论文标题

Twin-S:用于颅底手术的数字双胞胎

Twin-S: A Digital Twin for Skull-base Surgery

论文作者

Shu, Hongchao, Liang, Ruixing, Li, Zhaoshuo, Goodridge, Anna, Zhang, Xiangyu, Ding, Hao, Nagururu, Nimesh, Sahu, Manish, Creighton, Francis X., Taylor, Russell H., Munawar, Adnan, Unberath, Mathias

论文摘要

目的:数字双胞胎是现实世界的虚拟互动模型,表现出相同的行为和特性。在手术应用中,可以使用数字双胞胎的计算分析来增强情境意识。方法:我们提出了一个名为Twin-S的头骨基础手术的数字双框架,该框架可以无缝地集成在各种图像引导的干预措施中。 Twin-S结合了高精度光跟踪和实时模拟。我们依靠严格的校准例程来确保数字双表示形式精确模拟所有现实世界过程。 Twin-S模型并跟踪颅底手术的关键成分,包括手术工具,患者解剖学和手术摄像头。值得注意的是,双胞胎更新并以帧速率反映了解剖模型的现实钻探。结果:我们广泛评估了Twin-S的准确性,这在钻井过程中平均达到了1.39 mm的误差。我们进一步说明了如何在混合现实环境中突出显示需要消融的骨头以提供外科医生的额外情况意识,从而在连续更新的数字双胞胎中得出的细分面具如何增强手术显微镜视图。结论:我们提出了Twin-S,这是一种用于颅底手术的数字双胞胎环境。 Twin-S跟踪和更新现代跟踪技术测量的实时测量的虚拟模型。未来关于使用基于高精度视力的方法补充光学跟踪的研究可能会进一步提高双胞胎-S的准确性。

Purpose: Digital twins are virtual interactive models of the real world, exhibiting identical behavior and properties. In surgical applications, computational analysis from digital twins can be used, for example, to enhance situational awareness. Methods: We present a digital twin framework for skull-base surgeries, named Twin-S, which can be integrated within various image-guided interventions seamlessly. Twin-S combines high-precision optical tracking and real-time simulation. We rely on rigorous calibration routines to ensure that the digital twin representation precisely mimics all real-world processes. Twin-S models and tracks the critical components of skull-base surgery, including the surgical tool, patient anatomy, and surgical camera. Significantly, Twin-S updates and reflects real-world drilling of the anatomical model in frame rate. Results: We extensively evaluate the accuracy of Twin-S, which achieves an average 1.39 mm error during the drilling process. We further illustrate how segmentation masks derived from the continuously updated digital twin can augment the surgical microscope view in a mixed reality setting, where bone requiring ablation is highlighted to provide surgeons additional situational awareness. Conclusion: We present Twin-S, a digital twin environment for skull-base surgery. Twin-S tracks and updates the virtual model in real-time given measurements from modern tracking technologies. Future research on complementing optical tracking with higher-precision vision-based approaches may further increase the accuracy of Twin-S.

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