|
||
ARTICLE |
III. Characteristics of very slow conduction
The excitability of short segments (57 mm) of bundles of canine Purkinje fibers was depressed by exposure to 1518 mM K+, to 1518 mM K+ plus 5 x 10-6 epinephrine or norepinephrine, to low K+, and to low Na+. The depressed segment was in the center chamber of a three-chamber bath; the ends of the bundle were exposed to normal Tyrode solution. Each method of depression resulted in slow and probably decremental conduction with an effective conduction velocity in the middle chamber of about 0.05 m/sec, or one-way block, or two-way block with summation of the graded responses in the depressed region. The action potential in the depressed segment (the slow response) differs from the normal action potential in its response to applied stimuli. A second active depolarization can be evoked by cathodal stimulation during much of the slow response. The response in the depressed segment is graded. The response of depressed fibers may depend on excitatory events similar to those responsible for the slow component of the cardiac action potential. It is suggested that the slow response can propagate, at least decrementally, in fibers in which the rapid, Na+-dependent upstroke is absent, and can cause reentrant excitation by so doing.
This article has been cited by other articles:
![]() |
S. Xing, S.-W. Tsaih, R. Yuan, K. L. Svenson, L. M. Jorgenson, M. So, B. J. Paigen, and R. Korstanje Genetic influence on electrocardiogram time intervals and heart rate in aging mice Am J Physiol Heart Circ Physiol, June 1, 2009; 296(6): H1907 - H1913. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. Lukac, V. E. Hjortdal, A. K. Pedersen, P. T. Mortensen, H. K. Jensen, and P. S. Hansen Prevention of Atrial Flutter With Cryoablation May Be Proarrhythmogenic Ann. Thorac. Surg., May 1, 2007; 83(5): 1717 - 1723. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. P. Kolditz, M. C.E.F. Wijffels, N. A. Blom, A. van der Laarse, R. R. Markwald, M. J. Schalij, and A. C. Gittenberger-de Groot Persistence of Functional Atrioventricular Accessory Pathways in Postseptated Embryonic Avian Hearts: Implications for Morphogenesis and Functional Maturation of the Cardiac Conduction System Circulation, January 2, 2007; 115(1): 17 - 26. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Bagwe, O. Berenfeld, D. Vaidya, G. E. Morley, and J. Jalife Altered Right Atrial Excitation and Propagation in Connexin40 Knockout Mice Circulation, October 11, 2005; 112(15): 2245 - 2253. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. G. KLEBER and Y. RUDY Basic Mechanisms of Cardiac Impulse Propagation and Associated Arrhythmias Physiol Rev, April 1, 2004; 84(2): 431 - 488. [Abstract] [Full Text] [PDF] |
||||
![]() |
Members of the Sicilian Gambit New Approaches to Antiarrhythmic Therapy, Part I: Emerging Therapeutic Applications of the Cell Biology of Cardiac Arrhythmias Circulation, December 4, 2001; 104(23): 2865 - 2873. [Abstract] [Full Text] [PDF] |
||||
![]() |
Members of the Sicilian Gambit New approaches to antiarrhythmic therapy; emerging therapeutic applications of the cell biology of cardiac arrhythmias Eur. Heart J., December 1, 2001; 22(23): 2148 - 2163. [Abstract] [PDF] |
||||
![]() |
Members of the Sicilian Gambit New approaches to antiarrhythmic therapy: emerging therapeutic applications of the cell biology of cardiac arrhythmias Cardiovasc Res, December 1, 2001; 52(3): 345 - 360. [Abstract] [Full Text] [PDF] |
||||
![]() |
P M I Sutton, P Taggart, T Opthof, R Coronel, R Trimlett, W Pugsley, and P Kallis Repolarisation and refractoriness during early ischaemia in humans Heart, October 1, 2000; 84(4): 365 - 369. [Abstract] [Full Text] |
||||
![]() |
K. Haberl and M. Allessie Differential Effects of a Segment of Slow Conduction on Reentrant Ventricular Tachycardia in the Rabbit Heart Circulation, February 23, 1999; 99(7): 949 - 962. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Rohr, J. P. Kucera, and A. G. Kleber Slow Conduction in Cardiac Tissue, I : Effects of a Reduction of Excitability Versus a Reduction of Electrical Coupling on Microconduction Circ. Res., October 19, 1998; 83(8): 781 - 794. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. M. Shaw and Y. Rudy Electrophysiologic effects of acute myocardial ischemia: a theoretical study of altered cell excitability and action potential duration Cardiovasc Res, August 1, 1997; 35(2): 256 - 272. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. M. Shaw and Y. Rudy Electrophysiologic Effects of Acute Myocardial Ischemia: A Mechanistic Investigation of Action Potential Conduction and Conduction Failure Circ. Res., January 1, 1997; 80(1): 124 - 138. [Abstract] [Full Text] |
||||
![]() |
M. R. Rosen Cellular Electrophysiologic Basis of Cardiac Arrhythmias Angiology, May 1, 1977; 28(5): 289 - 299. [PDF] |
||||
![]() |
A. L. Wit and P. L. Friedman Basis for Ventricular Arrhythmias Accompanying Myocardial Infarction: Alterations in Electrical Activity of Ventricular Muscle and Purkinje Fibers After Coronary Artery Occlusion Arch Intern Med, March 1, 1975; 135(3): 459 - 472. [Abstract] [PDF] |
||||
|
|