Tass Peter A
Institute of Medicine, Research Centre Jülich, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Sep;66(3 Pt 2A):036226. doi: 10.1103/PhysRevE.66.036226. Epub 2002 Sep 27.
This paper is devoted to the desynchronizing effects of bipolar stimuli on a synchronized cluster of globally coupled phase oscillators. The bipolar pulses considered here are symmetrical and consist of a positive and a negative monopolar pulse. A bipolar single pulse with the right intensity and duration desynchronizes a synchronized cluster provided the stimulus is administered at a vulnerable initial phase of the cluster's order parameter. A considerably more effective desynchronization is achieved with a bipolar double pulse consisting of two qualitatively different bipolar pulses. The first bipolar pulse is stronger and resets the cluster, so that the second bipolar pulse, which follows after a constant delay, hits the cluster in a vulnerable state and desynchronizes it. A bipolar double pulse desynchronizes the cluster independently of the cluster's dynamical state at the beginning of the stimulation. The dynamics of the order parameter during a bipolar single pulse or a bipolar double pulse is different from the dynamics during a monopolar single pulse or a monopolar double pulse. Nevertheless, concerning their desynchronizing effects the monopolar and the bipolar stimuli are comparable, respectively. This is significant for applications where bipolar stimulation is required. For example, in medicine and physiology charge-balanced stimulation is typically necessary in order to avoid tissue damage. Based on the results presented here, demand-controlled bipolar double-pulse stimulation is suggested as a milder and more efficient therapy compared to the standard permanent high-frequency deep brain stimulation in neurological patients.
本文致力于研究双极刺激对全局耦合相位振荡器同步簇的去同步化作用。这里所考虑的双极脉冲是对称的,由一个正单极脉冲和一个负单极脉冲组成。如果在簇的序参量的脆弱初始相位施加具有适当强度和持续时间的双极单脉冲,就能使同步簇去同步。由两个性质不同的双极脉冲组成的双极双脉冲能实现更有效的去同步。第一个双极脉冲更强,会重置簇,这样在恒定延迟后跟随的第二个双极脉冲会在簇处于脆弱状态时对其进行刺激并使其去同步。双极双脉冲使簇去同步,而与刺激开始时簇的动力学状态无关。双极单脉冲或双极双脉冲期间序参量的动力学与单极单脉冲或单极双脉冲期间的动力学不同。然而,就它们的去同步化作用而言,单极和双极刺激分别具有可比性。这对于需要双极刺激的应用具有重要意义。例如,在医学和生理学中,通常需要电荷平衡刺激以避免组织损伤。基于此处给出的结果,与神经疾病患者的标准永久性高频深部脑刺激相比,需求控制的双极双脉冲刺激被建议作为一种更温和、更有效的治疗方法。