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Brain surgery in a stereoscopic virtual reality environment: a single institution's experience with 100 cases.

机译:立体虚拟现实环境中的脑部手术:单个机构的100例经验。

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BACKGROUND: A comprehensive understanding of the spatial relationships between intracranial anatomy and pathological features is a crucial element in neurosurgical planning. OBJECT: To assess our clinical experiences using a novel approach, stereoscopic virtual reality environment, to help neurosurgeons with both surgical training and surgical strategic planning purposes. METHODS: Patient-specific digital imaging data obtained from a variety of different diagnostic sources (computed tomography, computed tomographic angiography, magnetic resonance, functional magnetic resonance, magnetic resonance-diffusion tensor imaging) were collected and then transferred to a workstation setting. These clinical data were obtained from 100 patients who were suffering from either brain vascular malformations or tumors that were located in difficult brain sites. A 3-dimensional volume rendering was produced for each of the 100 clinical cases, which were then subjected to data coregistration and fusion. RESULTS: By using different head positioning systems and craniotomy options, we simulated microscopic visualizations of the lesion through numerous surgical approaches and from various angles of view. This simulation strategy enabled us to carry out an approach selection and eventually to identify the optimum angle of lesion visualization. CONCLUSION: These virtual craniotomies successfully simulated a sampling of different operative environments that have the potential to play a significant role in neurosurgical training and operative planning worthy of further exploration and development.
机译:背景:全面了解颅内解剖结构和病理特征之间的空间关系是神经外科计划中的关键要素。目的:为了评估我们的临床经验,使用一种新颖的方法,即立体虚拟现实环境,以帮助神经外科医师进行外科手术训练和外科手术战略规划。方法:收集从各种不同的诊断来源(计算机断层扫描,计算机断层血管造影,磁共振,功能磁共振,磁共振扩散张量成像)获得的患者特定的数字成像数据,然后将其传输到工作站。这些临床数据来自100例患有脑血管畸形或位于困难脑位的肿瘤的患者。为100个临床病例中的每个病例制作了三维三维渲染图,然后对其进行数据整合和融合。结果:通过使用不同的头部定位系统和开颅手术选项,我们通过多种手术方法和不同角度模拟了病变的微观可视化。这种模拟策略使我们能够进行方法选择,并最终确定病变可视化的最佳角度。结论:这些虚拟开颅手术成功地模拟了不同手术环境的样本,这些样本可能在神经外科培训和手术计划中具有重要作用,值得进一步探索和发展。

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