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经颅和经鼻观察的鞍区:通过新的表面真实感三维模型重建探索神经外科解剖学培训中的骨性标志。

The Sellar Region as Seen from Transcranial and Endonasal Perspectives: Exploring Bony Landmarks Through New Surface Photorealistic Three-Dimensional Model Reconstruction for Neurosurgical Anatomy Training.

机构信息

Division of Neurosurgery, Department of Neuroscience and Reproductive and Odontostomatological Sciences, Università degli Studi di Napoli "Federico II", Naples, Italy; Department of Neuroscience and Reproductive and Odontostomatological Sciences, Program in Neuroscience, Università degli Studi di Napoli "Federico II", Naples, Italy; Laboratory of Neuroanatomy, EBRIS Foundation, European Biomedical Research Institute of Salerno, Salerno, Italy.

Laboratory of Neuroanatomy, EBRIS Foundation, European Biomedical Research Institute of Salerno, Salerno, Italy; Division of Neurosurgery, "Sapienza" University of Rome, Rome, Italy.

出版信息

World Neurosurg. 2024 May;185:e367-e375. doi: 10.1016/j.wneu.2024.02.022. Epub 2024 Feb 9.

Abstract

BACKGROUND

Virtual reality-based learning of neuroanatomy is a new feasible method to explore, visualize, and dissect interactively complex anatomic regions. We provide a new interactive photorealistic three-dimensional (3D) model of sellar region microsurgical anatomy that allows side-by-side views of exocranial and endocranial surfaces to be explored, with the aim of assisting young neurosurgery residents in learning microsurgical anatomy of this complex region.

METHODS

Four head specimens underwent an endoscopic endonasal approach extended to the anterior and posterior skull base to expose the main bony anatomic landmarks of the sellar region. The same bony structures were exposed from a transcranial perspective. By using a photogrammetry method, multiple photographs from both endocranial and exocranial perspectives, different for angulations and depth, were captured, fused, and processed through dedicated software.

RESULTS

All relevant bony structures were clearly distinguishable in the 3D model reconstruction, which provides several benefits in neuroanatomy learning: first, it replicates bony structures with high degrees of realism, accuracy, and fidelity; in addition, it provides realistic spatial perception of the depth of the visualized structures and their anatomic relationships; again, the 3D model is interactive and allows a 360° self-guided tour of the reconstructed object, so that the learner can read the bones and their anatomic relationship from all desired points of view.

CONCLUSIONS

Detailed knowledge of key surgical landmarks representing keyholes and/or anatomic structures to not violate is mandatory for safer surgery, especially for a complex region such as the skull base. Highly accurate virtual and functional neurosurgical models, such as photogrammetry, can generate a realistic appearance to further improve surgical simulators and learn neuroanatomy.

摘要

背景

基于虚拟现实的神经解剖学学习是探索、可视化和交互分解复杂解剖区域的一种新的可行方法。我们提供了一个新的鞍区显微外科解剖学的交互式真实感三维(3D)模型,允许并排查看颅外和颅内表面,旨在帮助年轻的神经外科住院医师学习这个复杂区域的显微外科解剖学。

方法

四个头颅标本通过经鼻内镜颅底入路扩展到前颅底和后颅底,以暴露鞍区的主要骨性解剖标志。从颅外的角度暴露相同的骨性结构。通过使用摄影测量方法,从颅内和颅外的多个角度捕捉、融合和处理不同角度和深度的多张照片。

结果

在 3D 模型重建中,可以清楚地区分所有相关的骨性结构,这在神经解剖学学习中有几个好处:首先,它复制了具有高度真实感、准确性和保真度的骨性结构;此外,它提供了对可视化结构深度和它们的解剖关系的真实空间感知;再次,3D 模型是交互式的,可以允许对重建物体进行 360°的自我引导游览,因此学习者可以从所有期望的角度阅读骨骼及其解剖关系。

结论

详细了解代表关键孔和/或解剖结构的关键手术标志对于更安全的手术是必需的,特别是对于像颅底这样的复杂区域。高度准确的虚拟和功能性神经外科模型,如摄影测量,可以产生逼真的外观,进一步提高手术模拟器和学习神经解剖学的效果。

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