Dynamic Tracking of a Deformable Tissue Based on 3D-2D MR-US Image Registration

被引:0
|
作者
Marami, Bahram [1 ,2 ,3 ]
Sirouspour, Shahin [1 ]
Fenster, Aaron [2 ,3 ]
Capson, David W. [4 ]
机构
[1] McMaster Univ, Dept Elect & Comp Engn, Hamilton, ON L8S 4L8, Canada
[2] Robert Res Inst, Imaging Res Lab, London, ON N6A 5B7, Canada
[3] Univ Western Ontario, Biomed Engn Grad Program, London, ON N6A 3K7, Canada
[4] Univ Victoria, Dept Elect & Comp Engn, Victoria, BC V8W 2Y2, Canada
关键词
Multimodal image registration; 3D-2D MR-US registration; image-guided intervention; dynamic finite element modeling; state estimation; BIOPSY;
D O I
10.1117/12.2043896
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Real-time registration of pre-operative magnetic resonance (MR) or computed tomography (CT) images with intra-operative Ultrasound (US) images can be a valuable tool in image-guided therapies and interventions. This paper presents an automatic method for dynamically tracking the deformation of a soft tissue based on registering pre-operative three-dimensional (3D) MR images to intra-operative two-dimensional (2D) US images. The registration algorithm is based on concepts in state estimation where a dynamic finite element (FE)-based linear elastic deformation model correlates the imaging data in the spatial and temporal domains. A Kalman-like filtering process estimates the unknown deformation states of the soft tissue using the deformation model and a measure of error between the predicted and the observed intra-operative imaging data. The error is computed based on an intensity-based distance metric, namely, modality independent neighborhood descriptor (MIND), and no segmentation or feature extraction from images is required. The performance of the proposed method is evaluated by dynamically deforming 3D pre-operative MR images of a breast phantom tissue based on real-time 2D images obtained from an US probe. Experimental results on different registration scenarios showed that deformation tracking converges in a few iterations. The average target registration error on the plane of 2D US images for manually selected fiducial points was between 0.3 and 1.5 mm depending on the size of deformation.
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页数:7
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