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基于pq空间的二维/三维配准的患者特异性支气管镜模拟

Patient-specific bronchoscope simulation with pq-space-based 2D/3D registration.

作者信息

Deligianni Fani, Chung Adrian, Yang Guang-Zhong

机构信息

Royal Society/Wolfson Foundation Medical Image Computing Laboratory, Imperial College, London, United Kingdom.

出版信息

Comput Aided Surg. 2004;9(5):215-26. doi: 10.3109/10929080500144927.

Abstract

OBJECTIVE

The use of patient-specific models for surgical simulation requires photorealistic rendering of 3D structure and surface properties. For bronchoscope simulation, this requires augmenting virtual bronchoscope views generated from 3D tomographic data with patient-specific bronchoscope videos. To facilitate matching of video images to the geometry extracted from 3D tomographic data, this paper presents a new pq-space-based 2D/3D registration method for camera pose estimation in bronchoscope tracking.

METHODS

The proposed technique involves the extraction of surface normals for each pixel of the video images by using a linear local shape-from-shading algorithm derived from the unique camera/lighting constraints of the endoscopes. The resultant pq-vectors are then matched to those of the 3D model by differentiation of the z-buffer. A similarity measure based on angular deviations of the pq-vectors is used to provide a robust 2D/3D registration framework. Localization of tissue deformation is considered by assessing the temporal variation of the pq-vectors between subsequent frames.

RESULTS

The accuracy of the proposed method was assessed by using an electromagnetic tracker and a specially constructed airway phantom. Preliminary in vivo validation of the proposed method was performed on a matched patient bronchoscope video sequence and 3D CT data. Comparison to existing intensity-based techniques was also made.

CONCLUSION

The proposed method does not involve explicit feature extraction and is relatively immune to illumination changes. The temporal variation of the pq distribution also permits the identification of localized deformation, which offers an effective way of excluding such areas from the registration process.

摘要

目的

使用针对患者的模型进行手术模拟需要对三维结构和表面特性进行逼真的渲染。对于支气管镜模拟,这需要用患者特定的支气管镜视频增强从三维断层数据生成的虚拟支气管镜视图。为便于将视频图像与从三维断层数据中提取的几何形状进行匹配,本文提出一种基于pq空间的新二维/三维配准方法,用于支气管镜跟踪中的相机位姿估计。

方法

所提出的技术包括通过使用从内窥镜独特的相机/光照约束导出的线性局部明暗恢复形状算法,提取视频图像每个像素的表面法线。然后通过z缓冲区的微分将所得的pq向量与三维模型的向量进行匹配。基于pq向量角度偏差的相似性度量用于提供一个稳健的二维/三维配准框架。通过评估后续帧之间pq向量的时间变化来考虑组织变形的定位。

结果

使用电磁跟踪器和专门构建的气道模型评估了所提出方法的准确性。在所匹配的患者支气管镜视频序列和三维CT数据上对所提出方法进行了初步的体内验证。还与现有的基于强度的技术进行了比较。

结论

所提出的方法不涉及显式特征提取,并且相对不受光照变化的影响。pq分布的时间变化还允许识别局部变形,这提供了一种从配准过程中排除此类区域的有效方法。

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