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首页> 外文期刊>Gait & posture >Balancing sensory inputs: Sensory reweighting of ankle proprioception and vision during a bipedal posture task
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Balancing sensory inputs: Sensory reweighting of ankle proprioception and vision during a bipedal posture task

机译:平衡感官输入:在双模态任务中的脚踝预防和视觉的感官重新传递

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During multisensory integration, it has been proposed that the central nervous system (CNS) assigns a weight to each sensory input through a process called sensory reweighting. The outcome of this integration process is a single percept that is used to control posture. The main objective of this study was to determine the interaction between ankle proprioception and vision during sensory integration when the two inputs provide conflicting sensory information pertaining to direction of body sway. Sensory conflict was created by using bilateral Achilles tendon vibration and contracting visual flow and produced body sway in opposing directions when applied independently. Vibration was applied at 80 Hz, 1 mm amplitude and the visual flow consisted of a virtual reality scene with concentric rings retreating at 3m/s. Body sway elicited by the stimuli individually and in combination was evaluated in 10 healthy young adults by analyzing center of pressure (COP) displacement and lower limb kinematics. The magnitude of COP displacement produced when vibration and visual flow were combined was found to be lesser than the algebraic sum of COP displacement produced by the stimuli when applied individually. This suggests that multisensory integration is not merely an algebraic summation of individual cues. Instead the observed response might be a result of a weighted combination process with the weight attached to each cue being directly proportional to the relative reliability of the cues. The moderating effect of visual flow on postural instability produced by vibration points to the potential use of controlled visual flow for balance training. (C) 2016 Published by Elsevier B.V.
机译:在多福管集成期间,已经提出了中枢神经系统(CNS)通过称为感官重新传递的过程为每个感官输入分配给每个感官输入。该集成过程的结果是用于控制姿势的单个感知。本研究的主要目的是确定当两个输入提供与身体摇摆方向有关的冲突的感官信息时,在感觉积分期间确定踝脑预见和视觉之间的相互作用。通过使用双边阿基里斯肌腱振动和收缩在独立施加时,通过使用双边阿基里斯肌腱振动和承包在相反的方向上产生的身体摇摆。振动以80Hz,1mm幅度施加,并且视觉流动由虚拟现实场景组成,具有在3m / s的同心环上撤回。通过分析压力中心(COP)位移和下肢运动学的10个健康的年轻成年人,在10名健康的年轻成人中评估由刺激和组合引发的身体摇摆。当组合振动和视觉流动时产生的警察位移的大小比单独施用的刺激产生的警察位移的代数较小。这表明多义集成不仅仅是个人线索的代数总结。相反,观察到的响应可能是加权组合过程的结果,其重量附加到每个提示与提示的相对可靠性直接成比例。视觉流动对由振动产生的姿势不稳定性的调节效应,指向平衡训练的受控视觉流动的潜在使用。 (c)2016年由Elsevier B.V发布。

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