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使丘脑底核中异常同步的神经活动去同步化:一项建模研究。

Desynchronizing the abnormally synchronized neural activity in the subthalamic nucleus: a modeling study.

作者信息

Hauptmann Christian, Popovych Oleksandr, Tass Peter A

机构信息

Institute of Neuroscience and Biophysics 3 and Virtual Institute of Neuromodulation, Research Center Juelich, 52425 Juelich, Germany.

出版信息

Expert Rev Med Devices. 2007 Sep;4(5):633-50. doi: 10.1586/17434440.4.5.633.

Abstract

A mathematical model of a target area for deep brain stimulation was used to investigate the effects of electrical stimulation on pathologically synchronized clusters of neurons. In total, three newly developed stimulation techniques based on multisite coordinated reset and delayed feedback were tested and compared with a high-frequency stimulation method that is currently used as a standard stimulation protocol for deep brain stimulation. By modeling both excitatory and inhibitory actions of the electrical stimulation, we revealed the desynchronization impacts of the novel stimulation techniques. This contrasts with standard high-frequency stimulation, which failed to desynchronize the target population and whose inhibitory effects blocked all neuronal activity. We also explored the demand-controlled character of the proposed methods, and demonstrated that the amount of stimulation current required was considerably smaller than that for high-frequency stimulation. These novel stimulation methods appear to be superior to standard high-frequency stimulation techniques, and we propose the methods now be used for deep brain stimulation.

摘要

利用深部脑刺激目标区域的数学模型来研究电刺激对神经元病理性同步簇的影响。总共测试了三种基于多部位协同重置和延迟反馈的新开发刺激技术,并将其与目前用作深部脑刺激标准刺激方案的高频刺激方法进行比较。通过对电刺激的兴奋和抑制作用进行建模,我们揭示了新型刺激技术的去同步化影响。这与标准高频刺激形成对比,标准高频刺激未能使目标群体去同步化,且其抑制作用阻断了所有神经元活动。我们还探索了所提出方法的需求控制特性,并证明所需的刺激电流量比高频刺激所需的电流量小得多。这些新型刺激方法似乎优于标准高频刺激技术,我们建议现在将这些方法用于深部脑刺激。

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