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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >Mediolateral damping of an overhead body weight support system assists stability during treadmill walking
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Mediolateral damping of an overhead body weight support system assists stability during treadmill walking

机译:架空体重支撑系统的Mediolateral阻尼在跑步机行走期间有助于稳定性

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Body weight support systems with three or more degrees of freedom (3-DoF) are permissive and safe environments that provide unloading and allow unrestricted movement in any direction. This enables training of walking and balance control at an early stage in rehabilitation. Transparent systems generate a support force vector that is near vertical at all positions in the workspace to only?minimally interfere with natural movement patterns. Patients with impaired balance, however, may benefit from additional mediolateral support that can be adjusted according to their capacity. An elegant solution for providing balance support might be by rendering viscous damping along the mediolateral axis via the software controller. Before use with patients, we evaluated if control-rendered mediolateral damping evokes the desired stability enhancement in able-bodied individuals. A transparent, cable-driven robotic body weight support system (FLOAT) was used to provide transparent body weight support with and without mediolateral damping to 21 able-bodied volunteers while walking at preferred gait velocity on a treadmill. Stability metrics reflecting resistance to small and large perturbations were derived from walking kinematics and compared between conditions and to free walking. Compared to free walking, the application of body weight support per-se resulted in gait alterations typically associated with body weight support, namely increased step length and swing phase. Frontal plane dynamic stability, measured by kinematic variability and nonlinear dynamics of the center of mass, was increased under body weight support, indicating reduced balance requirements in both damped and undamped support conditions. Adding damping to the body weight support resulted in a greater increase of frontal plane stability. Adding mediolateral damping to 3-DoF body weight support systems is an effective method of increasing frontal plane stability during walking in able-bodied participants. Building on these results, adjustable mediolateral damping could enable therapists to select combinations of unloading and stability specifically for each patient and to adapt this in a task specific manner. This could extend the impact of transparent 3-DoF body weight support systems, enabling training of gait and active balance from an early time?point onwards in the rehabilitation process for a wide range of mobility activities of daily life.
机译:具有三个或更多个自由度(3-DOF)的体重支持系统是许可和安全的环境,提供卸载并在任何方向上允许不受限制的运动。这使得能够在康复的早期阶段进行行走和平衡控制。透明系统产生支撑力载体,其在工作区中的所有位置处靠近垂直的垂直载体?尽可能地干扰自然运动模式。然而,平衡损害的患者可能会受益于可以根据其容量进行调整的额外的MediolAtheral支持。提供平衡支持的优雅解决方案可能是通过软件控制器沿着MIDIOMATERAL轴渲染粘性阻尼。在与患者一起使用之前,我们评估了控制呈现的Mediolateral Damping,唤起能够身体的稳定性的所需的稳定性增强。透明的电缆驱动的机器人体重支持系统(浮子)用于提供透明体重支持,而没有MICOILATERATED DAMPENTEL在跑步机上的优选步态速度下行走的同时提供给21个能够的志愿者。稳定性指标反映了对小型和大型扰动的抗性源自行走运动学,并在条件下比较并自由行走。与自由行走相比,体重支撑施加的每个SE导致通常与体重支持相关的步态改变,即增加的步长和摆动阶段。通过运动型变异性和质量中心的非线性动力学测量的正面平面动态稳定性,在体重支持下增加,表明阻尼和无阻尼支撑条件下的平衡要求减少。向体重支撑增加阻尼导致正面平面稳定性的增加。将Mediolateral阻尼添加到3 DOF体重支持系统是在能够身体参与者行走期间增加前平面稳定性的有效方法。构建这些结果,可调节的Mediolate Damping可以使治疗师能够为每个患者选择卸载和稳定性的组合,并以任务特定的方式调整这一点。这可能会延长透明3-DOF体重支持系统的影响,从早期时间开始训练步态和活跃余额?在康复过程中向往的日常生活活动的广泛活动。

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