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Low-frequency subthalamic oscillations increase after deep brain stimulation in Parkinson's disease.

机译:在帕金森氏病深部脑刺激后,低频丘脑振荡增加。

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This work is the second of a series of papers in which we investigated the neurophysiological basis of deep brain stimulation (DBS) clinical efficacy using post-operative local field potential (LFP) recordings from DBS electrodes implanted in the subthalamic nucleus (STN) in patients with Parkinson's disease. We found that low-frequency (1-1.5Hz) oscillations in LFP recordings from the STN of patients with Parkinson's disease dramatically increase after DBS of the STN itself (log power change=0.93+/-0.62; Wilcoxon: p=0.0002, n=13), slowly decaying to baseline levels after turning DBS off. The DBS-induced increase of low-frequency LFP oscillations is highly reproducible and appears only after the delivery of DBS for a time long enough to induce clinical improvement. This increase of low-frequency LFP oscillations could reflect stimulation-induced modulation of network activity or could represent changes of the electrochemical properties at the brain-electrode interface.
机译:这项工作是一系列论文中的第二篇,我们使用植入患者丘脑底核(STN)的DBS电极的术后局部场电位(LFP)记录,研究了深部脑刺激(DBS)临床疗效的神经生理基础。帕金森氏病。我们发现,帕金森病患者的STN的LFP记录中的低频(1-1.5Hz)振荡在STN本身的DBS后急剧增加(对数功率变化= 0.93 +/- 0.62; Wilcoxon:p = 0.0002,n = 13),然后在关闭DBS后缓慢衰减至基准水平。 DBS诱导的低频LFP振荡增加是高度可重现的,并且仅在DBS交付足够长的时间以引起临床改善后才出现。低频LFP振荡的这种增加可能反映了刺激诱导的网络活动调制,或者可能代表了脑电极界面处的电化学性质的变化。

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