Chockalingam Arun, Belasen Abigail, Chen Nita, Ramirez-Zamora Adolfo, Youn Youngwon, Feustel Paul, Wilock Meghan E, Shin Damian S, Pilitsis Julie G
Department of Neurosurgery, Albany Medical Center, Albany, NY, USA.
Department of Neurology, Albany Medical Center, Albany, NY, USA.
Neuromodulation. 2017 Jul;20(5):471-477. doi: 10.1111/ner.12606. Epub 2017 May 10.
Subthalamic nucleus deep brain stimulation (STN DBS) is an established treatment in Parkinson's disease (PD). We investigate the effect of eye opening on neuronal activity and local field potentials (LFPs) in the STN.
We prospectively enrolled 25 PD patients undergoing STN DBS in our institution. During DBS, single-unit activity (SUA) and LFPs were measured when eyes were open and closed. As movement is known to result in changes in LFPs, we tested response to eye opening in the presence and absence of movement.
Neither eye state nor arm movement has a significant influence on SUA recordings. There is a statistically significant interaction between eye state and arm movement (p < 0.05). In the presence of movement, STN SUA increase when eyes open (p < 0.05). When eyes are closed, STN SUA decrease with movement (p < 0.05). STN theta LFP oscillations decrease when eyes are open compared to closed, irrespective of movement status (p < 0.05).
STN activity is influenced by eye state and arm movement. It is unclear whether this is attributed to a change in the STN's role in oculomotor control or from a change in attentional state. Understanding how physiologic normal activity alters neural activity is critical for the optimization of DBS therapy, particularly in closed-loop neuromodulation.
丘脑底核深部脑刺激术(STN DBS)是帕金森病(PD)的一种既定治疗方法。我们研究睁眼对丘脑底核神经元活动和局部场电位(LFP)的影响。
我们前瞻性纳入了在我院接受STN DBS治疗的25例PD患者。在进行DBS期间,测量患者睁眼和闭眼时的单单位活动(SUA)和LFP。由于已知运动可导致LFP变化,我们测试了在有运动和无运动情况下对睁眼的反应。
眼状态和手臂运动对SUA记录均无显著影响。眼状态和手臂运动之间存在统计学上的显著交互作用(p < 0.05)。在有运动的情况下,睁眼时丘脑底核SUA增加(p < 0.05)。闭眼时,丘脑底核SUA随运动而降低(p < 0.05)。与闭眼相比,无论运动状态如何,睁眼时丘脑底核θ频段LFP振荡均降低(p < 0.05)。
丘脑底核活动受眼状态和手臂运动影响。尚不清楚这是由于丘脑底核在眼球运动控制中的作用改变,还是由于注意力状态的改变。了解生理正常活动如何改变神经活动对于优化DBS治疗至关重要,尤其是在闭环神经调节中。