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A three-dimensional finite element model of the human ankle: development and preliminary application to axial impulsive loading

机译:人踝的三维有限元模型:轴向脉冲载荷的开发与初步应用

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This work describes the development of a three-dimensional finite element model of the human ankle/foot complex. This model depicts the primary elements of a 50th percentile human ankle. It includes all the bones of the foot up to the distal tibia/fibula. It also contains the soft tissues of the plantar surface of the foot along with most of the ankle joint ligaments and retinacula. To calibrate the model, a plate with various initial velocities of 5, 7.5 and 10 mph is impacted at the plantar surface of the foot. The model is strictly stabilized by the intrinsic anatomical geometry and the ligamentous structure. It demonstrates to a great extent its capacity to replicate the dynamic response. Global responses of output acceleration and force time histories are obtained and compared reasonably well with experimental data. The ankle model is viewed as a first step in a complicated process leading towards the ability to assess hard and soft tissue injury and towards the development of an enhanced ankle injury criterion.
机译:这部作品描述了人类的踝/脚复杂的三维有限元模型的开发。该模型示出了第50个百分位的人体脚踝的主要元素。它包括脚到胫骨远端/腓骨的所有骨骼。它还包含足底表面的大部分踝关节韧带和retinacula沿软组织。校准模型,用5,7.5和10英里每小时的各种初始速度在脚的足底表面受到冲击的板。该模型是严格的内在解剖几何形状和韧带结构稳定。它表明,在很大程度上它复制的动态响应能力。输出加速度和力时间历程的全球反应得到比较合理地与实验数据。脚踝模型被视为在一个复杂的过程通向评估硬和软组织损伤的能力,并且向增强踝伤标准的发展的第一步。

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