Gomez-Marin A, Garcia-Ojalvo J, Sancho J M
Facultat de Fisica, Universitat de Barcelona, Diagonal 647, 08028 Barcelona, Spain.
Phys Rev Lett. 2007 Apr 20;98(16):168303. doi: 10.1103/PhysRevLett.98.168303.
We propose a novel mechanism leading to spatiotemporal oscillations in extended systems that does not rely on local bulk instabilities. Instead, oscillations arise from the interaction of two subsystems of different spatial dimensionality. Specifically, we show that coupling a passive diffusive bulk of dimension d with an excitable membrane of dimension d-1 produces a self-sustained oscillatory behavior. An analytical explanation of the phenomenon is provided for d=1. Moreover, in-phase and antiphase synchronization of oscillations are found numerically in one and two dimensions. This novel dynamic instability could be used by biological systems such as cells, where the dynamics on the cellular membrane is necessarily different from that of the cytoplasmic bulk.
我们提出了一种导致扩展系统中时空振荡的新机制,该机制不依赖于局部体不稳定性。相反,振荡源于两个不同空间维度的子系统之间的相互作用。具体而言,我们表明,将维度为d的无源扩散体与维度为d - 1的可兴奋膜耦合会产生自持振荡行为。对于d = 1的情况,给出了该现象的解析解释。此外,在一维和二维中通过数值方法发现了振荡的同相和反相同步。这种新的动态不稳定性可能被细胞等生物系统所利用,其中细胞膜上的动力学必然与细胞质体的动力学不同。