增强现实模拟器训练二维超声心动图

M. Weidenbach , C. Wick , S. Pieper , K.J. Quast , T. Fox , G. Grunst , D.A. Redel
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引用次数: 92

摘要

在二维超声心动图中,超声医师必须将多个断层扫描片合成成心脏的心理三维(3D)模型。计算机图形和虚拟现实环境是理想的可视化复杂的三维空间关系。在增强现实(AR)应用中,将真实和虚拟图像数据链接起来,以增加信息内容。在本AR模拟器中,人类心脏的三维表面模型与超声心动图容积数据集相关联。将三维超声心动图数据集与心脏模型进行配准,以建立空间和时间一致性。心脏模型和动画超声扇区代表一个参考场景,它显示当前选择的二维超声心动图切割平面,从体积数据集计算。在参考场景中,超声心动图数据中切割平面的修改被同时传输和实时可视化。受训者可以通过动画超声探头交互探索三维心脏模型和注册的三维超声心动图数据集,其位置由电磁跟踪系统控制。跟踪系统连接到假换能器上,并放置在塑料木偶上,以提供二维超声心动图检查的真实印象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Augmented Reality Simulator for Training in Two-Dimensional Echocardiography

In two-dimensional echocardiography the sonographer must synthesize multiple tomographic slices into a mental three-dimensional (3D) model of the heart. Computer graphics and virtual reality environments are ideal to visualize complex 3D spatial relationships. In augmented reality (AR) applications, real and virtual image data are linked, to increase the information content. In the presented AR simulator a 3D surface model of the human heart is linked with echocardiographic volume data sets. The 3D echocardiographic data sets are registered with the heart model to establish spatial and temporal congruence. The heart model, together with an animated ultrasound sector represents a reference scenario, which displays the currently selected two-dimensional echocardiographic cutting plane calculated from the volume data set. Modifications of the cutting plane within the echocardiographic data are transferred and visualized simultaneously and in real time within the reference scenario. The trainee can interactively explore the 3D heart model and the registered 3D echocardiographic data sets by an animated ultrasound probe, whose position is controlled by an electromagnetic tracking system. The tracking system is attached to a dummy transducer and placed on a plastic puppet to give a realistic impression of a two-dimensional echocardiographic examination.

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