Lysyansky Borys, Popovych Oleksandr V, Tass Peter A
Institute of Neuroscience and Medicine - Neuromodulation (INM-7), Research Center Juelich Juelich, Germany.
Front Neuroeng. 2013 Jul 22;6:5. doi: 10.3389/fneng.2013.00005. eCollection 2013.
In this computational study we investigate coordinated reset (CR) neuromodulation designed for an effective control of synchronization by multi-site stimulation of neuronal target populations. This method was suggested to effectively counteract pathological neuronal synchrony characteristic for several neurological disorders. We study how many stimulation sites are required for optimal CR-induced desynchronization. We found that a moderate increase of the number of stimulation sites may significantly prolong the post-stimulation desynchronized transient after the stimulation is completely switched off. This can, in turn, reduce the amount of the administered stimulation current for the intermittent ON-OFF CR stimulation protocol, where time intervals with stimulation ON are recurrently followed by time intervals with stimulation OFF. In addition, we found that the optimal number of stimulation sites essentially depends on how strongly the administered current decays within the neuronal tissue with increasing distance from the stimulation site. In particular, for a broad spatial stimulation profile, i.e., for a weak spatial decay rate of the stimulation current, CR stimulation can optimally be delivered via a small number of stimulation sites. Our findings may contribute to an optimization of therapeutic applications of CR neuromodulation.
在这项计算研究中,我们研究了协同重置(CR)神经调节,其旨在通过对神经元目标群体进行多部位刺激来有效控制同步性。该方法被认为可有效对抗几种神经系统疾病所特有的病理性神经元同步。我们研究了实现最佳CR诱导去同步化所需的刺激部位数量。我们发现,刺激部位数量的适度增加可能会在刺激完全关闭后显著延长刺激后去同步化的瞬态过程。这反过来又可以减少间歇性开-关CR刺激方案中所施加的刺激电流的量,在该方案中,刺激开启的时间间隔之后会反复跟随刺激关闭的时间间隔。此外,我们发现刺激部位的最佳数量主要取决于所施加的电流在神经元组织内随距刺激部位距离的增加而衰减的程度。特别是,对于较宽的空间刺激分布,即对于刺激电流较弱的空间衰减率,CR刺激可以通过少量刺激部位来最佳地实现。我们的研究结果可能有助于优化CR神经调节的治疗应用。