首页> 外文期刊>Journal of Korean medical science >Early motor balance and coordination training increased synaptophysin in subcortical regions of the ischemic rat brain.
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Early motor balance and coordination training increased synaptophysin in subcortical regions of the ischemic rat brain.

机译:早期运动平衡和协调训练增加了缺血大鼠大脑皮层下区域的突触素。

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摘要

The aim of this study was to evaluate the effect of early motor balance and coordination training on functional recovery and brain plasticity in an ischemic rat stroke model, compared with simple locomotor exercise. Adult male Sprague-Dawley rats with cortical infarcts were trained under one of four conditions: nontrained control, treadmill training, motor training on the Rota-rod, or both Rota-rod and treadmill training. All types of training were performed from post-operation day 1 to 14. Neurological and behavioral performance was evaluated by Menzies' scale, the prehensile test, and the limb placement test, at post-operation day 1, 7, and 14. Both Rota-rod and treadmill training increased the expression of synaptophysin in subcortical regions of the ischemic hemisphere including the hippocampus, dentate gyrus, and thalamus, but did not affect levels of brain-derived neurotrophic factor or tyrosin kinase receptor B. The Rota-rod training also improved Menzies' scale and limb placement test scores, whereas the simple treadmill training did neither. The control group showed significant change only in Menzies' scale score. This study suggests that early motor balance and coordination training may induce plastic changes in subcortical regions of the ischemic hemisphere after stroke accompanied with the recovery of sensorimotor performance.
机译:这项研究的目的是评估缺血性中风模型中与简单运动相比,早期运动平衡和协调训练对功能恢复和脑可塑性的影响。在以下四种条件之一下训练成年雄性Sprague-Dawley大鼠皮层梗死:非训练性对照,跑步机训练,在Rota-rod上进行运动训练,或在Rota-rod和跑步机上进行训练。在术后第1至14天进行所有类型的训练。在术后第1、7和14天,通过孟席斯量表,握力测试和肢体放置测试评估神经和行为表现。棒和跑步机训练增加了缺血半球皮层下区域(包括海马,齿状回和丘脑)的突触素的表达,但没有影响脑源性神经营养因子或酪氨酸激酶受体B的水平。 Menzies的量表和肢体放置测验分数得到了改善,而简单的跑步机训练却没有。对照组仅在孟席斯量表评分上显示出显着变化。这项研究表明中风后早期运动平衡和协调训练可能会诱发缺血半球皮层下区域的塑性变化,并伴有感觉运动功能的恢复。

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