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Patient-specific bronchoscopy visualization through BRDF estimation and disocclusion correction

机译:通过BRDF估计和排堵矫正来查看患者特定的支气管镜

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摘要

This paper presents an image-based method for virtual bronchoscope with photo-realistic rendering. The technique is based on recovering bidirectional reflectance distribution function (BRDF) parameters in an environment where the choice of viewing positions, directions, and illumination conditions are restricted. Video images of bronchoscopy examinations are combined with patient-specific three-dimensional (3-D) computed tomography data through two-dimensional (2-D)/3-D registration and shading model parameters are then recovered by exploiting the restricted lighting configurations imposed by the bronchoscope. With the proposed technique, the recovered BRDF is used to predict the expected shading intensity, allowing a texture map independent of lighting conditions to be extracted from each video frame. To correct for disocclusion artefacts, statistical texture synthesis was used to recreate the missing areas. New views not present in the original bronchoscopy video are rendered by evaluating the BRDF with different viewing and illumination parameters. This allows free navigation of the acquired 3-D model with enhanced photo-realism. To assess the practical value of the proposed technique, a detailed visual scoring that involves both real and rendered bronchoscope images is conducted.
机译:本文提出了一种具有图像逼真的渲染的基于图像的虚拟支气管镜方法。该技术基于在限制观看位置,方向和照明条件选择的环境中恢复双向反射率分布函数(BRDF)参数。支气管镜检查的视频图像通过二维(2-D)/ 3-D配准与患者特定的三维(3-D)计算机断层扫描数据相结合,然后通过利用施加的受限照明配置来恢复阴影模型参数由支气管镜。利用提出的技术,恢复的BRDF用于预测预期的阴影强度,从而允许从每个视频帧中提取与光照条件无关的纹理贴图。为了纠正遮挡伪影,统计纹理合成用于重新创建缺失区域。通过使用不同的观看和照明参数评估BRDF,可以呈现原始支气管镜检查视频中未出现的新视图。这样可以以增强的逼真度自由导航获取的3D模型。为了评估所提出技术的实用价值,进行了涉及真实和渲染支气管镜图像的详细视觉评分。

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