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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Virtual human bone modelling by interactive sculpting, mesh morphing and force-feedback
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Virtual human bone modelling by interactive sculpting, mesh morphing and force-feedback

机译:通过互动雕刻,网格形态和力量反馈虚拟人骨模拟

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The paper deals with an investigation on the role of interactive sculpting and radial basis function (RBF) mesh morphing in the field of biomechanical computer-aided simulations. In this context, mesh morphing can be effectively used in predictive medicine workflows where a patient-specific numerical model is taken as reference to understand the physics of interest by means of simulation-driven techniques. The proposed methodology is intended for addressing the interactive geometry modification in combination with a force-feedback device and it is applied to anatomical structures. The concept is demonstrated showing a fast remodelling workflow of the human femur. The interactive process allows to steer the morphing of a template FEA model onto the patient geometry by positioning a set of landmark points. A first morphing action allows to warp the solid model according to the RBF deformation field produced by landmarks, a final projection on the target surface is performed to complete the task. The approach proven to be quick, effective and ergonomic thanks to the haptic device and the high level of interactivity. New patient specific CAE models are generated in a very short time preserving the very good quality of the computational mesh.
机译:本文涉及关于互动雕刻和径向基函数(RBF)网格在生物力学计算机辅助模拟领域的作用的调查。在这种情况下,可以在预测药物工作流程中有效地使用网格形态,其中通过模拟驱动技术参考了解感兴趣的物理学。所提出的方法旨在与力反馈装置结合地解决交互态几何修改,并且它应用于解剖结构。概念被证明显示人股骨的快速改造工作流程。交互过程允许通过定位一组地标点来转向模板FEA模型的变形到患者几何中。第一变形动作允许根据地标产生的RBF变形场经横穿固体模型,执行目标表面上的最终投影以完成任务。由于触觉装置和高水平的相互作用,这种方法已被证明是快速,有效和符合人体工程学。新的患者特异性CAE模型是在非常短的时间内保留计算网格的非常好的质量。

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