Patterns of spiral tip motion in cardiac tissues
- 1 March 1998
- journal article
- Published by AIP Publishing in Chaos: An Interdisciplinary Journal of Nonlinear Science
- Vol. 8 (1) , 137-148
- https://doi.org/10.1063/1.166294
Abstract
In support of the spiral wave theory of reentry, simulation studies and animal models have been utilized to show various patterns of spiral wave tip motion such as meandering and drifting. However, the demonstration of these or any other patterns in cardiac tissues have been limited. Whether such patterns of spiral tip motion are commonly observed in fibrillating cardiac tissues is unknown, and whether such patterns form the basis of ventricular tachycardia or fibrillation remain debatable. Using a computerized dynamic activation display, 108 episodes of atrial and ventricular tachycardia and fibrillation in isolated and intact canine cardiac tissues, as well as in vitro swine and myopathic human cardiac tissues, were analyzed for patterns of nonstationary, spiral wave tip motion. Among them, 46 episodes were from normal animal myocardium without pharmacological perturbations, 50 samples were from normal animal myocardium, either treated with drugs or had chemical ablation of the subendocardium, and 12 samples were from diseased human hearts. Among the total episodes, 11 of them had obvious nonstationary spiral tip motion with a life span of >2 cycles and with consecutive reentrant paths distinct from each other. Four patterns were observed: (1) meandering with an inward petal flower in 2; (2) meandering with outward petals in 5; (3) irregularly concentric in 3 (core moving about a common center); and (4) drift in 1 (linear core movement). The life span of a single nonstationary spiral wave lasted no more than 7 complete cycles with a mean of 4.6+/-4.3, and a median of 4.5 cycles in our samples. Conclusion: (1) Patently evident nonstationary spiral waves with long life spans were uncommon in our sample of mostly normal cardiac tissues, thus making a single meandering spiral wave an unlikely major mechanism of fibrillation in normal ventricular myocardium. (2) A tendency toward four patterns of nonstationary spiral tip motion was observed. (c) 1998 American Institute of Physics.Keywords
This publication has 18 references indexed in Scilit:
- Mechanism of Spontaneous Termination of Functional Reentry in Isolated Canine Right AtriumCirculation, 1996
- Reentrant Wave Fronts in Wiggers’ Stage II Ventricular FibrillationCirculation Research, 1996
- Proarrhythmic Response to Potassium Channel BlockadeCirculation, 1995
- Nonstationary Vortexlike Reentrant Activity as a Mechanism of Polymorphic Ventricular Tachycardia in the Isolated Rabbit HeartCirculation, 1995
- Upper limit of vulnerability reliably predicts the defibrillation threshold in humans.Circulation, 1994
- Spiral waves of excitation underlie reentrant activity in isolated cardiac muscle.Circulation Research, 1993
- Stationary and drifting spiral waves of excitation in isolated cardiac muscleNature, 1992
- Varieties of spiral wave behavior: An experimentalist’s approach to the theory of excitable mediaChaos: An Interdisciplinary Journal of Nonlinear Science, 1991
- Proarrhythmic response to sodium channel blockade. Theoretical model and numerical experiments.Circulation, 1991
- Spiral Waves of Chemical ActivityScience, 1972