首页> 外文会议>Bioinformatics and Biomedical Engineering , 2009. ICBBE 2009 >Development and Validity of Tissue Biomechanics Modeling for Virtual Robot Assisted Orthopedic Surgery System
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Development and Validity of Tissue Biomechanics Modeling for Virtual Robot Assisted Orthopedic Surgery System

机译:虚拟机器人辅助骨科手术系统组织生物力学建模的开发和有效性

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Information with respect to the internal stresses/strains in the human leg during bone-setting is helpful to control the medical robots in HIT-robot assisted orthopedic surgery system (HIT-RAOS). While techniques to measure external pressure are well established, direct measurement of the internal stresses/strains is difficult. A three-dimensional (3D) finite element model of the human leg is developed using the actual geometry of the leg skeleton and soft tissues, which were obtained from 3D reconstruction of CT images. The major tendons are simulated using tension-only truss elements by connecting the corresponding attachment points on the bone surfaces. The bony structures are defined as linearly elastic, while the soft tissue and muscles are assumed to be hyper elastic. The bony and tendons structures are embedded in a volume of soft tissues. To validate this model, the same cadaver is utilized in experiment, during reposition procedure, the force needed to separate the two broken bones and corresponding the distance are recorded. Then, another set of data is acquired from the finite element analysis. After comparison, the finite element model is proved to be acceptable. This simulation model is used in virtual HIT-robot assisted orthopedic surgery system.
机译:有关骨骼固定过程中人腿内部应力/应变的信息有助于控制HIT机器人辅助骨科手术系统(HIT-RAOS)中的医疗机器人。尽管测量外部压力的技术已经很成熟,但是直接测量内部应力/应变却很困难。利用腿部骨骼和软组织的实际几何形状开发了人腿的三维(3D)有限元模型,这些模型是从CT图像的3D重建中获得的。通过在骨骼表面上连接相应的附着点,使用仅受拉力的桁架元素模拟主要肌腱。骨结构被定义为线性弹性,而软组织和肌肉被假定为超弹性。骨和肌腱结构嵌入了一定数量的软组织中。为了验证该模型,在实验中使用了相同的尸体,在重新定位过程中,记录了分离两个断骨所需的力以及相应的距离。然后,从有限元分析中获取另一组数据。经过比较,证明了有限元模型是可以接受的。该仿真模型用于虚拟HIT机器人辅助骨科手术系统中。

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