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3D shape reconstruction from relief calculation: application to human body

机译:通过浮雕计算进行3D形状重建:应用于人体

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In experimental mechanics especially in experimental biomechanics, evaluating a volume object is a major research axe. In mechanics, 3D reconstruction is made from different optical methods like stereovision [1] or structured light methods. In biomechanics, it is achieved from tomography techniques or from models which divide human body into 15, 16 and 17 polyarticulated solids [2][3]. Those solids are simple volumes (cylinders, spheres). In this review, a method of 3D reconstruction from two calculated relief is proposed. Then, the geometric parameters are extracted using an algorithm and compared to the real dimension of various objects. The first test consist in studying the feasibility of the 3D reconstruction using a real upper arm and a mannequin. In a second test an analysis of a sphere and two cylinders which have different dimensions is performed. The aim of those last tests is to evaluate the performances of the proposed method, to show distortion volume problems and to propose solutions.
机译:在实验力学中,特别是在实验生物力学中,评估体积对象是主要的研究重点。在机械方面,3D重建是通过不同的光学方法(如立体视觉[1]或结构化的光方法)进行的。在生物力学中,它是通过层析成像技术或将人体分为15种,16种和17种多关节固体的模型来实现的[2] [3]。这些固体是简单的体积(圆柱体,球体)。在这篇综述中,提出了一种从两个计算出的浮雕进行3D重建的方法。然后,使用算法提取几何参数,并将其与各种对象的实际尺寸进行比较。第一次测试包括研究使用真实上臂和人体模型进行3D重建的可行性。在第二项测试中,对球体和具有不同尺寸的两个圆柱进行了分析。这些最后测试的目的是评估所提出方法的性能,显示失真量问题并提出解决方案。

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