Department of Neurology and Center of Clinical Neuroscience, Charles University, 1st Faculty of Medicine and General University Hospital, Kateřinská 30, 128 08, Prague, Czech Republic.
Department of Cybernetics, Faculty of Electrical Engineering, Czech Technical University in Prague, Technická 2, 166 27, Prague, Czech Republic.
Sci Rep. 2019 Dec 27;9(1):19924. doi: 10.1038/s41598-019-56260-x.
Clinical motor and non-motor effects of deep brain stimulation (DBS) of the subthalamic nucleus (STN) in Parkinson's disease (PD) seem to depend on the stimulation site within the STN. We analysed the effects of the position of the stimulation electrode within the motor STN on subjective emotional experience, expressed as emotional valence and arousal ratings to pictures representing primary rewards and aversive fearful stimuli in 20 PD patients. Patients' ratings from both aversive and erotic stimuli matched the mean ratings from a group of 20 control subjects at similar position within the STN. Patients with electrodes located more posteriorly reported both valence and arousal ratings from both the rewarding and aversive pictures as more extreme. Moreover, posterior electrode positions were associated with a higher occurrence of depression at a long-term follow-up. This brain-behavior relationship suggests a complex emotion topography in the motor part of the STN. Both valence and arousal representations overlapped and were uniformly arranged anterior-posteriorly in a gradient-like manner, suggesting a specific spatial organization needed for the coding of the motivational salience of the stimuli. This finding is relevant for our understanding of neuropsychiatric side effects in STN DBS and potentially for optimal electrode placement.
深部脑刺激(DBS)对丘脑底核(STN)的临床运动和非运动效应似乎取决于 STN 内的刺激部位。我们分析了 STN 内运动刺激电极位置对主观情绪体验的影响,这些情绪体验通过对代表主要奖励和厌恶恐惧刺激的图片的情绪效价和唤醒评分来表达,共涉及 20 名 PD 患者。来自厌恶和色情刺激的患者评分与 STN 内相似位置的 20 名对照组患者的平均评分相匹配。电极位置更靠后的患者对奖励和厌恶图片的效价和唤醒评分都报告为更极端。此外,在后侧电极位置的患者在长期随访中更易发生抑郁。这种脑-行为关系表明 STN 运动部位存在复杂的情绪地形。效价和唤醒的表现都重叠,并且以前后方向均匀排列,呈梯度样方式,这表明对刺激动机显著性进行编码需要特定的空间组织。这一发现对于我们理解 STN-DBS 的神经精神副作用以及潜在的最佳电极放置具有重要意义。