首页> 外文会议>ASME biennial conference on engineering systems design and analysis >EFFICIENCY OF KNEE BRACES: A BIOMECHANICAL APPROACH BASED ON COMPUTATIONAL MODELING
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EFFICIENCY OF KNEE BRACES: A BIOMECHANICAL APPROACH BASED ON COMPUTATIONAL MODELING

机译:括号的效率:基于计算模型的生物力学方法

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Knee orthotic devices are widely proposed by physicians and medical practitioners for preventive or therapeutic objectives in relation with their effects, usually known as to stabilize joint or restrict ranges of motion. The objectives of this work are to characterize the mechanical performance of knee orthoses using a Finite Element Model of a braced human leg. The interface properties of the model are calibrated against experimental data measured by full-field measurements of 3D displacement over the surface of a patient's leg. The results show that the mechanical action of knee braces is essentially limited by skin/fabric and skin/muscles sliding. Finally, the model leads to a better understanding of the knee/brace interaction, and of the role of the brace components on the stability of the injured knee. Thanks to this computational tool, novel brace designs can be tested and evaluated for an optimal mechanical efficiency of the devices.
机译:膝关节矫正装置已被医生和医学从业者广泛提出以用于与其效果有关的预防或治疗目的,通常被称为稳定关节或限制运动范围。这项工作的目的是使用支撑人的腿的有限元模型来表征膝盖矫形器的机械性能。针对通过在患者腿部表面上进行3D位移的全场测量而测得的实验数据,对模型的界面属性进行了校准。结果表明,膝盖支架的机械作用基本上受皮肤/织物和皮肤/肌肉滑动的限制。最后,该模型可以更好地理解膝盖/支撑物之间的相互作用,以及支撑组件对受伤的膝盖的稳定性的作用。借助此计算工具,可以测试和评估新颖的支架设计,以实现设备的最佳机械效率。

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