Title :
Region of interest reconstruction from truncated data in circular cone-beam CT
Author :
Yu, Lifeng ; Zou, Yu ; Sidky, Emil Y. ; Pelizzari, Charles A. ; Munro, Peter ; Pan, Xiaochuan
Author_Institution :
Dept. of Radiol., Chicago Univ., IL
fDate :
7/1/2006 12:00:00 AM
Abstract :
The circular scanning trajectory is one of the most widely adopted data-acquisition configurations in computed tomography (CT). The Feldkamp, Davis, Kress (FDK) algorithm and its various modifications have been developed for reconstructing approximately three-dimensional images from circular cone-beam data. When data contain transverse truncations, however, these algorithms may reconstruct images with significant truncation artifacts. It is of practical significance to develop algorithms that can reconstruct region-of-interest (ROI) images from truncated circular cone-beam data that are free of truncation artifacts and that have an accuracy comparable to that obtained from nontruncated cone-beam data. In this work, we have investigated and developed a backprojection-filtration (BPF)-based algorithm for ROI-image reconstruction from circular cone-beam data containing transverse truncations. Furthermore, we have developed a weighted BPF algorithm to exploit "redundant" information in data for improving image quality. In an effort to validate and evaluate the proposed BPF algorithms for circular cone-beam CT, we have performed numerical studies by using both computer-simulation data and experimental data acquired with a radiotherapy cone-beam CT system. Quantitative results in these studies demonstrate that the proposed BPF algorithms for circular cone-beam CT can reconstruct ROI images free of truncation artifacts
Keywords :
computerised tomography; image reconstruction; medical image processing; Feldkamp-Davis-Kress algorithm; backprojection-filtration; circular cone-beam CT; computed tomography; image reconstruction; radiotherapy; region-of-interest images; transverse truncations; truncated circular cone-beam data; Band pass filters; Breast; Computed tomography; Data acquisition; Filtering algorithms; Hardware; Image quality; Image reconstruction; Performance evaluation; Radiology; Computed tomography (CT); cone-beam CT; image reconstruction; region of interest (ROI); truncated projection;
Journal_Title :
Medical Imaging, IEEE Transactions on
DOI :
10.1109/TMI.2006.872329