DocumentCode :
1286565
Title :
Performance Measurements of the MicroPET FOCUS 120 for Iodine-124 Imaging
Author :
Taleb, Dounia ; Bahri, Mohamed Ali ; Warnock, Geoffrey ; Salmon, Eric ; Luxen, André ; Plenevaux, Alain ; Anizan, Nadège ; Seret, Alain
Author_Institution :
Exp. Med. Imaging Lab., Univ. of Liege, Liege, Belgium
Volume :
59
Issue :
5
fYear :
2012
Firstpage :
1868
Lastpage :
1878
Abstract :
This study aimed to evaluate the performance of the microPET FOCUS 120 for 124I in terms of counting rate capability and image quality using the NEMA NU 4-2008 methodology. Scanner sensitivity was measured for 124I for comparison and reached 75 cps/kBq, respectively, with the usual 350-650 keV energy window (EW) and 6 ns time window (TW). The noise equivalent count rate (NECR) index was defined as: NECR = RT2 /(RP +RGP) ( T = true, P = prompt, GP = γ-prompt). A rat phantom maximum NECR of 48 kcps was obtained for the 250-590 keV EW with 6 ns TW. An almost identical maximum NECR of 43 kcps was recorded for 350-590 and 350-650 keV EW and 6 ns TW. The 2 ns TW reduced the sensitivity and NECR by 40-50% for all EW. The mouse phantom NECR study was limited because of the maximum available activity concentration of 124I. The 250-590 keV EW showed the largest scatter and γ-prompt plus scatter fractions with 25.7% and 43%, respectively, for the rat phantom and 12.2% and 27% for the mouse phantom. With the 350-590 keV EW, these fractions decreased to 20% and 33.5% for the rat phantom and to 10% and 21% for the mouse phantom. The image quality was investigated with the NEMA NU 4-2008 dedicated phantom for four (two analytic and two iterative) 2D or 3D reconstruction methods. The lowest spillover ratios (SOR) for the phantom non-emitting regions were obtained for the 350-590 and 350-650 keV EWs. Recovery coefficients (RC) of the hot rods were the highest for the 350-590 keV EW except for the 1 mm rod. Scatter correction led to a large decrease in RC. The combination of the 350-590 keV EW with 6 ns TW appeared to be a good compromise between counting rate capability and image quality for the FOCUS 120, especially when maximum a posteriori reconstruction was used without scatter correction. Moreover this combination enabled the best quantification with an error as low as 0.36%.
Keywords :
image denoising; image reconstruction; iodine; iterative methods; medical image processing; phantoms; positron emission tomography; sensitivity; 2D reconstruction methods; 3D reconstruction methods; I; NEMA NU 4-2008 methodology; counting rate capability; electron volt energy 250 keV to 650 keV; hot rods; image quality; iodine-124 imaging; iterative method; maximum a posteriori reconstruction; maximum available activity concentration; microPET FOCUS 120 performance measurements; mouse phantom NECR; noise equivalent count rate index; phantom nonemitting regions; rat phantom maximum NECR; recovery coefficients; scanner sensitivity; spillover ratios; time 2 ns; time 6 ns; Image quality; Image reconstruction; Isotopes; Mice; Phantoms; Sensitivity; Spatial resolution; Iodine-124; microPET; performance tests;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2012.2205402
Filename :
6304946
Link To Document :
بازگشت