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基于多个位点的协同延迟反馈刺激实现深部脑刺激的有效去同步化:一项计算研究

Effectively desynchronizing deep brain stimulation based on a coordinated delayed feedback stimulation via several sites: a computational study.

作者信息

Hauptmann C, Popovych O, Tass P A

机构信息

Institute of Medicine and Virtual Institute of Neuromodulation, Research Center Juelich, 52425 Juelich, Germany.

出版信息

Biol Cybern. 2005 Dec;93(6):463-70. doi: 10.1007/s00422-005-0020-1. Epub 2005 Oct 21.

Abstract

In detailed simulations we present a coordinated delayed feedback stimulation as a particularly robust and mild technique for desynchronization. We feed back the measured and band-pass filtered local filed potential via several or multiple sites with different delays, respectively. This yields a resounding desynchronization in a naturally demand-controlled way. Our novel approach is superior to previously developed techniques: It is robust against variations of system parameters, e.g., the mean firing rate. It does not require time-consuming calibration. It also prevents intermittent resynchronization typically caused by all methods employing repetitive administration of shocks. We suggest our novel technique to be used for deep brain stimulation in patients suffering from neurological diseases with pathological synchronization, such as Parkinsonian tremor, essential tremor or epilepsy.

摘要

在详细的模拟中,我们提出了一种协调延迟反馈刺激,作为一种特别稳健且温和的去同步技术。我们分别通过几个或多个具有不同延迟的位点反馈测量并经过带通滤波的局部场电位。这以自然需求控制的方式产生了显著的去同步。我们的新方法优于先前开发的技术:它对系统参数的变化(例如平均放电率)具有鲁棒性。它不需要耗时的校准。它还能防止通常由所有采用重复电击给药的方法引起的间歇性重新同步。我们建议将我们的新技术用于患有帕金森震颤、特发性震颤或癫痫等具有病理性同步的神经疾病患者的深部脑刺激。

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