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Intraoperative macroelectrode local field potential recordings in Essential Tremor

机译:术中宏观电极本地场潜在录像在必要的震颤中

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Essential Tremor (ET) is a common movement disorder involving the presence of action tremor. While there are pharmacological treatment options, Deep Brain stimulation (DBS) of the ventral intermediate nucleus (VIM) of the thalamus is an effective and widely used surgical therapy for those patients who are intolerant of, or whose tremor is unresponsive to, medications. In this study, we recorded local field potentials (LFPs) at various depths along the trajectory to Vim in three ET patients. LFP recordings at various depths were processed by a PCA based de-noising method to remove ECG artifacts. The spectral characteristics of LFPs were investigated via frequency-vs-depth maps using a modified Welch periodogram using robust statistics, and further analyzed within different sub-bands to determine whether LFP activity encodes characteristic patterns for the identification of disease-specific subcortical areas. Our results demonstrated that a median-based spectrum estimation approach eliminates outliers better than the traditional averaging technique by preserving band-specific LFP activity. Results indicate that there was clear oscillatory beta activity around 20 Hz in two subjects. One patient displayed relatively high gamma (40 Hz) activity in the sub-thalamic region. In conclusion, despite the small number of subjects, the present study adds to existing knowledge about LFP-based pathophysiology of ET and its target-based spectral activities.
机译:基本震颤(ET)是一种涉及行动震颤的常见运动障碍。虽然存在药理学治疗方案,但丘脑的腹部中间核(Vim)的深脑刺激(DBS)是那些不耐受的患者的有效和广泛使用的手术治疗,或者其震颤对药物无响应的患者。在这项研究中,我们在三个ET患者中沿着轨迹的各种深度记录了当地的局部电位(LFP)。各种深度的LFP录制由基于PCA的去噪方法处理,以除去ECG伪像。使用稳健统计的修改的韦尔奇周期图,通过频率-VS-深度图研究了LFP的光谱特性,并进一步分析在不同的子带内以确定LFP活动是否编码特征模式以识别疾病特异性的皮质区域。我们的结果表明,通过保留特定带特定的LFP活动,基于中位的频谱估计方法消除了比传统平均技术更好的异常值。结果表明,两个受试者中存在近20 Hz的透明振荡β活性。一名患者在亚丘脑区域中显示出相对高的γ(40 Hz)活性。总之,尽管受试者数量少,但本研究为现有的基于LFP的病理生理学的现有知识和其基于目标的光谱活动。

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