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特发性震颤中脑深部电刺激的最佳参数:一项荟萃分析及新型程控策略

Optimal Parameters of Deep Brain Stimulation in Essential Tremor: A Meta-Analysis and Novel Programming Strategy.

作者信息

Bogdan I Daria, Laar Teus van, Oterdoom D L Marinus, Drost Gea, van Dijk J Marc C, Beudel Martijn

机构信息

Department of Neurology, University Medical Center Groningen, University of Groningen, 9713 GZ Groningen, The Netherlands.

Department of Neurosurgery, University Medical Center Groningen, University of Groningen, 9713 GZ Groningen, The Netherlands.

出版信息

J Clin Med. 2020 Jun 14;9(6):1855. doi: 10.3390/jcm9061855.

Abstract

The programming of deep brain stimulation (DBS) parameters for tremor is laborious and empirical. Despite extensive efforts, the end-result is often suboptimal. One reason for this is the poorly understood relationship between the stimulation parameters' voltage, pulse width, and frequency. In this study, we aim to improve DBS programming for essential tremor (ET) by exploring a new strategy. At first, the role of the individual DBS parameters in tremor control was characterized using a meta-analysis documenting all the available parameters and tremor outcomes. In our novel programming strategy, we applied 10 random combinations of stimulation parameters in eight ET-DBS patients with suboptimal tremor control. Tremor severity was assessed using accelerometers and immediate and sustained patient-reported outcomes (PRO's), including the occurrence of side-effects. The meta-analysis showed no substantial relationship between individual DBS parameters and tremor suppression. Nevertheless, with our novel programming strategy, a significantly improved (accelerometer = 0.02, PRO = 0.02) and sustained ( = 0.01) tremor suppression compared to baseline was achieved. Less side-effects were encountered compared to baseline. Our pilot data show that with this novel approach, tremor control can be improved in ET patients with suboptimal tremor control on DBS. In addition, this approach proved to have a beneficial effect on stimulation-related complications.

摘要

用于震颤的脑深部电刺激(DBS)参数设置既费力又缺乏经验依据。尽管付出了巨大努力,最终结果往往不尽人意。原因之一是刺激参数的电压、脉宽和频率之间的关系尚不清楚。在本研究中,我们旨在通过探索一种新策略来改进特发性震颤(ET)的DBS参数设置。首先,通过对记录所有可用参数和震颤结果的荟萃分析,来确定各个DBS参数在震颤控制中的作用。在我们的新参数设置策略中,我们对8例震颤控制效果欠佳的ET-DBS患者应用了10种随机组合的刺激参数。使用加速度计以及患者即时和持续报告的结果(PRO)(包括副作用的发生情况)来评估震颤严重程度。荟萃分析表明,各个DBS参数与震颤抑制之间没有实质性关系。然而,采用我们的新参数设置策略,与基线相比,震颤抑制得到了显著改善(加速度计=0.02,PRO=0.02)且持续存在(=0.01)。与基线相比,副作用更少。我们的初步数据表明,通过这种新方法,可以改善DBS治疗下震颤控制效果欠佳的ET患者的震颤控制情况。此外,该方法被证明对与刺激相关的并发症有有益影响。

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