利用不同组织结构组成的物理参数进行变形的方法

Ana Cláudia Melo Tiessi Gomes de Oliveira, R. Tori, J. Bernardes, Rafael S. Torres, Wyllian Brito, Fátima L. S. Nunes
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引用次数: 1

摘要

为了达到模拟变形过程中组织物理行为所需的真实感,允许使用物理参数的方法是最广泛使用的。本文提出了一种通过多层组织模拟人体器官三维物体变形的方法,该方法利用以下物理参数:弹性模量、厚度和密度。层数和物理参数的分配可以根据人体组成的不同组织和要模拟的行为来设定。因此,可以在可接受的计算成本下实现视觉真实感,逼真的触觉和实时交互。对于医疗过程的模拟,需要视觉真实感和触觉技术,以便为用户提供类似于真实过程中发现的感觉。实验选择的器官是乳房,所获得的与变形的物理行为有关的结果在视觉真实性和触觉方面是可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deformation Method Using Physical Parameters Composed of Different Tissue Structures
In order to achieve the realism required in simulating the physical behavior of tissues during deformation, the methods which allow the use of physical parameters are the most widely employed. This paper presents a method of simulating the deformation of three-dimensional objects that represent human organs through multiple layers of tissue, which utilizes the following physical parameters: modulus of elasticity, thickness and density. The number of layers and the allocation of physical parameters can be set according to the different tissues that make up the human body and the behavior to be simulated. Thus, it is possible to achieve visual realism, realistic haptics and real-time interaction, with acceptable computational cost. For the simulation of medical procedures, both visual realism and haptic technology are required in order to provide the user with sensations similar to those found in real procedures. The organ chosen for the experiments was the breast, and the results obtained in relation to the physical behavior of deformation were acceptable in relation to visual realism and haptics.
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