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The sensorimotor effects of a lower limb proprioception training intervention in individuals with a spinal cord injury

机译:脊髓损伤个体较低的肢体预血基训练干预的感觉运动效应

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Proprioception is critical for movement control. After a spinal cord injury (SCI), individuals not only experience paralysis but may also experience proprioceptive deficits, further confounding motor recovery. The objective of this study was to test the effects of a robotic-based proprioception training protocol on lower limb proprioceptive sense in people with incomplete SCI. A secondary objective was to assess whether the effects of training transferred to a precision stepping task in people with motor-incomplete SCI. Participants with chronic incomplete SCI and able-bodied controls underwent a 2-day proprioceptive training protocol using the Lokomat robotic exoskeleton. The training involved positioning the test leg to various positions and participants were asked to report whether they felt their heel position (end-point position) was higher or lower compared with a reference position. Feedback was provided after each trial to help participants learn strategies that could help them discern different positions of their foot. Changes in end-point position as well as knee joint position sense were assessed pre- and posttraining. We also assessed the effects of proprioception training on the performance of a precision stepping task in people with motor-incomplete SCI. Following training, there were significant improvements in end-point and knee joint position sense in both groups. The magnitude of improvement was related to pretraining (baseline) proprioceptive sense, indicating that those who initially had better lower limb position sense showed greater changes. Participants also showed improvements in performance of a precision stepping task.
机译:预防型对于运动控制至关重要。在脊髓损伤(SCI)后,个人不仅经历瘫痪,而且还可能会经历有遗传缺陷,进一步混杂的电动机恢复。本研究的目的是测试机器人型的预见训练协议对不完全SCI的人的较低肢体的脑膜训练感的影响。二级目标是评估培训是否转移到电动机不完全SCI人员精确的步进任务。慢性不完全SCI和能干控制的参与者使用Lokomat机器人外骨骼进行了为期2天的预购培训协议。涉及将测试腿定位到各种职位和参与者的培训报告他们是否觉得它们的脚后跟位置(终点位置)与参考位置相比较高或更低。在每次审判后提供反馈,以帮助参与者学习可以帮助他们辨别他们脚的不同位置的策略。评估终点位置的变化以及膝关节位置意义的预先接受。我们还评估了先例对电机 - 不完整SCI人员精密步进任务表现的影响。在培训之后,两组终点和膝关节位置感应有显着改善。改善的程度与预先威胁(基线)的普罗基罗对感知有关,表明最初具有更好的下肢位置感知的人表现出更大的变化。参与者还显示出改进精确步进任务的性能。

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