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首页> 外文期刊>Journal of Neurophysiology >Sensorimotor integration of vision and proprioception for obstacle crossing in ambulatory individuals with spinal cord injury
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Sensorimotor integration of vision and proprioception for obstacle crossing in ambulatory individuals with spinal cord injury

机译:传感器在脊髓损伤中的障碍物障碍物障碍物的整合

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摘要

Skilled walking, such as obstacle crossing, is an essential component of functional mobility. Sensorimotor integration of visual and proprioceptive inputs is important for successful obstacle crossing. The objective of this study was to understand how proprioceptive deficits affect obstacle-crossing strategies when controlling for variations in motor deficits in ambulatory individuals with spinal cord injury (SCI). Fifteen ambulatory individuals with SCI and 15 able-bodied controls were asked to step over an obstacle scaled to their motor abilities under full and obstructed vision conditions. An eye tracker was used to determine gaze behaviour and motion capture analysis was used to determine toe kinematics relative to the obstacle. Combined, bilateral hip and knee proprioceptive sense (joint position sense and movement detection sense) was assessed using the Lokomat and customized software controls. Combined, bilateral hip and knee proprioceptive sense in subjects with SCI varied and was significantly different from able-bodied subjects. Subjects with greater proprioceptive deficits stepped higher over the obstacle with their lead and trail limbs in the obstructed vision condition compared with full vision. Subjects with SCI also glanced at the obstacle more frequently and with longer fixation times compared with controls, but this was not related to proprioceptive sense. This study indicates that ambulatory individuals with SCI rely more heavily on vision to cross obstacles and show impairments in key gait parameters required for successful obstacle crossing. Our data suggest that proprioceptive deficits need to be considered in rehabilitation programs aimed at improving functional mobility in ambulatory individuals with SCI.
机译:熟练的行走,例如障碍交叉,是功能迁移率的必要组分。 Sensorimotor视觉和预型输入的集成对于成功的障碍交叉来说是重要的。本研究的目的是了解如何在控制具有脊髓损伤(SCI)的动力缺陷的电机缺陷的变化时如何影响障碍横穿策略。提出了带有SCI和15个能够体内控制的十五个动态个人,介绍了在完全障碍的视觉条件下扩展到其电动机能力的障碍物。使用眼睛跟踪器来确定凝视行为,使用运动捕获分析来确定相对于障碍物的脚趾运动学。使用Lokomat和定制的软件控制,评估合并,双侧髋关节和膝关节脑卒中感觉(联合位置感觉和运动检测意义)。合并,双侧髋关节和膝关节血管活性意义与SCI的受试者变化,与能够的体内受试者显着不同。具有更高的预型缺陷的受试者在障碍物上越高,在阻塞的视觉条件下,与完全视觉相比,在阻塞的视觉条件下脱肢。与SCI的受试者也更频繁地瞥了一眼障碍物,与对照相比更长的固定时间,但这与敌意感受无关。本研究表明,SCI的守护人员更依赖于跨越障碍物的视觉,并在成功障碍交叉所需的关键步态参数中显示损伤。我们的数据表明,需要在恢复方案中考虑恢复计划,旨在改善与SCI的动态个人功能流动性的康复计划。

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