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The effect of haptic interaction between balance assessment robot and pelvis on muscle activation of leg muscles

机译:平衡评估机器人与骨盆之间的触觉交互作用对腿部肌肉激活的影响

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Admittance control is considered as a promising paradigm in rehabilitation that provides us with means to establish well controlled and adjustable interaction and cooperation between rehabilitation devices and patients. Recently we developed balance assessment robot (BAR) for studying postural responses during walking as well as for pelvis manipulation during walking that implements admittance control as a mean of interaction with user. In this study we evaluated the characteristics of transparent haptic interaction and investigated whether transparent haptic interaction induces adaptations in muscle activation patterns with respect to free walking. In one neurologically intact individual we measured interaction forces, ground reaction forces and center of pressure as well as EMG of selected leg muscles while walking free and while walking with BAR. Results show that the amplitude of interaction forces in transparent mode of operation remained below levels that could have imposed considerable adjustments in muscle activation patterns of leg muscles.
机译:导纳控制被认为是康复中的一个有希望的范例,它为我们提供了在康复设备和患者之间建立可控和可调节的交互与合作的手段。最近,我们开发了平衡评估机器人(BAR),用于研究步行过程中的姿势反应以及步行过程中的骨盆操纵,该工具将导纳控制作为与用户互动的一种手段。在这项研究中,我们评估了透明触觉相互作用的特征,并研究了透明触觉相互作用是否诱发了关于自由行走的肌肉激活模式的适应。在一个神经完整的个体中,我们测量了自由行走和与BAR行走时的相互作用力,地面反作用力,压力中心以及选定腿部肌肉的EMG。结果表明,在透明操作模式下,相互作用力的幅度仍低于可以对腿部肌肉的激活模式进行较大调整的水平。

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