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首页> 外文期刊>Journal of Neurophysiology >Network-wide oscillations in the parkinsonian state: alterations in neuronal activities occur in the premotor cortex in parkinsonian nonhuman primates
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Network-wide oscillations in the parkinsonian state: alterations in neuronal activities occur in the premotor cortex in parkinsonian nonhuman primates

机译:在Parkinsonian州的网络范围振荡:神经元活动的改变发生在Parkinsonian非人的激发术中的热激素皮质

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A number of studies suggest that Parkinson's disease (PD) is associated with alterations of neuronal activity patterns in the basal-ganglia-thalamocortical circuit. There are limited electrophysiological data, however, describing how the premotor cortex, which is involved in movement and decision-making, is likely impacted in PD. In this study, spontaneous local field potential (LFP) and single unit neuronal activity were recorded in the dorsal premotor area of nonhuman primates in both the naive and parkinsonian state using the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) model of parkinsonism. In both animals, we observed a shift of power in LFP power spectral densities (1 - 350 Hz) from higher to lower frequency bands; parkinsonism resulted in increased power in frequencies <8 Hz and decreased power at frequencies >30 Hz. A comparable but not identical trend was observed in the power spectral analysis of single unit spike trains: alpha power increased in both animals and gamma power decreased in one; power in other frequency bands remaining unchanged. Although not consistent across animals, we also observed changes in discharge rates and bursting activity. Overall, the LFP and single unit analysis suggest that abnormalities in premotor neural activity are a feature of parkinsonism, although specific details of those abnormalities may differ between subjects. This study further supports the concept that PD is a network disorder that induces abnormal spontaneous neural activities across the basalganglia- thalamocortical circuit including the premotor cortex and provides foundational knowledge for future studies regarding the relationship between changes in neuronal activity in this region and the development of motor deficits in PD.
机译:许多研究表明帕金森病(Pd)与基底神经节 - 脑皮画电路中神经元活性模式的改变有关。然而,有限的电生理数据,描述了如何在运动和决策中涉及的热敏皮层可能影响PD。在本研究中,使用1-甲基-4-苯基-1,2,3,6,在幼稚和帕金尼州的非人和帕金尼亚州的非人印象肽的背部热球区域中记录了自发的局部场势(LFP)和单一单元神经元活性。 - 帕金森主义的 - 吡啶吡啶(MPTP)模型。在这两种动物中,我们观察到LFP功率谱密度(1-350Hz)的电力从较高到较低频带的转变;帕金森主义导致频率提高<8 Hz的功率,并且在频率下减少功率> 30 Hz。在单位单位尖峰列车的功率谱分析中观察到了可比但不是相同的趋势:alpha功率在动物和伽马功率中增加一个;其他频段的电源保持不变。虽然在动物中不一致,但我们也观察到放电率和爆破活动的变化。总体而言,LFP和单一单元分析表明热球神经活动的异常是帕金森主义的特征,尽管这些异常的具体细节可能在受试者之间有所不同。本研究进一步支持PD是PD是一种网络疾病,其诱导基层吞噬线系地图电路的异常自发性神经活动,包括Premotor Cortex,为未来研究提供了关于该地区神经元活动变化与发展之间的关系的基础知识和发展PD中的电机缺陷。

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