DocumentCode :
1531549
Title :
Attenuation correction for PET using count-limited transmission images reconstructed with median root prior
Author :
Alenius, S. ; Ruotsalainen, U. ; Astola, Jaakko
Author_Institution :
Signal Process. Lab., Tampere Univ. of Technol., Finland
Volume :
46
Issue :
3
fYear :
1999
fDate :
6/1/1999 12:00:00 AM
Firstpage :
646
Lastpage :
651
Abstract :
Quantitative PET studies require the computation of the attenuation correction factors (ACFs) for compensating the body attenuation effect in the emission data. Short acquisition times for transmission are desired, because of patient comfort and movement elimination. In practice, long acquisition times are used, due to the statistical noise of count-limited scans. In order to reduce the noise, the median root prior (MRP) iterative reconstruction method was used for reconstruction of short-acquisition-time transmission images. Using these images, the ACFs were generated for correction of emission data. The new approach allows for scan times of 2 min or less, which is desirable for quantitative whole-body PET studies. The new method is object-independent and robust, because no smoothing of the scan data or segmentation of the images are used
Keywords :
X-ray absorption; data acquisition; error compensation; error correction; image reconstruction; iterative methods; medical image processing; motion compensation; positron emission tomography; 2 min; attenuation correction factors; body attenuation effect compensation; count-limited scans; count-limited transmission images; emission data correction; image reconstruction; iterative reconstruction method; median root prior; noise reduction; object-independent robust method; patient comfort; patient movement elimination; positron emmission tomography; quantitative whole-body PET studies; scan times; short acquisition times; statistical noise; Attenuation; Image reconstruction; Iterative methods; Materials requirements planning; Noise reduction; Positron emission tomography; Reconstruction algorithms; Robustness; Smoothing methods; Whole-body PET;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.775593
Filename :
775593
Link To Document :
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