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首页> 外文期刊>Journal of Biomechanics >The effects of wrist motion and hand orientation on muscle forces: A physiologic wrist simulator study
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The effects of wrist motion and hand orientation on muscle forces: A physiologic wrist simulator study

机译:手腕运动和手动方向对肌肉力的影响:生理手腕模拟器研究

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Although the orientations of the hand and forearm vary for different wrist rehabilitation protocols, their effect on muscle forces has not been quantified. Physiologic simulators enable a biomechanical evaluation of the joint by recreating functional motions in cadaveric specimens. Control strategies used to actuate joints in physiologic simulators usually employ position or force feedback alone to achieve optimum load distribution across the muscles. After successful tests on a phantom limb, unique combinations of position and force feedback - hybrid control and cascade control - were used to simulate multiple cyclic wrist motions of flexion-extension, radioulnar deviation, dart thrower's motion, and circumduction using six muscles in ten cadaveric specimens. Low kinematic errors and coefficients of variation of muscle forces were observed for planar and complex wrist motions using both novel control strategies. The effect of gravity was most pronounced when the hand was in the horizontal orientation, resulting in higher extensor forces (p < 0.017) and higher out-of-plane kinematic errors (p < 0.007), as compared to the vertically upward or downward orientations. Muscle forces were also affected by the direction of rotation during circumduction. The peak force of flexor carpi radialis was higher in clockwise circumduction (p = 0.017), while that of flexor carpi ulnaris was higher in anticlockwise circumduction (p = 0.013). Thus, the physiologic wrist simulator accurately replicated cyclic planar and complex motions in cadaveric specimens. Moreover, the dependence of muscle forces on the hand orientation and the direction of circumduction could be vital in the specification of such parameters during wrist rehabilitation. (C) 2017 The Author(s). Published by Elsevier Ltd.
机译:虽然手和前臂的方向因不同的手腕康复方案而异,但它们对肌肉力的影响尚未被量化。通过在尸体标本中重建功能动作,生理模拟器能够对关节进行生物力学评估。用于在生理模拟器中行动关节的控制策略通常只采用单独的位置或力反馈,以实现肌肉的最佳负载分布。在成功测试Phantom肢体后,使用六个尸体的弯曲延伸,RadioulnAR偏差,飞镖运动的多个循环腕部动作,以及在十个尸体中使用六个肌肉来模拟多循环手腕动作的独特组合 - 混合控制和级联控制 - 使用六个肌肉标本。使用新的控制策略,观察到平面和复杂的腕部运动的低运动误差和肌肉变化系数。当手在水平方向上时,重力最明显的效果,导致较高的伸点力(P <0.017)和更高的外平面运动误差(P <0.007),与垂直向上或向下取向相比。肌肉力量也受到横向期间旋转方向的影响。屈肌的峰值力在顺时针横向上较高(p = 0.017),而逆锁定横向的屈肌Carpi ulnaris的峰值力较高(p = 0.013)。因此,生理腕部模拟器精确地复制尸体平面和尸体样品中的复杂运动。此外,肌肉力对手动取向的依赖性和横向方向在手腕康复期间的这种参数的规范中可能是至关重要的。 (c)2017年作者。 elsevier有限公司出版

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