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首页> 外文期刊>The Journal of Mathematical Neuroscience >Phase-dependence of response curves to deep brain stimulation and their relationship: from essential tremor patient data to a Wilson–Cowan model
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Phase-dependence of response curves to deep brain stimulation and their relationship: from essential tremor patient data to a Wilson–Cowan model

机译:响应曲线对深脑刺激的相位依赖性及其关系:从基本震颤患者数据到威尔逊 - 牛仔模型

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Essential tremor manifests predominantly as a tremor of the upper limbs. One therapy option is high-frequency deep brain stimulation, which continuously delivers electrical stimulation to the ventral intermediate nucleus of the thalamus at about 130?Hz. Constant stimulation can lead to side effects, it is therefore desirable to find ways to stimulate less while maintaining clinical efficacy. One strategy, phase-locked deep brain stimulation, consists of stimulating according to the phase of the tremor. To advance methods to optimise deep brain stimulation while providing insights into tremor circuits, we ask the question: can the effects of phase-locked stimulation be accounted for by a canonical Wilson–Cowan model? We first analyse patient data, and identify in half of the datasets significant dependence of the effects of stimulation on the phase at which stimulation is provided. The full nonlinear Wilson–Cowan model is fitted to datasets identified as statistically significant, and we show that in each case the model can fit to the dynamics of patient tremor as well as to the phase response curve. The vast majority of top fits are stable foci. The model provides satisfactory prediction of how patient tremor will react to phase-locked stimulation by predicting patient amplitude response curves although they were not explicitly fitted. We also approximate response curves of the significant datasets by providing analytical results for the linearisation of a stable focus model, a simplification of the Wilson–Cowan model in the stable focus regime. We report that the nonlinear Wilson–Cowan model is able to describe response to stimulation more precisely than the linearisation.
机译:基本震颤主要表现为上肢的震颤。一种治疗选择是高频深脑刺激,该刺激连续地向丘脑的腹侧刺激提供电刺激,约130℃。恒定的刺激可以导致副作用,因此希望在保持临床疗效的同时促进刺激的方法。一种策略,锁相深脑刺激,包括根据震颤的阶段刺激。为了推进优化深脑刺激的方法,同时为震颤电路提供见解,我们提出了问题:可以通过规范威尔逊 - 杨模型占阶段锁定刺激的影响吗?我们首先分析患者数据,并确定在数据集的一半中,刺激对提供刺激的阶段的影响的显着依赖性。完整的非线性Wilson-Cowan模型适用于确定为统计显着的数据集,我们表明,在每种情况下,该模型可以适应患者震颤的动态以及相位响应曲线。绝大多数顶级适合是稳定的焦点。该模型通过预测患者幅度响应曲线,虽然没有明确安装,但该模型对患者震颤将如何对锁相刺激作出反应的令人满意的预测。我们还通过提供稳定焦点模型的线性化的分析结果来近似到重要数据集的响应曲线,在稳定的焦点方案中简化了威尔逊 - 杨模型的简化。我们报告说,非线性威尔逊 - 牛仔模型能够更精确地描述对刺激的反应而不是线性化。

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