potential duration during electrical alternans and ventricular fibrillation. , 1998, American journal of physiology. Heart and circulatory physiology.
[3] Blas Echebarria,et al. Amplitude equation approach to spatiotemporal dynamics of cardiac alternans. , 2006, Physical review. E, Statistical, nonlinear, and soft matter physics.
[4] G. Diamond,et al. Action Potential Alternans and Irregular Dynamics in Quinidine‐Intoxicated Ventricular Muscle Cells Implications for Ventricular Proarrhythmia , 1993, Circulation.
[5] A. Garfinkel,et al. Effects of amiodarone on wave front dynamics during ventricular fibrillation in isolated swine right ventricle. , 2002, American journal of physiology. Heart and circulatory physiology.
[6] N. Fineberg,et al. Changes in Left Ventricular Repolarization and Ion Channel Currents Following a Transient Rate Increase Superimposed on Bradycardia in Anesthetized Dogs , 2000, Journal of cardiovascular electrophysiology.
[7] Linyuan Jing,et al. Heterogeneous memory in restitution of action potential duration in pig ventricles. , 2010, Journal of electrocardiology.
[8] Mya Mya Thu,et al. Spatially discordant alternans in cardiomyocyte monolayers. , 2008, American journal of physiology. Heart and circulatory physiology.
[9] V. Fast,et al. Anisotropic activation spread in heart cell monolayers assessed by high-resolution optical mapping. Role of tissue discontinuities. , 1996, Circulation research.
[10] Richard A Gray,et al. Restitution Dynamics During Pacing and Arrhythmias in Isolated Pig Hearts , 2004, Journal of cardiovascular electrophysiology.
[11] A Garfinkel,et al. Ventricular Fibrillation: How Do We Stop the Waves From Breaking? , 2000, Circulation research.
[12] H. Karagueuzian,et al. Comparing cardiac action potentials recorded with metal and glass microelectrodes. , 2000, American journal of physiology. Heart and circulatory physiology.
[13] José Jalife,et al. Role of Conduction Velocity Restitution and Short-Term Memory in the Development of Action Potential Duration Alternans in Isolated Rabbit Hearts , 2008, Circulation.
[14] Enno de Lange,et al. Alternans resonance and propagation block during supernormal conduction in cardiac tissue with decreased [K(+)](o). , 2010, Biophysical journal.
[15] David S. Rosenbaum,et al. Role of Calcium Cycling Versus Restitution in the Mechanism of Repolarization Alternans , 2004, Circulation research.
[16] G. Tseng,et al. Two components of transient outward current in canine ventricular myocytes. , 1989, Circulation research.
[17] Role of maximum rate of depolarization in predicting action potential duration during ventricular fibrillation. , 2007, American journal of physiology. Heart and circulatory physiology.
[18] Blas Echebarria,et al. Instability and spatiotemporal dynamics of alternans in paced cardiac tissue. , 2001, Physical review letters.
[19] C. Lau,et al. Calcium-activated transient outward chloride current and phase 1 repolarization of swine ventricular action potential. , 2003, Cardiovascular research.
[20] Jian Huang,et al. Restitution Properties During Ventricular Fibrillation in the In Situ Swine Heart , 2004, Circulation.
[21] Robert F Gilmour,et al. Ionic mechanism of electrical alternans. , 2002, American journal of physiology. Heart and circulatory physiology.
[22] A. Kadish,et al. High-resolution electrical mapping of depolarization and repolarization alternans in an ischemic dog model. , 2010, American journal of physiology. Heart and circulatory physiology.
[23] A. Kleber,et al. The shape of the electrical action-potential upstroke: a new aspect from optical measurements on the surface of the heart. , 2005, Circulation research.
[24] Robert F Gilmour,et al. Contribution of IKr to Rate-Dependent Action Potential Dynamics in Canine Endocardium , 2004, Circulation research.
[25] A. Garfinkel,et al. Mechanisms of Discordant Alternans and Induction of Reentry in Simulated Cardiac Tissue , 2000, Circulation.
[26] Blas Echebarria,et al. Supernormal conduction in cardiac tissue promotes concordant alternans and action potential bunching. , 2011, Physical review. E, Statistical, nonlinear, and soft matter physics.
[27] Abhijit Patwardhan,et al. Mechanism of Repolarization Alternans Has Restitution of Action Potential Duration Dependent and Independent Components , 2006, Journal of cardiovascular electrophysiology.