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A model of desynchronizing deep brain stimulation with a demand-controlled coordinated reset of neural subpopulations

机译:通过需求控制的神经亚群协调复位使深部脑刺激失步的模型

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摘要

The coordinated reset of neural subpopulations is introduced as an effectively desynchronizing stimulation technique. For this, short sequences of high-frequency pulse trains are administered at different sites in a coordinated way. Desynchronization is easily maintained by performing a coordinated reset with demand-controlled timing or by periodically administering resetting high-frequency pulse trains of demand-controlled length. Unlike previously developed methods, this novel approach is robust against variations of model parameters and does not require time-consuming calibration. The novel technique is suggested to be used for demand-controlled deep brain stimulation in patients suffering from Parkinson's disease or essential tremor. It might even be applicable to diseases with intermittently emerging synchronized neural oscillations like epilepsy. [References: 32]
机译:引入神经亚群的协调复位作为有效的去同步刺激技术。为此,高频脉冲序列的短序列以协调的方式在不同位置进行管理。通过以需求控制的时序执行协调的重置,或通过定期管理需求控制长度的高频脉冲序列的重置,可以轻松维护去同步。与以前开发的方法不同,这种新颖的方法对模型参数的变化具有鲁棒性,并且不需要耗时的校准。建议将该新技术用于患有帕金森氏病或原发性震颤的患者的需求控制型深部脑刺激。它甚至可能适用于间歇性出现同步神经振荡(如癫痫病)的疾病。 [参考:32]

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