Geodesic Model of Human Body

Weihe Wu, A. Hao, Yongtao Zhao
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引用次数: 1

Abstract

Anthropometry is widely applied to the research in skeleton extraction from surface meshes of human body. Especially the anatomical proportion can be employed as a benchmark in model segmentation and joint extraction. Unfortunately, the anatomical proportion is usually measured with the Euclidean distance, which makes it difficult to correlate it with the surface mesh. To bridge this gap, we take advantage of the property of the geodesic metrics that is invariance to rotation, translation, scaling and model pose, and propose an original geodesic model in which the length of each part of human body is measured by geodesic metrics, by which the anatomic proportions can be directly mapped to the contours of the mesh surface of human body in arbitrary pose. Combining the geodesic model with automatic extraction of feature points, we can determine the candidate scopes of joint positions and boundaries between the parts on meshes, and then refine the joint positions in the scopes using existing methods. And finally, we illustrate the utility of the geodesic model with an application to joint extraction.
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人体测地线模型
人体测量学广泛应用于从人体表面网格中提取骨骼的研究。特别是解剖比例可以作为模型分割和关节提取的基准。不幸的是,解剖比例通常是用欧几里得距离来测量的,这使得它很难与表面网格相关联。为了弥补这一缺陷,我们利用测地线度量对旋转、平移、缩放和模型姿态的不变性,提出了一种原始的测地线模型,该模型通过测地线度量来测量人体各部分的长度,通过该模型可以将人体的解剖比例直接映射到任意姿态的人体网格表面轮廓。将测地线模型与特征点自动提取相结合,确定关节位置的候选范围和网格上零件之间的边界,然后利用现有方法对范围内的关节位置进行细化。最后,我们举例说明了测地线模型在关节提取中的应用。
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