...
首页> 外文期刊>New journal of physics >Local heterogeneities in cardiac systems suppress turbulence by generating multi-armed rotors
【24h】

Local heterogeneities in cardiac systems suppress turbulence by generating multi-armed rotors

机译:心脏系统中的局部异质性通过产生多臂转子来抑制湍流

获取原文

摘要

Ventricular fibrillation is an extremely dangerous cardiac arrhythmia that is linked to rotating waves of electric activity and chaotically moving vortex lines. These filaments can pin to insulating, cylindrical heterogeneities which swiftly become the new rotation backbone of the local wave field. For thin cylinders, the stabilized rotation is sufficiently fast to repel the free segments of the turbulent filament tangle and annihilate them at the system boundaries. The resulting global wave pattern is periodic and highly ordered. Our cardiac simulations show that also thicker cylinders can establish analogous forms of tachycardia. This process occurs through the spontaneous formation of pinned multi-armed vortices. The observed number of wave arms N depends on the cylinder radius and is associated to stability windows that for N?=?2, 3 partially overlap. For N?=?1, 2, we find a small gap in which the turbulence is removed but the pinned rotor shows complex temporal dynamics. The relevance of our findings to human cardiology are discussed in the context of vortex pinning to more complex-shaped anatomical features and remodeled myocardium.
机译:心室纤颤是一种极其危险的心律不齐,与电活动的旋转波和混沌运动的涡旋线有关。这些细丝可以固定在绝缘的圆柱形异质性上,迅速成为局部波场的新的旋转主干。对于薄圆柱体,稳定的旋转要足够快,以排斥湍流细丝缠结的自由段并在系统边界处将其歼灭。产生的整体波动图是周期性的且高度有序的。我们的心脏模拟结果表明,较厚的圆柱体也可以建立类似的心动过速形式。该过程是通过自发形成固定的多臂涡旋而发生的。观察到的摇臂数量N取决于圆柱半径,并且与稳定性窗口相关联,对于N 2 =β2,稳定窗口部分重叠。对于N 1 = 1,2,我们发现了一个小的间隙,在该间隙中湍流被消除了,但固定转子显示出复杂的时间动力学。我们的研究结果与人类心脏病学的相关性在涡旋固定到更复杂形状的解剖特征和重构心肌的背景下进行了讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号