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Deficits in memory-guided limb movements impair obstacle avoidance locomotion in Alzheimers disease mouse model

机译:记忆引导的肢体运动不足会损害阿尔茨海默氏病小鼠模型的避障运动

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摘要

Memory function deficits induced by Alzheimer's disease (AD) are believed to be one of the causes of an increased risk of tripping in patients. Working memory contributes to accurate stepping over obstacles during locomotion, and AD-induced deficits of this memory function may lead to an increased risk of contact with obstacles. We used the triple transgenic (3xTg) mice to examine the effects of memory deficits in terms of tripping and contact with obstacles. We found that the frequency of contact of the hindlimbs during an obstacle avoidance task increased significantly in 10–13 month-old 3xTg (Old-3xTg) mice compared with control mice. However, no changes in limb kinematics during unobstructed locomotion or successful obstacle avoidance locomotion were observed in the Old-3xTg mice. Furthermore, we found that memory-based movements in stepping over an obstacle were impaired in these mice. Our findings suggest that working memory deficits as a result of AD are associated with an increased risk of tripping during locomotion.
机译:据信由阿尔茨海默氏病(AD)引起的记忆功能障碍是导致患者绊倒风险增加的原因之一。工作记忆有助于在运动过程中准确越过障碍物,AD引起的这种记忆功能不足可能会增加与障碍物接触的风险。我们使用三重转基因(3xTg)小鼠检查了绊倒和接触障碍物的记忆缺陷的影响。我们发现,与对照小鼠相比,在10-13个月大的3xTg(Old-3xTg)小鼠中,在避障任务中后肢的接触频率显着增加。但是,在Old-3xTg小鼠中,未观察到运动畅通或成功避开障碍物时肢体运动学没有变化。此外,我们发现在这些小鼠中,跨过障碍物的基于记忆的运动受到了损害。我们的发现表明,AD导致的工作记忆缺陷与运动过程中绊倒的风险增加有关。

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