The Institute of Mathematical Sciences, CIT Campus, Taramani, Chennai, India.
Phys Rev Lett. 2012 Feb 10;108(6):068102. doi: 10.1103/PhysRevLett.108.068102. Epub 2012 Feb 9.
Synchronized oscillations are of critical functional importance in many biological systems. We show that such oscillations can arise without centralized coordination in a disordered system of electrically coupled excitable and passive cells. Increasing the coupling strength results in waves that lead to coherent periodic activity, exhibiting cluster, local and global synchronization under different conditions. Our results may explain the self-organized transition in a pregnant uterus from transient, localized activity initially to system-wide coherent excitations just before delivery.
同步振荡在许多生物系统中具有至关重要的功能意义。我们表明,在一个无序的电耦合兴奋和被动细胞系统中,无需集中协调就可以产生这种振荡。增加耦合强度会导致波,从而导致在不同条件下表现出簇、局部和全局同步的相干周期性活动。我们的结果可能解释了孕妇子宫从最初的短暂、局部活动到分娩前的全系统相干激发的自组织转变。