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Dynamics of reentry around a circular obstacle in cardiac tissue

机译:心脏组织中圆形障碍物周围折返的动力学

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摘要

We studied the dynamics of a wave propagating around a circular obstacle in a two-dimensional cardiac tissue model. By starting with a large obstacle and decreasing its radius, a continuous transition was created between the two major types of reentrant cardiac arrhythmias: anatomical reentry (essentially one-dimensional) and functional reentry. As the radius of the obstacle decreases, a sequence of transitions occurs, from periodic motion to a modulated period-2 rhythm, and then to spiral wave breakup. These results may provide a useful basis for refining cardiac ablation techniques currently in use. [S1063-651X(98)06311-9]. [References: 24]
机译:我们研究了二维心脏组织模型中绕圆形障碍物传播的波的动力学。通过从大障碍物开始并减小其半径,在折返性心律不齐的两种主要类型之间产生了连续过渡:解剖折返(本质上是一维的)和功能折返。随着障碍物半径的减小,会发生一系列过渡,从周期性运动到调制的周期2节奏,然后到螺旋波分解。这些结果可为改进当前使用的心脏消融技术提供有用的基础。 [S1063-651X(98)06311-9]。 [参考:24]

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