Literature DB >> 18975692

Feature-based rectal contour propagation from planning CT to cone beam CT.

Yaoqin Xie1, Ming Chao, Percy Lee, Lei Xing.   

Abstract

The purpose of this work is to develop a novel feature-based registration strategy to automatically map the rectal contours from planning computed tomography (CT) (pCT) to cone beam CT (CBCT). The rectal contours were manually outlined on the pCT. A narrow band with the outlined contour as its interior surface was then constructed, so that we can exclude the volume inside the rectum in the registration process. The corresponding contour in the CBCT was found by using a feature-based registration algorithm, which consists of two steps: (1) automatically searching for control points in the pCT and CBCT based on the features of the surrounding tissue and matching the homologous control points using the scale invariance feature transformation; and (2) using the control points for a thin plate spline transformation to warp the narrow band and mapping the corresponding contours from pCT to CBCT. The proposed contour propagation technique is applied to digital phantoms and clinical cases and, in all cases, the contour mapping results are found to be clinically acceptable. For clinical cases, the method yielded satisfactory results even when there were significant rectal content changes between the pCT and CBCT scans. As a consequence, the accordance between the rectal volumes after deformable registration and the manually segmented rectum was found to be more than 90%. The proposed technique provides a powerful tool for adaptive radiotherapy of prostate, rectal, and gynecological cancers in the future.

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Year:  2008        PMID: 18975692      PMCID: PMC2736756          DOI: 10.1118/1.2975230

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  23 in total

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8.  Mapping of the prostate in endorectal coil-based MRI/MRSI and CT: a deformable registration and validation study.

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9.  Automatic registration of the prostate for computed-tomography-guided radiotherapy.

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  20 in total

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4.  Pelvic multi-organ segmentation on cone-beam CT for prostate adaptive radiotherapy.

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6.  Comparison of manual and automatic segmentation methods for brain structures in the presence of space-occupying lesions: a multi-expert study.

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7.  Male pelvic multi-organ segmentation aided by CBCT-based synthetic MRI.

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8.  Clinical evaluation of soft tissue organ boundary visualization on cone-beam computed tomographic imaging.

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