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Periodic flashing coordinated reset stimulation paradigm reduces sensitivity to ON and OFF period durations

机译:周期性闪烁协调重置刺激范例可降低对ON和OFF持续时间的敏感性

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摘要

Pathological synchronization in the basal ganglia network has been considered an important component of Parkinson’s disease pathophysiology. An established treatment for some patients with Parkinson’s disease is deep brain stimulation, in which a tonic high-frequency pulse train is delivered to target regions of the brain. In recent years, a novel neuromodulation paradigm called coordinated reset stimulation has been proposed, which aims to reverse the pathological synchrony by sequentially delivering short high-frequency bursts to distinct sub-regions of the pathologically synchronized network, with an average intra-burst interval for each sub-region corresponding to period of the pathological oscillation. It has further been proposed that the resultant desynchronization can be enhanced when stimulation is interrupted periodically, and that it is particularly beneficial to precisely tune the stimulation ON and OFF time-windows to the underlying pathological frequency. Pre-clinical and clinical studies of coordinated reset stimulation have relied on these proposals for their stimulation protocols. In this study, we present a modified ON-OFF coordinated reset stimulation paradigm called periodic flashing and study its behavior through computational modeling using the Kuramoto coupled phase oscillator model. We demonstrate that in contrast to conventional coordinated reset stimulation, the periodic flashing variation does not exhibit a need for precise turning of the ON-OFF periods to the pathological frequency, and demonstrates desynchronization for a wide range of ON and OFF periods. We provide a mechanistic explanation for the previously observed sensitivities and demonstrate that they are an artifact of the specific ON-OFF cycling paradigm used. As a practical consequence, the periodic flashing paradigm simplifies the tuning of optimal stimulation parameters by decreasing the dimension of the search space. It also suggests new, more flexible ways of delivering coordinated reset stimulation.
机译:基底神经节网络中的病理同步被认为是帕金森氏病病理生理学的重要组成部分。对于某些帕金森氏病患者,一种公认的治疗方法是深部脑部刺激,其中将强直性高频脉冲序列传送到大脑的目标区域。近年来,已经提出了一种新的称为协调复位刺激的神经调节范例,其目的是通过将短的高频突发依次传送到病理同步网络的不同子区域来逆转病理同步,平均突发间隔为每个子区域对应于病理振荡的周期。进一步提出,当周期性地中断刺激时,可以增强所得的失步,并且特别有利的是将刺激的打开和关闭时间窗精确地调节到潜在的病理频率。协同复位刺激的临床前和临床研究已将这些建议用于其刺激方案。在这项研究中,我们提出了一种改进的ON-OFF协同复位刺激范例,称为周期性闪烁,并通过使用Kuramoto耦合相位振荡器模型的计算模型研究了其行为。我们证明,与传统的协调复位刺激相反,周期性的闪烁变化并不需要将ON-OFF周期精确地转换到病理频率,并且证明了在广泛的ON和OFF周期内不同步。我们为以前观察到的灵敏度提供了一种机械的解释,并证明它们是所使用的特定开-关循环范式的伪像。作为实际结果,周期性闪烁范例通过减小搜索空间的尺寸简化了最佳刺激参数的调整。它还提出了新的,更灵活的方式来提供协调的复位刺激。

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