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帕金森病大鼠模型中探索和梳理行为期间小脑反应的电生理特征

Electrophysiological Characterization of Cerebellar Responses during Exploration and Grooming Behaviors in a Rat Model of Parkinsonism.

作者信息

Vásquez-Celaya Lizbeth, Marín-Márquez Gerardo, Manzo Jorge, Carrillo-Castilla Porfirio, Martínez Armando Jesús, Ortiz Pulido Ricardo, Zempoalteca Ramírez René, Coria-Avila Genaro A, García Luis I

机构信息

Instituto de Investigaciones Cerebrales, Universidad Veracruzana, Xalapa 91190, Mexico.

Neural Dynamics and Modulation Lab, Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

Brain Sci. 2023 Mar 24;13(4):537. doi: 10.3390/brainsci13040537.

Abstract

Parkinson's disease is currently a global public health challenge due to the rapid growth of aging populations. To understand its pathophysiology is necessary to study the functional correlation between the basal ganglia (BG) and the cerebellum, which are involved in motor control. Herein, we explored multiunit electrical activity (MUA) in the cerebellum of rats with induced Parkinsonism as a result of lesions following bilateral placement of electrodes and passing of current in the ventrolateral striatum (VLS). In one control group, the electrodes descended without electrical current, and another group was left intact in VLS. MUA was recorded in Sim B and Crus II lobes, and in the dentate nucleus (DN) during the execution of exploration behaviors (horizontal and vertical) and grooming. The lesioned and sham groups showed a decrease in MUA amplitude in the Crus II lobe compared to the intact group in all recorded behaviors. However, Sim B and DN did not express differences. Both electrical and physical insults to the VLS induced Parkinsonism, which results in less MUA in Crus II during the execution of motor behaviors. Thus, this type of Parkinsonism is associated with a decrease in the amplitude of Crus II.

摘要

由于老龄人口的快速增长,帕金森病目前是一项全球性的公共卫生挑战。要了解其病理生理学,有必要研究参与运动控制的基底神经节(BG)和小脑之间的功能相关性。在此,我们探讨了因双侧在腹外侧纹状体(VLS)放置电极并通电造成损伤而诱发帕金森病的大鼠小脑的多单位电活动(MUA)。在一个对照组中,电极下降但不通电,另一组VLS保持完整。在探索行为(水平和垂直)和梳理行为执行期间,在小脑蚓部B和 Crus II叶以及齿状核(DN)记录MUA。与完整组相比,在所有记录的行为中,损伤组和假手术组的Crus II叶MUA幅度均降低。然而,小脑蚓部B和齿状核未表现出差异。对VLS的电损伤和物理损伤均诱发了帕金森病,这导致在运动行为执行期间Crus II叶的MUA减少。因此,这种类型的帕金森病与Crus II叶幅度降低有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a84/10136692/15171e70c0bd/brainsci-13-00537-g001.jpg

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