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Augmented brain function by coordinated reset stimulation with slowly varying sequences

机译:通过缓慢变化序列的协调复位刺激增强脑功能

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Several brain disorders are characterized by abnormally strong neuronal synchrony. Coordinated Reset (CR) stimulation was developed to selectively counteract abnormal neuronal synchrony by desynchronization. For this, phase resetting stimuli are delivered to different subpopulations in a timely coordinated way. In neural networks with spike timing-dependent plasticity CR stimulation may eventually lead to an anti-kindling, i.e., an unlearning of abnormal synaptic connectivity and abnormal synchrony. The spatiotemporal sequence by which all stimulation sites are stimulated exactly once is called the stimulation site sequence, or briefly sequence. So far, in simulations, pre-clinical and clinical applications CR was applied either with fixed sequences or rapidly varying sequences (RVS). In this computational study we show that appropriate repetition of the sequence with occasional random switching to the next sequence may significantly improve the anti-kindling effect of CR. To this end, a sequence is applied many times before randomly switching to the next sequence. This new method is called SVS CR stimulation, i.e., CR with slowly varying sequences. In a neuronal network with strong short-range excitatory and weak long-range inhibitory dynamic couplings SVS CR stimulation turns out to be superior to CR stimulation with fixed sequences or RVS.
机译:几种脑部疾病的特征是异常强烈的神经元同步性。开发了协调复位(CR)刺激以通过去同步选择性抵消异常的神经元同步。为此,以及时协调的方式将相复位刺激传递给不同的亚群。在具有尖峰时间依赖性可塑性的神经网络中,CR刺激最终可能导致反引种,即不了解异常的突触连接性和异常的同步性。精确刺激一次所有刺激位点的时空序列称为刺激位点序列,或简称为序列。到目前为止,在模拟中,临床前和临床应用CR均采用固定序列或快速变化序列(RVS)。在这项计算研究中,我们表明适当重复序列并偶尔随机切换到下一个序列可以显着提高CR的抗引种效果。为此,在随机切换到下一个序列之前,会多次应用一个序列。这种新方法称为SVS CR刺激,即序列缓慢变化的CR。在具有强短程兴奋性和弱长程抑制动态耦合的神经元网络中,SVS CR刺激优于固定序列或RVS的CR刺激。

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