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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Control of re-entrant activity in a model of mammalian atrial tissue.
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Control of re-entrant activity in a model of mammalian atrial tissue.

机译:在哺乳动物心房组织模型中折返活动的控制。

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摘要

We evaluate the feasibility of using resonant drift under feedback driven stimulation to control re-entrant excitation in atrial muscle. We simulate a two-dimensional sheet of atrial tissue, where the local kinetics are described by the Earm-Hilgemann-Noble equations for a rabbit atrial cell, and the effects of small amplitude spatially uniform forcing of the whole sheet are computed. Repetitive forcing can induce a drift of a spiral wave in the two-dimensional model, with a drift velocity of up to 10 cm s-1. For a 4 cm x 4 cm atrial surface this resonant drift can move the re-entrant spiral to the inexcitable boundaries, eliminating re-entry in less than 10 s when the amplitude of the repetitive stimulation is 10% that of the single shock defibrillation threshold.
机译:我们评估在反馈驱动刺激下使用共振漂移来控制心房肌折返兴奋的可行性。我们模拟了一个二维的心房组织片,其中局部动力学由Earm-Hilgemann-Noble方程描述了兔心房细胞,并计算了整个片的小幅度空间均匀受力的影响。重复强迫可以在二维模型中引起螺旋波的漂移,漂移速度最高为10 cm s-1。对于4 cm x 4 cm的心房表面,这种共振漂移可以使折返螺旋移动到不可激发的边界,当重复刺激的幅度为单次电击除颤阈值的10%时,可以在不到10秒的时间内消除折返。

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