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单侧和双侧训练对大鼠运动感觉前肢皮质神经元树突分支在抓握任务中的影响。

Effects of unilateral and bilateral training in a reaching task on dendritic branching of neurons in the rat motor-sensory forelimb cortex.

作者信息

Greenough W T, Larson J R, Withers G S

出版信息

Behav Neural Biol. 1985 Sep;44(2):301-14. doi: 10.1016/s0163-1047(85)90310-3.

Abstract

Effects of motor training on a neocortical nerve cell population involved in performance of the motor task were assessed by measuring Layer V pyramidal neuron apical dendritic branching in motor-sensory forelimb cortex of rats trained to reach into a tube for food. Rats were trained to reach with the forepaw they preferred to use (group PRAC), the nonpreferred forepaw (REV), both forepaws (ALT), or neither forepaw (CONT). Across groups, hemispheres opposite trained forepaws had larger apical dendritic fields, in terms of total dendritic length, number of oblique branches from the apical shaft, and length of terminal branches. Similar, although somewhat less consistent, effects were seen when results were analyzed for between- (CONT vs ALT) and within-subject comparisons (trained vs nontrained hemispheres of REV and PRAC). This finding is compatible with the hypothesis that altered dendritic patterns, with associated synapses, are involved in storage of information from the training experience. The within-subject effects mitigate suggestions that these differences arise from generally acting hormonal or metabolic consequences of the training experience, although the possibility that these effects result from neural activity per se and are unrelated to information storage cannot be excluded.

摘要

通过测量训练大鼠前肢够取管内食物时运动感觉前肢皮质中V层锥体神经元顶树突分支情况,评估运动训练对参与运动任务执行的新皮质神经细胞群的影响。将大鼠训练用其偏好使用的前爪(PRAC组)、非偏好前爪(REV组)、双前爪(ALT组)或不使用任何前爪(CONT组)进行够取动作。在所有组中,与训练前爪相对的半球,就总的树突长度、顶轴斜分支数量和终末分支长度而言,具有更大的顶树突场。当对组间(CONT组与ALT组)和受试者内比较(REV组和PRAC组的训练半球与未训练半球)的结果进行分析时,观察到了类似但不太一致的效应。这一发现与以下假设相符,即改变的树突模式以及相关的突触参与了训练经验信息的存储。受试者内效应减轻了关于这些差异源于训练经验的一般作用的激素或代谢后果的推测,尽管不能排除这些效应是由神经活动本身导致且与信息存储无关的可能性。

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