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可激发介质中涡旋环的空间取向和寿命控制

Control of spatial orientation and lifetime of scroll rings in excitable media.

作者信息

Vinson M, Mironov S, Mulvey S, Pertsov A

机构信息

Department of Pharmacology, SUNY Health Sciences Center, Syracuse, New York 13210, USA.

出版信息

Nature. 1997 Apr 3;386(6624):477-80. doi: 10.1038/386477a0.

Abstract

Excitable media, which range from autocatalytic chemical systems to biological cells and tissues, can maintain organized structures in the form of rotating spiral waves of excitation. The dynamics of spiral waves in two-dimensional systems have been shown to be susceptible to control by external fields (such as electric, thermal and optical). In three dimensions, the analogues of spiral waves are scroll waves. Here we show that an external field--a temperature gradient--can be used to control a particular class of scroll waves called scroll rings. The gradient allows scroll rings to be precisely oriented in space, and their spontaneous shrinkage to be accelerated, decelerated or even reversed (so that the ring expands). The temperature gradient also influences the lifetimes of the scroll rings. We suggest that these dynamics are likely to be generic to other types of field gradients and other excitable media.

摘要

可激发介质涵盖从自催化化学系统到生物细胞和组织等多种类型,能够以旋转螺旋波激发的形式维持组织结构。二维系统中螺旋波的动力学已被证明易受外部场(如电场、热场和光场)的控制。在三维空间中,螺旋波的类似物是涡旋波。在此我们表明,一个外部场——温度梯度——可用于控制一类特定的涡旋波,即涡旋环。该梯度能使涡旋环在空间中精确取向,并且其自发收缩可加速、减速甚至反转(使环扩张)。温度梯度还会影响涡旋环的寿命。我们认为这些动力学特性可能对于其他类型的场梯度和其他可激发介质具有普遍性。

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