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Brain networks modulated by subthalamic nucleus deep brain stimulation.

机译:丘脑底核调制的脑网络深层大脑刺激。

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摘要

Deep brain stimulation of the subthalamic nucleus is an established treatment for the motor symptoms of Parkinson's disease. Given the frequent occurrence of stimulation-induced affective and cognitive adverse effects, a better understanding about the role of the subthalamic nucleus in non-motor functions is needed. The main goal of this study is to characterize anatomical circuits modulated by subthalamic deep brain stimulation, and infer about the inner organization of the nucleus in terms of motor and non-motor areas. Given its small size and anatomical intersubject variability, functional organization of the subthalamic nucleus is difficult to investigate in vivo with current methods. Here, we used local field potential recordings obtained from 10 patients with Parkinson's disease to identify a subthalamic area with an analogous electrophysiological signature, namely a predominant beta oscillatory activity. The spatial accuracy was improved by identifying a single contact per macroelectrode for its vicinity to the electrophysiological source of the beta oscillation. We then conducted whole brain probabilistic tractography seeding from the previously identified contacts, and further described connectivity modifications along the macroelectrode's main axis. The designated subthalamic 'beta' area projected predominantly to motor and premotor cortical regions additional to connections to limbic and associative areas. More ventral subthalamic areas showed predominant connectivity to medial temporal regions including amygdala and hippocampus. We interpret our findings as evidence for the convergence of different functional circuits within subthalamic nucleus' portions deemed to be appropriate as deep brain stimulation target to treat motor symptoms in Parkinson's disease. Potential clinical implications of our study are illustrated by an index case where deep brain stimulation of estimated predominant non-motor subthalamic nucleus induced hypomanic behaviour.
机译:丘脑底核的深部脑刺激是针对帕金森氏病运动症状的公认治疗方法。鉴于刺激引起的情感和认知不良反应的频繁发生,需要更好地了解丘脑底核在非运动功能中的作用。这项研究的主要目的是表征由丘脑底深部脑刺激调制的解剖电路,并根据运动和非运动区域推断核的内部组织。鉴于其体积小和受试者之间的解剖变异性,很难用当前方法在体内研究丘脑下核的功能组织。在这里,我们使用了从10名帕金森氏病患者那里获得的局部场电位记录,以识别具有类似电生理特征(即主要的β振荡活性)的丘脑下区域。通过识别每个宏电极与β振荡的电生理源附近的单个接触,可以提高空间精度。然后,我们从先前确定的接触点进行了全脑概率tractography播种,并进一步描述了沿大电极主轴的连接性修改。除了与边缘和联想区域的连接以外,指定的丘脑“β”区主要投射到运动和运动前皮质区域。丘脑下丘脑更多区域显示与颞内侧区域(包括杏仁核和海马体)的主要连通性。我们将我们的发现解释为丘脑底核部分中不同功能电路的融合的证据,认为丘脑底核部分适合作为治疗帕金森氏病运动症状的深部脑刺激目标。我们的研究的潜在临床意义通过一个索引案例来说明,其中深部脑刺激估计了主要的非运动性丘脑下丘脑核诱发的躁狂行为。

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