DocumentCode
907181
Title
Matrix-Based Image Reconstruction Methods for Tomography
Author
Llacer, Jorge ; Meng, John D.
Author_Institution
Lawrence Berkeley Laboratory University of California Berkeley, California 94720 U.S.A.
Volume
32
Issue
1
fYear
1985
Firstpage
855
Lastpage
864
Abstract
Matrix methods of image reconstruction have not been used, in general, because of the large size of practical matrices, ill condition upon inversion and the success of Fourier-based techniques. An exception is the work that has been done at the Lawrence Berkeley Laboratory for imaging with accelerated radioactive ions. An extension of that work into more general imaging problems shows that, with a correct formulation of the problem, positron tomography with ring geometries results in well behaved matrices which can be used for image reconstruction with no distortion of the point response in the field of view and flexibility in the design of the instrument. Maximum Likelihood Estimator methods of reconstruction, which use the system matrices tailored to specific instruments and do not need matrix inversion, are shown to result in good preliminary images. A parallel processing computer structure based on multiple inexpensive microprocessors is proposed as a system to implement the matrix-MLE methods.
Keywords
Acceleration; Concurrent computing; Geometry; Image reconstruction; Instruments; Laboratories; Maximum likelihood estimation; Parallel processing; Positrons; Tomography;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.1985.4336955
Filename
4336955
Link To Document