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Virtual reality in advanced medical immersive imaging: a workflow for introducing virtual reality as a supporting tool in medical imaging

机译:高级医学沉浸式成像中的虚拟现实:将虚拟现实作为医学成像支持工具的工作流程

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摘要

Abstract Radiologic evaluation of images from computed tomography (CT) or magnetic resonance imaging for diagnostic purposes is based on the analysis of single slices, occasionally supplementing this information with 3D reconstructions as well as surface or volume rendered images. However, due to the complexity of anatomical or pathological structures in biomedical imaging, innovative visualization techniques are required to display morphological characteristics three dimensionally. Virtual reality is a modern tool of representing visual data, The observer has the impression of being “inside” a virtual surrounding, which is referred to as immersive imaging. Such techniques are currently being used in technical applications, e.g. in the automobile industry. Our aim is to introduce a workflow realized within one simple program which processes common image stacks from CT, produces 3D volume and surface reconstruction and rendering, and finally includes the data into a virtual reality device equipped with a motion head tracking cave automatic virtual environment system. Such techniques have the potential to augment the possibilities in non-invasive medical imaging, e.g. for surgical planning or educational purposes to add another dimension for advanced understanding of complex anatomical and pathological structures. To this end, the reconstructions are based on advanced mathematical techniques and the corresponding grids which we can export are intended to form the basis for simulations of mathematical models of the pathogenesis of different diseases.
机译:摘要用于诊断目的的计算机断层扫描(CT)或磁共振成像对图像的放射学评估基于对单个切片的分析,偶尔会对该信息进行3D重建以及表面或体积渲染的图像进行补充。然而,由于生物医学成像中解剖学或病理学结构的复杂性,需要创新的可视化技术来三维显示形态特征。虚拟现实是表示视觉数据的现代工具,观察者的印象是位于虚拟环境“内部”,这被称为沉浸式成像。此类技术当前正在技术应用中使用,例如,在技术领域中。在汽车行业。我们的目标是引入一个在一个简单程序中实现的工作流程,该程序可以处理来自CT的常见图像堆栈,生成3D体积以及曲面重建和渲染,最后将数据包含到配备有运动头跟踪洞穴自动虚拟环境系统的虚拟现实设备中。这样的技术具有增加非侵入性医学成像中的可能性的潜力,例如。用于外科手术计划或教育目的,为进一步了解复杂的解剖和病理结构增加了新的维度。为此,重建基于先进的数学技术,我们可以导出的相应网格旨在为模拟不同疾病的发病机理的数学模型奠定基础。

著录项

  • 来源
    《Computing and visualization in science》 |2018年第6期|203-212|共10页
  • 作者单位

    Goethe Center for Scientific Computing (GCSC), Goethe Universität Frankfurt;

    Goethe Center for Scientific Computing (GCSC), Goethe Universität Frankfurt;

    Goethe Center for Scientific Computing (GCSC), Goethe Universität Frankfurt;

    Goethe Center for Scientific Computing (GCSC), Goethe Universität Frankfurt;

    Institute of Radiology, University Medical Center Erlangen, Friedrich-Alexander University Erlangen-Nuremberg;

    Institute of Radiology, University Medical Center Erlangen, Friedrich-Alexander University Erlangen-Nuremberg;

    Medizinische Klinik, Abteilung Innere Medizin V, Universitätsklinikum Heidelberg,Department of Medicine, Roswell Park Cancer Institute;

    Goethe Center for Scientific Computing (GCSC), Goethe Universität Frankfurt,Applied Mathematics and Computational Science, Computer, Electrical and Mathematical Science and Engineering Division, King Abdullah University of Science and Technology, KAUST;

    Institute of Radiology, University Medical Center Erlangen, Friedrich-Alexander University Erlangen-Nuremberg;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Virtual reality; Imaging; Cave automatic virtual environment; Postprocessing; Volume rendering; Surface reconstruction; Surface rendering;

    机译:虚拟现实;成像;自动虚拟环境;后处理;体绘制;表面重构;表面绘制;

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