Pourfar Michael, Tang Chengke, Lin Tanya, Dhawan Vijay, Kaplitt Michael G, Eidelberg David
Departments of Neurology and Medicine, North Shore University Hospital, Manhasset, New York 11030, USA.
J Neurosurg. 2009 Jun;110(6):1278-82. doi: 10.3171/2008.12.JNS08991.
The authors investigated whether the insertion of deep brain stimulation electrodes into the subthalamic nucleus can alter regional brain metabolism in the absence of stimulation.
Six patients with Parkinson disease (PD) underwent preoperative FDG PET scanning, and again after STN electrode implantation with stimulation turned off.
Compared with baseline values, glucose utilization was reduced in the postoperative off-stimulation scans in the putamen/globus pallidus and in the ventral thalamus (p < 0.01), and there was increased metabolism in the sensorimotor cortex and cerebellum (p < 0.005). The expression of a specific PD-related spatial covariance pattern measured in the FDG PET data did not change after electrode implantation (p = 0.36), nor was there a significant change in clinical motor ratings (p = 0.44). Differences in PD-related spatial covariance pattern expression among the patients after electrode implantation did, however, correlate with the number of microelectrode recording trajectories placed during surgery (r = -0.82, p < 0.05).
These findings suggest that electrode implantation can impart a microlesion effect on regional brain function. Nonetheless, these local changes did not cross the threshold of network modulation needed to achieve clinical benefit.
作者研究了在无刺激情况下,将脑深部刺激电极植入丘脑底核是否会改变局部脑代谢。
6例帕金森病(PD)患者在术前接受了氟代脱氧葡萄糖正电子发射断层扫描(FDG PET),在丘脑底核电极植入且刺激关闭后再次进行扫描。
与基线值相比,术后刺激关闭扫描时壳核/苍白球和腹侧丘脑的葡萄糖利用率降低(p < 0.01),感觉运动皮层和小脑的代谢增加(p < 0.005)。在FDG PET数据中测量的特定PD相关空间协方差模式的表达在电极植入后没有变化(p = 0.36),临床运动评分也没有显著变化(p = 0.44)。然而,电极植入后患者之间PD相关空间协方差模式表达的差异与手术期间放置的微电极记录轨迹数量相关(r = -0.82,p < 0.05)。
这些发现表明电极植入可对局部脑功能产生微损伤效应。尽管如此,这些局部变化并未达到实现临床益处所需的网络调节阈值。