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首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >Quantitative and qualitative impairments in skilled reaching in the mouse (Mus musculus) after a focal motor cortex stroke.
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Quantitative and qualitative impairments in skilled reaching in the mouse (Mus musculus) after a focal motor cortex stroke.

机译:局灶性运动皮层中风后小鼠(小家鼠)熟练触及的数量和质量上的损伤。

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BACKGROUND AND PURPOSE: Skilled reaching movements are an important aspect of human motor behavior but are impaired after motor system stroke. The purpose of this study was to document skilled movements in mice before and after a focal motor cortex stroke for the purpose of developing a mouse model of human stroke. METHODS: Male C57/BL6 mice were trained to reach with a forelimb for food pellets and then given a motor cortex stroke, induced by pial stripping, contralateral to their preferred reaching limb. Reaching success and the movements used in reaching were analyzed by frame-by-frame inspection of presurgical and postsurgical video records. RESULTS: Reaching success was severely impaired after the stroke. Improvement in success over 2 postsurgical weeks was moderate. Analysis of 10 movement components comprising reaches pre- and postsurgically indicated that most of the rotatory movements of the limb used for aiming, advancing, pronating, and supinating the paw were impaired. When successful reaches did occur, body movements that compensated for the impairments in limb rotatory movements aided them. CONCLUSIONS: The results indicate that skilled reaching in the mouse is impaired by focal motor cortex stroke and they suggest that the mouse, and the skilled reaching task, provides an excellent model for studying impairments, compensation, and recovery after motor system stroke.
机译:背景和目的:熟练的伸手动作是人类运动行为的重要方面,但在运动系统中风后会受到损害。这项研究的目的是记录局灶性运动皮质卒中之前和之后小鼠的熟练运动,以建立人类中风的小鼠模型。方法:训练雄性C57 / BL6小鼠前肢以获取食物颗粒,然后通过剥皮诱导其运动皮层中风,偏向其首选伸手的四肢。通过逐帧检查术前和术后视频记录,分析了达到的成功率和伸手所用的动作。结果:中风后严重影响到成功。术后2周的成功率改善中等。对包括手术前和手术后触及的10个运动成分的分析表明,用于瞄准,前进,俯卧和仰卧爪子的肢体大多数旋转运动均受到损害。当成功到达时,弥补肢体旋转运动障碍的身体运动对他们有帮助。结论:结果表明,局灶性运动皮层中风会损害熟练的小鼠触及,并且表明该小鼠以及熟练的触及任务为研究运动系统中风后的损伤,补偿和恢复提供了极好的模型。

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