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Estimation of Body Segment Parameters Using Dual Energy Absorptiometry and 3-D Exterior Geometry

机译:双能吸收测量和3-D外几何的体段参数估计

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Body segment parameters (BSP) are essential inputs in the kinetic analysis of human motion. These data include mass, center of mass and moments of inertia, and are usually obtained from population-specific predictive equations. Several limitations remained with the use of cadaveric measurement. These include limited sample size, as well as discrepancies in age and morphology. The limitations motivated the development of direct BSP measurements on living subjects. However, other limitations such as exposure to radiation, high cost and sheer lack of facilities that are readily available evolved. In addition, some methods provide only two-dimensional (2-D) measurements while others require intensive tomographic images for three-dimensional (3-D) reconstruction. This article proposes a novel technique for reconstructing subject-specific 3-D body mass distribution using from Dual Energy Absorptiometry X-ray imaging and 3-D exterior geometry. The accuracy of our method was assessed by calculating percent error between the criterion based on total body mass and our proposed total body mass measurements (TBM). We found less than one percent error between the criterion and our TBM measurements for subjects of four different body types: endormorph, mesomorph, ectomorph and central. We found significant differences between our proposed method as compared to cadaver-based and living-based models for segment mass (SM) at the hand; center of mass (CM) at the thigh, shank, foot, head and neck, trunk, upper arm, forearm and hand; and moments of inertia at the hand, shank, foot and trunk. Extensions of the research could further examined the influence of other BSP measurements derived from our proposed method and the four selected estimation models, as well as their impact on the inverse dynamics solutions in human motion.
机译:体段参数(BSP)是人类运动动力学分析中的基本输入。这些数据包括质量,质量骨骼和惯性矩,通常由人群特异性预测方程获得。使用尸体测量仍有若干限制。这些包括有限的样本大小,以及年龄和形态的差异。局限性激励了直接BSP测量的生活科目。然而,其他限制,例如暴露于辐射,高成本和纯粹缺乏易于提供的设施。另外,一些方法仅提供二维(2-D)测量,而其他方法需要其他需要用于三维(3-D)重建的密集断层图像。本文提出了一种用于使用双能吸收率X射线成像和3-D外部几何来重建特定于特定于特定的3-D体块分配的新技术。通过计算基于总体质量的标准与我们所提出的总体质量测量(TBM)计算的误差来评估我们的方法的准确性。我们在标准和我们的TBM测量中发现了4种不同体型的主题的误差少于1%的误差:厌恶,中素,ectomorph和中央。我们在手中与基于尸体和基于生活的模型相比,我们建议的方法之间发现了显着的差异;大腿,柄,脚,头部和颈部,躯干,上臂,前臂和手柄中心(cm)中心;和惯性的惯性,柄,脚和躯干。该研究的扩展可以进一步研究来自我们所提出的方法和四种选定估算模型的其他BSP测量的影响,以及它们对人类运动中逆动力学解决方案的影响。

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