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Radiofrequency ablation of hepatic tumors: simulation, planning, and contribution of virtual reality and haptics

机译:射频消融肝肿瘤:虚拟现实和触觉的仿真,规划和贡献

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摘要

For radiofrequency ablation (RFA) of liver tumors, evaluation of vascular architecture, post-RFA necrosis prediction, and the choice of a suitable needle placement strategy using conventional radiological techniques remain difficult. In an attempt to enhance the safety of RFA, a 3D simulator, treatment planning, and training tool, that simulates the insertion of the needle, the necrosis of the treated area, and proposes an optimal needle placement, has been developed. The 3D scenes are automatically reconstructed from enhanced spiral CT scans. The simulator takes into account the cooling effect of local vessels greater than 3 mm in diameter, making necrosis shapes more realistic. Optimal needle positioning can be automatically generated by the software to produce complete destruction of the tumor, with maximum respect of the healthy liver and of all major structures to avoid. We also studied how the use of virtual reality and haptic devices are valuable to make simulation and training realistic and effective.
机译:对于肝肿瘤的射频消融(RFA),评估血管结构,RFA坏死后的预测以及使用常规放射学技术选择合适的针头放置策略仍然很困难。为了提高RFA的安全性,已经开发了3D仿真器,治疗计划和训练工具,该工具可模拟针头的插入,治疗部位的坏死并提出最佳的针头放置方法。 3D场景是根据增强型螺旋CT扫描自动重建的。该模拟器考虑了直径大于3 mm的局部血管的冷却效果,使坏死形状更加逼真。该软件可以自动生成最佳的针头定位,以完全破坏肿瘤,同时最大程度地尊重健康的肝脏和避免的所有主要结构。我们还研究了如何使用虚拟现实和触觉设备来使模拟和培训变得切实有效。

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