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深入大脑刺激机制的洞察。

Insights into the mechanisms of deep brain stimulation.

机构信息

King's College Hospital, Department of Neurosurgery, Denmark Hill, London SE5 9RS, UK.

Guy's, King's and St Thomas' School of Medicine, Great Maze Pond, London SE1 9RT, UK.

出版信息

Nat Rev Neurol. 2017 Sep;13(9):548-554. doi: 10.1038/nrneurol.2017.105. Epub 2017 Jul 28.

Abstract

Despite long-term and widespread use of deep brain stimulation (DBS) in a variety of neurological conditions, the underlying mechanisms of action have been elusive. Growing evidence suggests that DBS acts through multimodal mechanisms that are not limited to inhibition and excitation of basal ganglia circuits. DBS also seems to act over variable time spans - for example, the effects on tremor are immediate, whereas the effects on dystonia emerge over several weeks - suggesting that large networks are targeted. Studies reviewing the use of DBS in pain and obsessive-compulsive disorder have demonstrated direct involvement of axonal fibres rather than grey matter. In this Review, we draw on clinical and experimental data to examine the various hypotheses that have been put forward to explain the effects of DBS. In agreement with several other experts, we suggest that the term 'deep brain stimulation' warrants modification. A potentially more accurate term is 'deep brain neuromodulation', as the mode of action spans an array of therapeutic effects over a variable period of time, and is not just limited to 'stimulation' of the basal ganglia brain centres. Terms such as 'electrical neuro-network modulation' may be useful for applications in which deep brain structures are not the primary target.

摘要

尽管深部脑刺激 (DBS) 在多种神经疾病中得到了长期广泛的应用,但作用机制仍难以捉摸。越来越多的证据表明,DBS 通过多种作用机制发挥作用,不仅限于基底神经节回路的抑制和兴奋。DBS 的作用似乎也跨越不同的时间范围 - 例如,对震颤的影响是即时的,而对肌张力障碍的影响则在数周内出现 - 这表明靶向的是大网络。回顾 DBS 在疼痛和强迫症中的应用的研究表明,轴突纤维而不是灰质直接参与其中。在这篇综述中,我们借鉴临床和实验数据,探讨了为解释 DBS 效应而提出的各种假说。我们同意其他几位专家的观点,认为“深部脑刺激”这一术语需要修改。一个更准确的术语是“深部脑神经调节”,因为作用模式跨越了一段时间内一系列治疗效果,而不仅仅局限于“刺激”基底神经节脑中枢。在深部脑结构不是主要目标的应用中,术语“电神经网络调节”可能会很有用。

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