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运动学习可快速增加大鼠小脑的突触生成和星形胶质细胞结构的可塑性。

Motor learning rapidly increases synaptogenesis and astrocytic structural plasticity in the rat cerebellum.

机构信息

Department of Psychology, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, United States.

Department of Psychology, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, United States.

出版信息

Neurobiol Learn Mem. 2021 Jan;177:107339. doi: 10.1016/j.nlm.2020.107339. Epub 2020 Nov 10.

DOI:10.1016/j.nlm.2020.107339
PMID:33186744
Abstract

Motor-skill learning is associated with cerebellar synaptogenesis and astrocytic hypertrophy, but most of these assessments of cerebellar ultrastructure have been completed after one month of training. After one month of training, the motor-skills necessary to complete these tasks have been acquired for weeks. This experiment aimed to characterize cerebellar ultrastructure during the acquisition phase of motor-skill learning, at a point when performance is still improving. Male and female rats trained for four days on the acrobatic motor learning task, which involved traversing challenging obstacles such as narrow beams and ladders. Concurrently, rats in the motor control condition walked a flat alleyway requiring no skilled movements. After training was complete, all rats were euthanized, and tissue was prepared for electron microscopy. Unbiased stereology techniques were used to assess synaptic and astrocytic plasticity. Results indicated that during the initial days of training, female rats made fewer errors and had shorter latencies on the acrobatic course compared to male rats. However, there were no sex differences in cerebellar ultrastructure. Male and female rats that completed four days of acrobatic training displayed an increase in the density of parallel fiber-Purkinje cell synapses per Purkinje cell and an increase in astrocytic volume, relative to rats in the motor control group.

摘要

运动技能学习与小脑突触发生和星形胶质细胞肥大有关,但大多数这些小脑超微结构的评估都是在训练一个月后完成的。经过一个月的训练,完成这些任务所需的运动技能已经被掌握了数周。本实验旨在描述运动技能学习获得阶段的小脑超微结构,此时表现仍在提高。雄性和雌性大鼠在杂技运动学习任务上接受了四天的训练,该任务涉及穿越狭窄的横梁和梯子等具有挑战性的障碍物。同时,运动对照组的大鼠在不需要熟练动作的平坦小路上行走。训练结束后,所有大鼠被安乐死,组织准备进行电子显微镜检查。使用无偏立体学技术评估突触和星形胶质细胞的可塑性。结果表明,在训练的最初几天,雌性大鼠在杂技课程上的错误较少,潜伏期也比雄性大鼠短。然而,在小脑超微结构方面没有性别差异。与运动对照组相比,完成四天杂技训练的雄性和雌性大鼠的浦肯野细胞平行纤维-浦肯野细胞突触密度和星形胶质细胞体积增加。

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Motor learning rapidly increases synaptogenesis and astrocytic structural plasticity in the rat cerebellum.运动学习可快速增加大鼠小脑的突触生成和星形胶质细胞结构的可塑性。
Neurobiol Learn Mem. 2021 Jan;177:107339. doi: 10.1016/j.nlm.2020.107339. Epub 2020 Nov 10.
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Cortical synaptogenesis and motor map reorganization occur during late, but not early, phase of motor skill learning.皮质突触形成和运动图谱重组发生在运动技能学习的晚期阶段,而非早期阶段。
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