首页> 美国卫生研究院文献>Journal of Neurophysiology >Nervous System Pathophysiology: Network-wide oscillations in the parkinsonian state: alterations in neuronal activities occur in the premotor cortex in parkinsonian nonhuman primates
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Nervous System Pathophysiology: Network-wide oscillations in the parkinsonian state: alterations in neuronal activities occur in the premotor cortex in parkinsonian nonhuman primates

机译:神经系统病理生理学:帕金森状态的全网振荡:帕金森氏非人类灵长类动物的运动前皮层神经元活动发生改变。

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摘要

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 naïve 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 basal-ganglia-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.>NEW & NOTEWORTHY This study begins to fill a gap in knowledge regarding how Parkinson’s disease (PD) may cause abnormal functioning of the premotor cortex. It is novel as the premotor activity is examined in both the naïve and parkinsonian states, in the same subjects, at the single unit and LFP level. It provides foundational knowledge on which to build future studies to explore the relationships between premotor activities and specific parkinsonian motor and cognitive deficits.
机译:大量研究表明,帕金森氏病(PD)与基底神经节-丘脑皮质回路神经元活动模式的改变有关。然而,有限的电生理数据描述了运动和决策中涉及的运动前皮层可能如何影响PD。在这项研究中,使用1-methyl-4-phenyl-1,2,3,6,在幼稚和帕金森病状态下,非人类灵长类动物的前运动区记录了自发的局部场电位(LFP)和单个单位神经元活动。 -四氢吡啶(MPTP)帕金森氏症模型。在两只动物中,我们观察到LFP功率谱密度(1-350 Hz)的功率从较高到较低的频带变化。帕金森症导致在<8 Hz的频率下功率增加,而在> 30 Hz的频率下功率下降。在单个单位峰值序列的功率谱分析中观察到了可比但不完全相同的趋势:两种动物中的α功率均增加,而一只动物的γ功率降低;其他频段的功率保持不变。尽管在动物之间不一致,但我们还观察到了放电速率和爆发活动的变化。总体而言,LFP和单一单元分析表明,运动前神经活动异常是帕金森氏症的特征,尽管这些异常的具体细节在受试者之间可能有所不同。这项研究进一步支持以下观念:PD是一种网络疾病,可在包括运动前皮层在内的基底神经节-丘脑皮质回路中诱导异常的自发神经活动,并为该区域神经元活动的变化与神经元活动之间的关系提供了基础知识。 PD的运动障碍的发展。> NEW&NOTEWORTHY 该研究开始填补有关帕金森氏病(PD)如何导致运动前皮质功能异常的知识空白。它是新颖的,因为在相同的受试者中,在单个单元和LFP级别上对天真状态和帕金森状态下的运动前活动都进行了检查。它提供了基础知识,可在此基础上开展进一步的研究,以探索运动前活动与特定帕金森氏运动与认知缺陷之间的关系。

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