Key Laboratory of Animal Resistance Biology of Shandong Province, College of Life Science, Shandong Normal University, Jinan, 250014, China.
School of Physics and Electronics, Shandong Normal University, Jinan, 250014, China.
Neurosci Bull. 2019 Apr;35(2):315-324. doi: 10.1007/s12264-018-0312-9. Epub 2018 Nov 27.
The thalamostriatal pathway is implicated in Parkinson's disease (PD); however, PD-related changes in the relationship between oscillatory activity in the centromedian-parafascicular complex (CM/Pf, or the Pf in rodents) and the dorsal striatum (DS) remain unclear. Therefore, we simultaneously recorded local field potentials (LFPs) in both the Pf and DS of hemiparkinsonian and control rats during epochs of rest or treadmill walking. The dopamine-lesioned rats showed increased LFP power in the beta band (12 Hz-35 Hz) in the Pf and DS during both epochs, but decreased LFP power in the delta (0.5 Hz-3 Hz) band in the Pf during rest epochs and in the DS during both epochs, compared to control rats. In addition, exaggerated low gamma (35 Hz-70 Hz) oscillations after dopamine loss were restricted to the Pf regardless of the behavioral state. Furthermore, enhanced synchronization of LFP oscillations was found between the Pf and DS after the dopamine lesion. Significant increases occurred in the mean coherence in both theta (3 Hz-7 Hz) and beta bands, and a significant increase was also noted in the phase coherence in the beta band between the Pf and DS during rest epochs. During the treadmill walking epochs, significant increases were found in both the alpha (7 Hz-12 Hz) and beta bands for two coherence measures. Collectively, dramatic changes in the relative LFP power and coherence in the thalamostriatal pathway may underlie the dysfunction of the basal ganglia-thalamocortical network circuits in PD, contributing to some of the motor and non-motor symptoms of the disease.
纹状体丘脑通路与帕金森病(PD)有关;然而,PD 相关的中缝核-中央旁核复合体(CM/Pf,或在啮齿动物中的 Pf)与背侧纹状体(DS)之间的振荡活动关系的变化尚不清楚。因此,我们在帕金森病大鼠和对照组大鼠休息或在跑步机上行走时同时记录 Pf 和 DS 的局部场电位(LFPs)。多巴胺损伤大鼠在 Pf 和 DS 的β频段(12 Hz-35 Hz)的 LFP 功率在两个时期都增加,但在 Pf 的δ频段(0.5 Hz-3 Hz)的 LFP 功率在休息期和 DS 的 LFP 功率在两个时期都减少,与对照组大鼠相比。此外,多巴胺缺失后低频γ(35 Hz-70 Hz)振荡的夸大局限于 Pf,而与行为状态无关。此外,多巴胺损伤后发现 Pf 和 DS 之间的 LFPs 振荡同步增强。在θ(3 Hz-7 Hz)和β频段的平均相干性都显著增加,在 Pf 和 DS 之间的β频段的相位相干性也显著增加。在跑步机行走期间,两个相干性测量在α(7 Hz-12 Hz)和β频段都有显著增加。总的来说,纹状体丘脑通路中 LFPs 功率和相干性的剧烈变化可能是 PD 基底节-丘脑皮质网络回路功能障碍的基础,导致疾病的一些运动和非运动症状。