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Real-time VR Simulation of Laparoscopic Cholecystectomy based on Parallel Position-based Dynamics in GPU

机译:基于GPU中基于位置并行动力学的腹腔镜胆囊切除术实时VR仿真

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In recent years, virtual reality (VR) based training has greatly changed surgeons learning mode. It can simulate the surgery from the visual, auditory, and tactile aspects. VR medical simulator can greatly reduce the risk of the real patient and the cost of hospitals. Laparoscopic cholecystectomy is one of the typical representatives in minimal invasive surgery (MIS). Due to the large incidence of cholecystectomy, the application of its VR-based simulation is vital and necessary for the residents’ surgical training. In this paper, we present a VR simulation framework based on position-based dynamics (PBD) for cholecystectomy. To further accelerate the deformation of organs, PBD constraints are solved in parallel by a graph coloring algorithm. We introduce a bio-thermal conduction model to improve the realism of the fat tissue electrocautery. Finally, we design a hybrid multi-model connection method to handle the interaction and simulation of the liver-gallbladder separation. This simulation system has been applied to laparoscopic cholecystectomy training in several hospitals. From the experimental results, users can operate in real-time with high stability and fidelity. The simulator is also evaluated by a number of digestive surgeons through preliminary studies. They believed that the system can offer great help to the improvement of surgical skills.
机译:近年来,基于虚拟现实(VR)的培训大大改变了外科医生学习模式。它可以模拟视觉,听觉和触觉方面的手术。 VR医疗模拟器可以大大降低真实患者的风险和医院的费用。腹腔镜胆囊切除术是最小侵入性手术(MIS)中的典型代表之一。由于胆囊切除术的发生率大,基于VR的模拟的应用对于居民的手术训练至关重要和必要。在本文中,我们提出了一种基于基于位置的动态(PBD)的VR仿真框架,用于胆囊切除术。为了进一步加速器官的变形,通过图形着色算法并行解决PBD约束。我们介绍了一种生物导电模型,以改善脂肪组织电力的现实主义。最后,我们设计了一种混合多模型连接方法来处理肝硬化分离的相互作用和模拟。该仿真系统已应用于几家医院的腹腔镜胆囊切除术训练。从实验结果中,用户可以实时运行,具有高稳定性和保真度。通过初步研究,该模拟器也通过多种消化外科医生进行评估。他们认为该系统可以帮助改善外科技能。

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