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Endoscopic surgery training using virtual reality and deformable tissue simulation

机译:使用虚拟现实和可变形组织模拟进行内窥镜手术训练

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Surgical training systems based on virtual reality (VR) and simulation techniques for tissue deformation may represent a more cost-effective and efficient alternative to traditional training methods. Additionally, VR is a technology that can teach surgeons new procedures and can determine their level of competence before they operate on patients. At Forschungszentrum Karlsruhe (FZK), a virtual reality training system for minimally invasive surgery (MIS), based on the simulation software KISMET, has been developed. An overview of the current state of development for the "Karlsruhe Endoscopic Surgery Trainer" is presented. For quick and easy creation of surgical scenes containing deformable anatomical organ models, the spline-based modeller KisMo has been developed, which generates beside the geometry also a spatial mass-spring network of the objects for the elastodynamic simulation in KISMET. The MIS trainer provides several surgical interaction modules for deformable objects like grasping, application of clips, cutting, coagulation, injection and suturing. Additionally, it is possible to perform irrigation and suction in the operation area. Active deformable objects are used for the morphodynamic simulation of the stomach and the intestines. Furthermore, a hierarchical pulse simulation in virtual arterial vessel trees has been realized, which enables the palpation of the pulse with a force-feedback device. The pulse simulation is coupled with an arterial bleeding simulation, which gets activated by injuries of arteries and stopped by application of clips. The simulation system has been applied to minimally invasive surgery training in gynaecology and laparoscopy. Special attention is addressed to elastodynamically deformable tissue models and geometric modelling techniques for graphical real-time performance.
机译:基于虚拟现实(VR)和用于组织变形的模拟技术的外科手术训练系统可能代表传统训练方法的一种更具成本效益和效率的替代方法。此外,VR是一项可以指导外科医生新程序并可以在对患者进行手术之前确定其能力水平的技术。在Forschungszentrum Karlsruhe(FZK),基于仿真软件KISMET的用于微创手术(MIS)的虚拟现实培训系统已经开发出来。概述了“ Karlsruhe内窥镜手术培训师”的当前发展状况。为了快速轻松地创建包含可变形解剖器官模型的外科手术场景,已经开发了基于样条的建模器KisMo,该模型在几何图形之外还生成了对象的空间质量弹簧网络,用于在KISMET中进行弹性动力学仿真。 MIS培训师为可变形物体提供了几种外科手术交互模块,例如抓握,施夹,切割,凝结,注射和缝合。另外,可以在手术区域进行冲洗和抽吸。活动的可变形对象用于胃和肠的形态动力学模拟。此外,已经实现了在虚拟的动脉血管树中的分级脉冲模拟,这使得能够利用力反馈装置来触诊脉冲。脉冲模拟与动脉出血模拟相结合,后者会因动脉受伤而激活,而由于应用夹子而停止。该仿真系统已应用于妇科和腹腔镜的微创手术培训。特别关注用于图形实时性能的弹性可变形组织模型和几何建模技术。

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