首页> 外文期刊>Journal of Rehabilitation Research and Development >A three-dimensional, anatomically detailed foot model: A foundation for a finite element simulation and means of quantifying foot-bone position
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A three-dimensional, anatomically detailed foot model: A foundation for a finite element simulation and means of quantifying foot-bone position

机译:三维解剖学详细的足部模型:有限元模拟的基础和定量足骨位置的方法

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We generated an anatomically detailed, threedimensional (3D) reconstruction of a human foot from 286 computerized topographic (CT) images. For each bone, 2D crosssectional data were obtained and aligned to form a stacked image model. We calculated the inertial matrix of each bone from the stacked image model and used it to determine the principal axes. Relative angles between the principal axes of the bones were employed to describe the shape of the foot, i.e., the relationships between the bones of the foot. A 3D surface model was generated from the stacked image models and a detailed 3D mesh for each bone was created. Additionally, the representative geometry of the plantar soft tissue was obtained from the CT scans, while the geometries of the cartilage between bones were obtained from the 3D surface bone models. This model served dual purposes it formed the anatomical foundation for a future finite element model of the human foot and we used it to objectively quantify foot shape using the relationships between the principal axes of the foot bones.
机译:我们从286个计算机化地形图(CT)图像生成了人脚的解剖学详细的三维(3D)重建。对于每个骨骼,都获得2D横截面数据并对齐以形成堆叠的图像模型。我们从堆叠图像模型计算了每个骨骼的惯性矩阵,并用它来确定主轴。骨骼主轴之间的相对角度用于描述脚的形状,即脚的骨骼之间的关系。从堆叠的图像模型生成3D表面模型,并为每个骨骼创建详细的3D网格。此外,足底软组织的代表性几何形状是通过CT扫描获得的,而骨骼之间的软骨的几何形状是通过3D表面骨骼模型获得的。该模型具有双重目的,它为将来的人脚有限元模型奠定了解剖基础,并且我们使用它通过脚骨主轴之间的关系来客观地量化脚的形状。

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