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Applications of VR medical image visualization to chordal length measurements for cardiac procedures

机译:VR医学图像可视化在心脏手术弦长测量中的应用

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Cardiac surgeons rely on diagnostic imaging for preoperative planning. Recently, developments have been made on improving 3D ultrasound (US) spatial compounding tailored for cardiac images. Compounded 3D ultrasound volumes are able to capture complex anatomical structures at a level similar to a CT scan, however these images are difficult to display and visualize due to an increased amount of surrounding tissue captured including excess noise at the volume boundaries. Traditional medical image visualization software does not easily allow for viewing 2D slices at arbitrary angles, and 3D rendering techniques do not adequately capture depth information without the use of advanced transfer functions or other depth-encoding techniques that must be tuned to each individual data set. Previous studies have shown that the effective use of virtual reality (VR) can improve image visualization, usability and reduce surgical errors in case planning. We demonstrate the novel use of a VR system for the application of measuring chordal lengths from compounded transesophageal and transgastric echocardiography (TEE, TTE) ultrasound images. Compounded images are constructed from TEE (en-face) views registered and spatially compounded with multiple TEE transgastric views in order to capture both the mitral valve leaflets and chordae tendineae with high levels of detail. Users performed the task of taking linear measurements of chordae visible in these images using both traditional software and a VR platform. Compared to traditional software, the VR platform offered a more intuitive experience with respect to orientation, however users felt there was a lack of precision when performing the measurement tasks.
机译:心脏外科医生依靠诊断成像进行术前计划。最近,在改进针对心脏图像量身定制的3D超声(US)空间合成方面取得了一些进展。复合的3D超声体积能够以类似于CT扫描的水平捕获复杂的解剖结构,但是由于捕获的周围组织数量增加(包括体积边界处的过多噪声),这些图像难以显示和可视化。传统医学图像可视化软件无法轻松地以任意角度查看2D切片,并且3D渲染技术无法使用高级传递函数或必须针对每个单独数据集进行调整的其他深度编码技术来充分捕获深度信息。先前的研究表明,有效利用虚拟现实(VR)可以改善图像的可视化效果,可用性并减少病例规划中的手术错误。我们演示了VR系统在复合经食管和经胃超声心动图(TEE,TTE)超声图像测量弦长应用中的新颖用途。复合图像是从TEE(正面)视图构建的,并与多个TEE跨胃视图在空间上复合,以便以较高的细节水平捕获二尖瓣小叶和腱索。用户使用传统软件和VR平台执行了对这些图像中可见的脊索进行线性测量的任务。与传统软件相比,VR平台在定向方面提供了更直观的体验,但是用户感到执行测量任务时缺乏精度。

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