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Augmented reality and optical navigation assisted orbital surgery: a novel integrated workflow.

Innovative surgical sciences 2025 Vol.10(2) p. 91-98 🌐 cited 2 🔓 OA Facial Trauma and Fracture Managemen
TL;DR Optical Navigation and microscope integration achieved a straightforward microsurgical workflow and Augmented reality represented a useful tool for preoperative interdisciplinary planning and intraoperative intuitive orientation and an excellent educational tool.
OpenAlex 토픽 · Facial Trauma and Fracture Management Meningioma and schwannoma management Head and Neck Surgical Oncology

Tonchev N, Renieri G, Stein KP, Neyazi B, Willgerodt M, Thieme H, Sandalcioglu IE, Hartmann K

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Optical Navigation and microscope integration achieved a straightforward microsurgical workflow and Augmented reality represented a useful tool for preoperative interdisciplinary planning and intraope

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APA Nikolay Tonchev, Giulia Renieri, et al. (2025). Augmented reality and optical navigation assisted orbital surgery: a novel integrated workflow.. Innovative surgical sciences, 10(2), 91-98. https://doi.org/10.1515/iss-2023-0064
MLA Nikolay Tonchev, et al.. "Augmented reality and optical navigation assisted orbital surgery: a novel integrated workflow.." Innovative surgical sciences, vol. 10, no. 2, 2025, pp. 91-98.
PMID 40778216

Abstract

[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.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 1
해부 CT-scans scispacy 1
약물 [CONCLUSIONS] Optical scispacy 1
질환 head scispacy 1

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