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Hip Joint Contact Force in the Emu (Dromaius novaehollandiae) during Normal Level Walking

机译:正常水平步行过程中the(Dromaius novaehollandiae)中的髋关节接触力

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摘要

The emu is a large, (bipedal) flightless bird that potentially can be used to study various orthopaedic disorders in which load protection of the experimental limb is a limitation of quadrupedal models. An anatomy-based analysis of normal emu walking gait was undertaken to determine hip contact forces for comparison with human data. Kinematic and kinetic data captured for two laboratory-habituated emus were used to drive the model. Muscle attachment data were obtained by dissection, and bony geometries were obtained by CT scan. Inverse dynamics calculations at all major lower-limb joints were used in conjunction with optimization of muscle forces to determine hip contact forces. Like human walking gait, emu ground reaction forces showed a bimodal distribution over the course of the stance phase. Two-bird averaged maximum hip contact force was approximately 5.5 times body weight, directed nominally axially along the femur. This value is only modestly larger than optimization-based hip contact forces reported in literature for humans. The interspecies similarity in hip contact forces makes the emu a biomechanically attractive animal in which to model loading-dependent human orthopaedic hip disorders.
机译:mu是一种大型(双足)不会飞的鸟,有可能被用于研究各种骨科疾病,其中实验肢的负荷保护是四足动物模型的局限性。对正常的e行走步态进行了基于解剖的分析,以确定髋部接触力以与人类数据进行比较。捕获的两个实验室惯用动眼的运动学和动力学数据用于驱动模型。通过解剖获得肌肉附着数据,并通过CT扫描获得骨几何形状。在所有主要下肢关节的逆动力学计算中,结合了肌肉力的优化来确定髋部接触力。像人的步态一样,e的地面反作用力在站立阶段的过程中表现出双峰分布。两只鸟的平均最大髋部接触力约为体重的5.5倍,名义上沿股骨轴向指向。该值仅略大于文献中针对人类报道的基于优化的髋部接触力。髋关节接触力的种间相似性使the成为具有生物力学吸引力的动物,在其中可以模拟依赖负荷的人类骨科髋关节疾病。

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