Interest of the ordered subsets expectation maximization (OS-EM) algorithm in pinhole single-photon emission tomography reconstruction: a phantom study

被引:70
作者
Vanhove, C
Defrise, M
Franken, PR
Everaert, H
Deconinck, F
Bossuyt, A
机构
[1] Free Univ Brussels, Univ Hosp, Div Nucl Med, AZ VUB, B-1090 Brussels, Belgium
[2] Free Univ Brussels, Div Expt Med Imaging, Brussels, Belgium
关键词
pinhole; reconstruction; OS-EM algorithm;
D O I
10.1007/s002590050019
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Pinhole single-photon emission tomography (SPET) has been proposed to improve the trade-off between sensitivity and resolution for small organs located in close proximity to the pinhole aperture. This technique is hampered by artefacts in the non-central slices. These artefacts are caused by truncation and by the fact that the pinhole PET data collected in a circular orbit do not contain sufficient information for exact reconstruction. The ordered subsets expectation maximization (OS-EM) algorithm is a potential solution to these problems. in this study a three-dimensional OS-EM algorithm was implemented for data acquired on a single-head gamma camera equipped with a pinhole collimator (PH OS-EM). The aim of this study was to compare the PH OS-EM algorithm with the filtered back-projection algorithm of Feldkamp, Davis and Kress (FDK) and with the conventional parallel-hole geometry as a whole, using a line source phantom, Picker's thyroid phantom and a phantom mimicking the human cervical column. Correction for the angular dependency of the sensitivity in the pinhole geometry was based on a uniform flood acquisition. The projection data were shifted according to the measured centre of rotation. No correction was made for attenuation, scatter or distance-dependent camera resolution. The resolution measured with the Line source phantom showed a significant improvement with PH OS-EM as compared with FDK, especially in the axial direction. Using Picker's thyroid phantom, one iteration with eight subsets was sufficient to obtain images with similar noise levels in uniform regions of interest to those obtained with the FDK algorithm. With these parameters the reconstruction time was 2.5 times longer than for the FDK method. Furthermore, there was a reduction in the artefacts caused by the circular orbit SPET acquisition. The images obtained from the phantom mimicking the human cervical column indicated that the improvement in image quality with PN OS-EM is relevant for future clinical use and that the improvements obtained using the OS-EM algorithm ale more significant for the pinhole geometry than for the conventional parallel-hole geometry. We conclude that PH OS-EM is a practical and promising alternative for pinhole SPET reconstruction.
引用
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页码:140 / 146
页数:7
相关论文
共 17 条
[1]  
Bahk YW, 1998, J NUCL MED, V39, P130
[2]  
Bahk YW, 1998, J NUCL MED, V39, P1444
[3]   PRACTICAL CONE-BEAM ALGORITHM [J].
FELDKAMP, LA ;
DAVIS, LC ;
KRESS, JW .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1984, 1 (06) :612-619
[4]  
Hutton BF, 1997, EUR J NUCL MED, V24, P797
[5]  
ISHIZU K, 1995, J NUCL MED, V36, P2282
[6]   PINHOLE COLLIMATION FOR ULTRA-HIGH-RESOLUTION, SMALL-FIELD-OF-VIEW SPECT [J].
JASZCZAK, RJ ;
LI, JY ;
WANG, HL ;
ZALUTSKY, MR ;
COLEMAN, RE .
PHYSICS IN MEDICINE AND BIOLOGY, 1994, 39 (03) :425-437
[7]   CONE BEAM COLLIMATION FOR SINGLE PHOTON-EMISSION COMPUTED-TOMOGRAPHY - ANALYSIS, SIMULATION, AND IMAGE-RECONSTRUCTION USING FILTERED BACKPROJECTION [J].
JASZCZAK, RJ ;
FLOYD, CE ;
MANGLOS, SH ;
GREER, KL ;
COLEMAN, RE .
MEDICAL PHYSICS, 1986, 13 (04) :484-489
[8]   SINGLE PHOTON-EMISSION COMPUTED-TOMOGRAPHY USING MULTI-SLICE FAN BEAM COLLIMATORS [J].
JASZCZAK, RJ ;
CHANG, LT ;
MURPHY, PH .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1979, 26 (01) :610-618
[9]   A FILTERED BACKPROJECTION ALGORITHM FOR PINHOLE SPECT WITH A DISPLACED CENTER OF ROTATION [J].
LI, JY ;
JASZCZAK, RJ ;
GREER, KL ;
COLEMAN, RE .
PHYSICS IN MEDICINE AND BIOLOGY, 1994, 39 (01) :165-176
[10]  
NATTERER S, 1986, MATH COMPUTERIZED TO