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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >A Hyperelastic Finite-Element Model of Human Skin for Interactive Real-Time Surgical Simulation
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A Hyperelastic Finite-Element Model of Human Skin for Interactive Real-Time Surgical Simulation

机译:交互式皮肤实时仿真的人体皮肤超弹性有限元模型

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摘要

A finite-element (FE) model of human skin is proposed for future use in an interactive real-time surgical simulation to teach surgeons procedures, such as facial reconstruction using skin-flap repair. For this procedure, skin is cut into flaps that are stretched to cover openings in the face. Thus, the model must recreate the visual, haptic, and force feedback expected by the surgeon. To develop the FE model, a series of in vitro experiments were conducted on samples of human skin, subjected to uniaxial and planar tensile straining. Reduced polynomial hyperelastic (HE) materials were found to fit many of the samples’ stress–strain data well. Finally, an explicit dynamic FE mesh was developed based on the fitted HE material models. A total Lagrangian formulation with the half-step central difference method was employed to integrate the dynamic equation of motion of the mesh. The mesh was integrated into two versions of a real-time skin simulator: a single-threaded version running on a computer’s main central processing unit and a multithreaded version running on the computer’s graphics card. The latter was achieved by exploiting recent advances in programmable graphics technology.
机译:提出了人类皮肤的有限元(FE)模型,以供将来在交互式实时外科手术模拟中使用,以教给外科医生操作程序,例如使用皮瓣修复术进行面部重建。在此过程中,将皮肤切成片状,将其伸展以遮盖脸部开口。因此,模型必须重新创建外科医生期望的视觉,触觉和力反馈。为了开发有限元模型,对人体皮肤样品进行了一系列体外实验,这些样品经受了单轴和平面拉伸应变。简化的多项式超弹性(HE)材料被很好地拟合了许多样品的应力-应变数据。最后,基于拟合的HE材料模型开发了显式的动态有限元网格。采用总拉格朗日公式和半步中心差法来积分网格的动态运动方程。该网格被集成到两个版本的实时皮肤模拟器中:在计算机的主中央处理器上运行的单线程版本和在计算机的图形卡上运行的多线程版本。后者是通过利用可编程图形技术的最新进展而实现的。

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