增强现实与光学导航辅助眼眶手术:一种新型的集成工作流程。
Augmented reality and optical navigation assisted orbital surgery: a novel integrated workflow.
作者信息
Tonchev Nikolay, Renieri Giulia, Stein Klaus-Peter, Neyazi Belal, Willgerodt Max, Thieme Hagen, Sandalcioglu I Erol, Hartmann Karl
机构信息
Universitätsklinik für Neurochirurgie, Otto-von-Guericke-Universität Magdeburg, Leipziger Str. 44, 39120 Magdeburg, Germany.
Universitätsklinik für Augenheilkunde, Otto-von-Guericke-Universität Magdeburg, Leipziger Str. 44, 39120 Magdeburg, Germany.
出版信息
Innov Surg Sci. 2024 Jul 29;10(2):91-98. doi: 10.1515/iss-2023-0064. eCollection 2025 Jun.
OBJECTIVES
Due to the close topographical relationship of functional relevant anatomic structures, limited space and cosmetic aspects orbital surgery will remain a challenging discipline. Therefore, novel technical capabilities are necessary for further surgical progress. We here tested the integration of augmented reality and optical navigation in one workflow for interdisciplinary decision-making, feasibility and intraoperative guidance.
METHODS
High-resolution contrast-enhanced MRI and CT scans were automated and manual-assisted segmented to achieve a detailed three-dimensional (3D) model of the individual patho-anatomical relationships. Augmented reality was used for interdisciplinary preoperative planning and intraoperative intuitive navigation. Mayfield clamp head holder in combination with optical surface matching registration assured navigation assisted microsurgery.
RESULTS
Combinations of different MRI-sequences and CT-scans were necessary for detailed 3D-modeling. Modeling was time consuming and only viable in the hands of medical, surgical and anatomical trained staff. Augmented reality assured a quick, intuitive interdisciplinary orientation. Intraoperative surface matching registration enabled precise navigation in the orbital space.
CONCLUSIONS
Optical Navigation and microscope integration achieved a straightforward microsurgical workflow and should be implemented regularly. Augmented reality represented a useful tool for preoperative interdisciplinary planning and intraoperative intuitive orientation. It further stated an excellent educational tool.
目的
由于功能相关解剖结构的紧密地形关系、有限的空间以及美容方面的因素,眼眶手术仍然是一个具有挑战性的学科。因此,新的技术能力对于进一步的手术进展是必要的。我们在此测试了将增强现实和光学导航整合到一个工作流程中,用于跨学科决策、可行性评估和术中引导。
方法
对高分辨率对比增强磁共振成像(MRI)和计算机断层扫描(CT)进行自动和手动辅助分割,以获得个体病理解剖关系的详细三维(3D)模型。增强现实用于跨学科术前规划和术中直观导航。Mayfield夹头固定器与光学表面匹配配准相结合,确保了导航辅助显微手术。
结果
为了进行详细的3D建模,需要结合不同的MRI序列和CT扫描。建模耗时且只有经过医学、外科和解剖学培训的人员才能完成。增强现实确保了快速、直观的跨学科定位。术中表面匹配配准实现了眼眶空间内的精确导航。
结论
光学导航与显微镜的整合实现了直接的显微手术工作流程,应定期实施。增强现实是术前跨学科规划和术中直观定位的有用工具。它还表明是一种优秀的教育工具。
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