Park Eunkyoung, Song Inho, Jang Dong Pyo, Kim In Young
Department of Biomedical Engineering, Hanyang University, Seoul, Republic of Korea.
Medial Device Development Center, Osong Medical Innovation Foundation, Chungbuk, Republic of Korea.
Neurosci Lett. 2014 Aug 8;577:16-21. doi: 10.1016/j.neulet.2014.05.062. Epub 2014 Jun 10.
The pedunculopontine nucleus (PPN) has recently been introduced as an alternative target to the subthalamic nucleus (STN) or globus pallidus internus (GPi) for the treatment of advanced Parkinson's disease with severe and medically intractable axial symptoms such as gait and postural impairment. However, it is little known about how electrical stimulation of the PPN affects control of neuronal activities between the PPN and basal ganglia. We examined how low frequency stimulation of the pedunculopontine tegmental nucleus (PPTg) affects control of neuronal activities between the PPN and basal ganglia in 6-OHDA lesioned rats. In order to identify the effect of low frequency stimulation on the PPTg, neuronal activity in both the STN and substantia nigra par reticulata (SNr) were recorded and subjected to quantitative analysis, including analysis of firing rates and firing patterns. In this study, we found that the firing rates of the STN and SNr were suppressed during low frequency stimulation of the PPTg. However, the firing pattern, in contrast to the firing rate, did not exhibit significant changes in either the STN or SNr of 6-OHDA lesioned rats during low frequency stimulation of the PPTg. In addition, we also found that the firing rate of STN and SNr neurons displaying burst and random pattern were decreased by low frequency stimulation of PPTg, while the neurons displaying regular pattern were not affected. These results indicate that low frequency stimulation of the PPTg affects neuronal activity in both the STN and SNr, and may represent electrophysiological efficacy of low frequency PPN stimulation.
脚桥核(PPN)最近被引入作为丘脑底核(STN)或苍白球内侧部(GPi)的替代靶点,用于治疗伴有严重且药物难治性轴性症状(如步态和姿势障碍)的晚期帕金森病。然而,关于电刺激PPN如何影响PPN与基底神经节之间的神经元活动控制,人们知之甚少。我们研究了低频刺激脚桥被盖核(PPTg)如何影响6-羟基多巴胺(6-OHDA)损伤大鼠中PPN与基底神经节之间的神经元活动控制。为了确定低频刺激对PPTg的影响,记录了STN和黑质网状部(SNr)的神经元活动,并进行了定量分析,包括放电率和放电模式分析。在本研究中,我们发现,在PPTg低频刺激期间,STN和SNr的放电率受到抑制。然而,与放电率相反,在PPTg低频刺激期间,6-OHDA损伤大鼠的STN或SNr的放电模式均未表现出显著变化。此外,我们还发现,PPTg低频刺激可降低呈现爆发和随机模式的STN和SNr神经元的放电率,而呈现规则模式的神经元则不受影响。这些结果表明,PPTg低频刺激会影响STN和SNr中的神经元活动,可能代表了PPN低频刺激的电生理效应。