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神经介入中的虚拟现实

Virtual Reality in Neurointervention.

作者信息

Ong Chin Siang, Deib Gerard, Yesantharao Pooja, Qiao Ye, Pakpoor Jina, Hibino Narutoshi, Hui Ferdinand, Garcia Juan R

机构信息

Division of Cardiac Surgery, Johns Hopkins Hospital, Baltimore, MD, USA.

Division of Cardiology, Johns Hopkins Hospital, Baltimore, MD, USA.

出版信息

J Vasc Interv Neurol. 2018 Jun;10(1):17-22.

Abstract

OBJECTIVES

Virtual reality (VR) allows users to experience realistic, immersive 3D virtual environments with the depth perception and binocular field of view of real 3D settings. Newer VR technology has now allowed for interaction with 3D objects within these virtual environments through the use of VR controllers. This technical note describes our preliminary experience with VR as an adjunct tool to traditional angiographic imaging in the preprocedural workup of a patient with a complex pseudoaneurysm.

METHODS

Angiographic MRI data was imported and segmented to create 3D meshes of bilateral carotid vasculature. The 3D meshes were then projected into VR space, allowing the operator to inspect the carotid vasculature using a 3D VR headset as well as interact with the pseudoaneurysm (handling, rotation, magnification, and sectioning) using two VR controllers.

RESULTS

3D segmentation of a complex pseudoaneurysm in the distal cervical segment of the right internal carotid artery was successfully performed and projected into VR. Conventional and VR visualization modes were equally effective in identifying and classifying the pathology. VR visualization allowed the operators to manipulate the dataset to achieve a greater understanding of the anatomy of the parent vessel, the angioarchitecture of the pseudoaneurysm, and the surface contours of all visualized structures.

CONCLUSION

This preliminary study demonstrates the feasibility of utilizing VR for preprocedural evaluation in patients with anatomically complex neurovascular disorders. This novel visualization approach may serve as a valuable adjunct tool in deciding patient-specific treatment plans and selection of devices prior to intervention.

摘要

目的

虚拟现实(VR)使用户能够体验逼真的沉浸式3D虚拟环境,具备真实3D场景的深度感知和双眼视野。更新的VR技术现已允许通过使用VR控制器在这些虚拟环境中与3D对象进行交互。本技术说明描述了我们将VR作为辅助工具应用于一名患有复杂假性动脉瘤患者术前检查中传统血管造影成像的初步经验。

方法

导入血管造影MRI数据并进行分割,以创建双侧颈动脉脉管系统的3D网格。然后将3D网格投影到VR空间,使操作员能够使用3D VR头戴设备检查颈动脉脉管系统,并使用两个VR控制器与假性动脉瘤进行交互(处理、旋转、放大和切片)。

结果

成功完成了右侧颈内动脉远段复杂假性动脉瘤的3D分割并投影到VR中。传统可视化模式和VR可视化模式在识别和分类病变方面同样有效。VR可视化使操作员能够操纵数据集,从而更深入地了解母血管的解剖结构、假性动脉瘤的血管构筑以及所有可视化结构的表面轮廓。

结论

这项初步研究证明了在解剖结构复杂的神经血管疾病患者的术前评估中利用VR的可行性。这种新颖的可视化方法可能成为在干预前确定患者特定治疗方案和选择器械的有价值的辅助工具。

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