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Augmented depth perception visualization in 2D/3D image fusion

机译:2D / 3D图像融合中的增强深度感知可视化

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摘要

2D/3D image fusion applications are widely used in endovascular interventions. Complaints from interventionists about existing state-of-art visualization software are usually related to the strong compromise between 2D and 3D visibility or the lack of depth perception. In this paper, we investigate several concepts enabling improvement of current image fusion visualization found in the operating room. First, a contour enhanced visualization is used to circumvent hidden information in the X-ray image. Second, an occlusion and depth color-coding scheme is considered to improve depth perception. To validate our visualization technique both phantom and clinical data are considered. An evaluation is performed in the form of a questionnaire which included 24 participants: ten clinicians and fourteen non-clinicians. Results indicate that the occlusion correction method provides 100% correctness when determining the true position of an aneurysm in X-ray. Further, when integrating an RGB or RB color-depth encoding in the image fusion both perception and intuitiveness are improved. (C) 2014 Elsevier Ltd. All rights reserved.
机译:2D / 3D图像融合应用广泛用于血管内干预。干预专家对现有先进的可视化软件的投诉通常与2D和3D可见性之间的强烈折衷或缺乏深度感知有关。在本文中,我们研究了几个概念,可以改善手术室中当前的图像融合可视化效果。首先,使用轮廓增强的可视化技术来规避X射线图像中的隐藏信息。其次,考虑使用遮挡和深度颜色编码方案来改善深度感知。为了验证我们的可视化技术,应同时考虑幻像和临床数据。以问卷形式进行评估,该问卷包括24名参与者:10名临床医生和14名非临床医生。结果表明,当确定X射线中动脉瘤的真实位置时,闭塞矫正方法可提供100%的正确性。此外,当在图像融合中集成RGB或RB颜色深度编码时,感知和直观性均得到改善。 (C)2014 Elsevier Ltd.保留所有权利。

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