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Control of Abnormal Synchronization in Neurological Disorders

机译:在神经系统疾病中异常同步的控制

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摘要

In the nervous system, synchronization processes play an important role, e.g., in the context of information processing and motor control. However, pathological, excessive synchronization may strongly impair brain function and is a hallmark of several neurological disorders. This focused review addresses the question of how an abnormal neuronal synchronization can specifically be counteracted by invasive and non-invasive brain stimulation as, for instance, by deep brain stimulation for the treatment of Parkinson’s disease, or by acoustic stimulation for the treatment of tinnitus. On the example of coordinated reset (CR) neuromodulation, we illustrate how insights into the dynamics of complex systems contribute to successful model-based approaches, which use methods from synergetics, non-linear dynamics, and statistical physics, for the development of novel therapies for normalization of brain function and synaptic connectivity. Based on the intrinsic multistability of the neuronal populations induced by spike timing-dependent plasticity (STDP), CR neuromodulation utilizes the mutual interdependence between synaptic connectivity and dynamics of the neuronal networks in order to restore more physiological patterns of connectivity via desynchronization of neuronal activity. The very goal is to shift the neuronal population by stimulation from an abnormally coupled and synchronized state to a desynchronized regime with normalized synaptic connectivity, which significantly outlasts the stimulation cessation, so that long-lasting therapeutic effects can be achieved.
机译:在神经系统中,同步过程在例如信息处理和运动控制的背景下起着重要的作用。但是,病理性过度同步可能会严重损害大脑功能,并且是几种神经系统疾病的标志。这篇集中的评论解决了以下问题:如何通过侵入性和非侵入性脑刺激(例如通过深部脑刺激来治疗帕金森氏病或通过听觉刺激来治疗耳鸣)来特别地抵消异常的神经元同步。在协调重置(CR)神经调节的示例中,我们说明了对复杂系统动力学的见识如何有助于成功的基于模型的方法,该方法使用了协同学,非线性动力学和统计物理学方法来开发新疗法用于大脑功能和突触连接的正常化。基于尖峰时间依赖性可塑性(STDP)诱导的神经元群体固有的内在稳定性,CR神经调节利用突触连接性和神经网络动力学之间的相互依赖性,通过神经元活动的失步来恢复连接的更多生理模式。真正的目标是通过刺激将神经元群体从异常耦合和同步状态转移到具有标准化突触连通性的失步状态,这大大延长了刺激的终止时间,从而可以实现长期的治疗效果。

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