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Initial value diffeomorphic landmark matching and its application shape statistics

机译:初值微分地标匹配及其应用形状统计

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Summary form only given. In this work we study the diffeomorphic landmark matching problem central to the emerging field of computational anatomy (2002, Annual Review of Biomedical Engineering) for the study of finite dimensional face orbits. We present a new approach based on recent derivation of a conservation of momentum law for the geodesics of diffeomorphic flow. Once a template is fixed, the space of initial momentum - and Nd finite dimensional space for N d-dimensional landmarks - becomes an appropriate space for studying shape via geodesic flow since the flow at any point along the geodesic is completely determined by the momentum at the origin. We solve for the extremal paths (geodesics) of the kinetic energy by computing its variation with respect to the initial momentum and by applying a gradient descent scheme. Statistical analysis of a landmarked database of 100 faces is presented and we suggest a finite dimensional diffeomorphic active shape model.
机译:仅提供摘要表格。在这项工作中,我们研究了计算解剖学新兴领域(2002年,《生物医学工程》年度回顾)中心的微分形地标匹配问题,以研究有限尺寸的人脸轨道。我们基于微分流测地线的动量守恒定律的最新推导提出了一种新方法。固定模板后,初始动量的空间和N d维地标的Nd有限维空间将成为通过测地线流动研究形状的合适空间,因为沿测地线的任何点处的流动都完全由测地线的动量决定。起源。我们通过计算动能相对于初始动量的变化并应用梯度下降方案来求解动能的极值路径(大地测量学)。提出了统计分析的100个面孔的地标数据库,我们建议一个有限维的微变活动形状模型。

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