Vascular Neurosurgery Simulation with Bimanual Haptic Feedback

Jérémie Dequidt, E. Coevoet, L. Thinès, C. Duriez
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引用次数: 7

Abstract

Virtual surgical simulators face many computational challenges: they need to provide biophysical accuracy, realistic feed-backs and high-rate responses. Better biophysical accuracy and more realistic feed-backs (be they visual, haptic.. .) induce more computational footprint. State-of-the-art approaches use high-performance hardware or find an acceptable trade-off between performance and accuracy to deliver interactive yet pedagogically relevant simulators. In this paper, we propose an interactive vascular neurosurgery simulator that provides bi-manual interaction with haptic feedback. The simulator is an original combination of states-of-the-art techniques that allows visual realism, bio-physical realism, complex interactions with the anatomical structures and the instruments and haptic feedback. Training exercises are also proposed to learn and to perform the different steps of intracranial aneurysm surgery (IAS). We assess the performance of our simulator with quantitative performance benchmarks and qualitative assessments of junior and senior clinicians.
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血管神经外科模拟与双手触觉反馈
虚拟手术模拟器面临许多计算方面的挑战:它们需要提供生物物理的准确性、真实的反馈和高速率的响应。更好的生物物理精度和更真实的反馈(视觉、触觉……)会导致更多的计算足迹。最先进的方法使用高性能硬件或在性能和准确性之间找到可接受的权衡,以提供交互式且与教学相关的模拟器。在本文中,我们提出了一个交互式血管神经外科模拟器,提供双手交互与触觉反馈。该模拟器是最先进技术的原始组合,允许视觉逼真,生物物理逼真,与解剖结构和仪器的复杂交互以及触觉反馈。训练练习也建议学习和执行颅内动脉瘤手术(IAS)的不同步骤。我们通过对初级和高级临床医生的定量性能基准和定性评估来评估我们的模拟器的性能。
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