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计算机断层血管造影术的立体图像。

Stereoscopic Images from Computed Tomography Angiograms.

机构信息

UMR 1253, iBrain, Université de Tours, Inserm, Tours, France; Neurosurgery Department, CHU Grenoble Alpes, Grenoble, France; Université Grenoble Alpes, Grenoble, France.

UMR 1253, iBrain, Université de Tours, Inserm, Tours, France.

出版信息

World Neurosurg. 2019 Aug;128:259-267. doi: 10.1016/j.wneu.2019.04.257. Epub 2019 May 9.

Abstract

OBJECTIVE

To present an adaptation of the anaglyph photography technique to be used with radiological images from computed tomography angiograms, enabling stereoscopic visualization of a patient's individual abnormal vascular anatomy for teaching, case discussion, or surgical planning purposes.

METHODS

Traditional anaglyph procedures with actual objects yield 2 independent photographs, simulating the image perceived by each eye. Production of anaglyphs from angiograms involve 3 basic procedures: volume rendering, image capture, and image fusion. Volume renderings were reconstructed using a free, open-source DICOM (Digital Imaging and Communications in Medicine) reader. Subsequently, the virtual object was positioned to mimic the operator's angle of view, and different perspectives of the reconstructed volume could be obtained through exclusively horizontal rotation. The 2 images were then fused after their color composition was modified so that each eye would perceive only 1 image when using anaglyph glasses.

RESULTS

Forty-three angiograms were reviewed for the purpose of this study and a total of 6 examinations were selected for illustration of the technique. Stereoscopic display was possible for all of them and in the 3 types of support tested: computer monitor, tablet, and smartphone screens.

CONCLUSIONS

Anaglyph display of computed tomography angiograms is an effective and low-cost alternative for the stereoscopic visualization of a patient's individual intracranial vascular anatomy.

摘要

目的

介绍一种适用于计算机断层血管造影术放射图像的立体摄影技术的改编,以实现患者个体异常血管解剖结构的立体可视化,用于教学、病例讨论或手术规划目的。

方法

传统的实物立体摄影术产生 2 张独立的照片,模拟人眼感知的图像。从血管造影术中生成立体图像涉及 3 个基本步骤:体积渲染、图像采集和图像融合。使用免费的开源 DICOM(数字成像和通信在医学)读取器重建体积渲染。然后,将虚拟对象定位以模拟操作员的视角,并且可以通过仅水平旋转来获得重建体积的不同视角。然后修改图像的颜色组成以融合这 2 张图像,以便当使用立体眼镜时,每只眼睛只能感知到 1 张图像。

结果

为了进行本研究,共回顾了 43 份血管造影图,并选择了总共 6 次检查来演示该技术。所有这些都可以进行立体显示,并且在测试的 3 种支持类型上都可以进行:计算机监视器、平板电脑和智能手机屏幕。

结论

计算机断层血管造影术的立体显示是一种用于患者个体颅内血管解剖结构立体可视化的有效且低成本的替代方法。

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