Literature DB >> 18196817

Region-of-interest image reconstruction in circular cone-beam microCT.

Seungryong Cho1, Junguo Bian, Charles A Pelizzari, Chin-Tu Chen, Tong-Chuan He, Xiaochuan Pan.   

Abstract

Cone-beam microcomputed tomography (microCT) is one of the most popular choices for small animal imaging which is becoming an important tool for studying animal models with transplanted diseases. Region-of-interest (ROI) imaging techniques in CT, which can reconstruct an ROI image from the projection data set of the ROI, can be used not only for reducing imaging-radiation exposure to the subject and scatters to the detector but also for potentially increasing spatial resolution of the reconstructed images. Increasing spatial resolution in microCT images can facilitate improved accuracy in many assessment tasks. A method proposed previously for increasing CT image spatial resolution entails the exploitation of the geometric magnification in cone-beam CT. Due to finite detector size, however, this method can lead to data truncation for a large geometric magnification. The Feldkamp-Davis-Kress (FDK) algorithm yields images with artifacts when truncated data are used, whereas the recently developed backprojection filtration (BPF) algorithm is capable of reconstructing ROI images without truncation artifacts from truncated cone-beam data. We apply the BPF algorithm to reconstructing ROI images from truncated data of three different objects acquired by our circular cone-beam microCT system. Reconstructed images by use of the FDK and BPF algorithms from both truncated and nontruncated cone-beam data are compared. The results of the experimental studies demonstrate that, from certain truncated data, the BPF algorithm can reconstruct ROI images with quality comparable to that reconstructed from nontruncated data. In contrast, the FDK algorithm yields ROI images with truncation artifacts. Therefore, an implication of the studies is that, when truncated data are acquired with a configuration of a large geometric magnification, the BPF algorithm can be used for effective enhancement of the spatial resolution of a ROI image.

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Year:  2007        PMID: 18196817     DOI: 10.1118/1.2804924

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


  11 in total

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3.  Region-of-interest image reconstruction with intensity weighting in circular cone-beam CT for image-guided radiation therapy.

Authors:  Seungryong Cho; Erik Pearson; Charles A Pelizzari; Xiaochuan Pan
Journal:  Med Phys       Date:  2009-04       Impact factor: 4.071

4.  Feasibility of volume-of-interest (VOI) scanning technique in cone beam breast CT--a preliminary study.

Authors:  Lingyun Chen; Chris C Shaw; Mustafa C Altunbas; Chao-Jen Lai; Xinming Liu; Tao Han; Tianpeng Wang; Wei T Yang; Gary J Whitman
Journal:  Med Phys       Date:  2008-08       Impact factor: 4.071

5.  Dual resolution cone beam breast CT: a feasibility study.

Authors:  Lingyun Chen; Youtao Shen; Chao-Jen Lai; Tao Han; Yuncheng Zhong; Shuaiping Ge; Xinming Liu; Tianpeng Wang; Wei T Yang; Gary J Whitman; Chris C Shaw
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6.  Investigation of pore structure in cobalt chrome additively manufactured parts using X-ray computed tomography and three-dimensional image analysis.

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7.  Four-dimensional volume-of-interest reconstruction for cone-beam computed tomography-guided radiation therapy.

Authors:  Moiz Ahmad; Peter Balter; Tinsu Pan
Journal:  Med Phys       Date:  2011-10       Impact factor: 4.071

8.  Investigation of spatial resolution characteristics of an in vivo micro computed tomography system.

Authors:  Muhammad U Ghani; Zhongxing Zhou; Liqiang Ren; Yuhua Li; Bin Zheng; Kai Yang; Hong Liu
Journal:  Nucl Instrum Methods Phys Res A       Date:  2016-01-21       Impact factor: 1.455

9.  Rotational micro-CT using a clinical C-arm angiography gantry.

Authors:  V Patel; K R Hoffmann; C N Ionita; C Keleshis; D R Bednarek; S Rudin
Journal:  Med Phys       Date:  2008-10       Impact factor: 4.071

10.  Dynamic intensity-weighted region of interest imaging for conebeam CT.

Authors:  Erik Pearson; Xiaochuan Pan; Charles Pelizzari
Journal:  J Xray Sci Technol       Date:  2016-03-17       Impact factor: 1.535

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