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A 3D Simulation System for Hip Joint Replacement Planning

机译:用于髋关节置换计划的3D仿真系统

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摘要

We present a tool for hip joint replacement planning that allows the surgeon to rank the long-term stability of an implant, and we show the application of this tool in a clinical routine setting. The tool allows the surgeon to predict the load transmission of an implant to the patient-specific bone. It is used to select of a set of available implants the one that most closely replicates the physiological stress state in order to avoid stress shielding. Advanced simulation technology is combined with 3D visualization options to provide quick and intuitive understanding of the generated results. Interactive feedback rates and intuitive control mechanisms facilitate the finding of an optimal implant shape with respect to the patient's specific anatomy. By restricting to a predetermined implant position, which is in accordance with the selected position in a real surgery, the surgeon can quickly analyze a number of different implants under varying load conditions.
机译:我们提出了一种用于髋关节置换计划的工具,该工具使外科医生能够对植入物的长期稳定性进行排名,并且展示了该工具在临床常规环境中的应用。该工具允许外科医生预测植入物到患者特定骨骼的负荷传递。它用于选择一组可用的植入物,该植入物最能复制生理应力状态,以避免应力屏蔽。先进的仿真技术与3D可视化选项相结合,可以快速直观地了解所生成的结果。交互式反馈率和直观的控制机制有助于根据患者的特定解剖结构找到最佳的植入物形状。通过限制到预定的植入物位置,该位置与实际手术中选择的位置一致,外科医生可以在变化的负载条件下快速分析许多不同的植入物。

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