1D Gamma Counting Approach to Study Radiopharmaceutical Kinetics

被引:0
作者
Boisson, F. [1 ]
Bekaert, V. [1 ]
El Bitar, Z. [1 ]
Steibel, J. [1 ]
Huss, D. [1 ]
Brasse, D. [1 ]
机构
[1] IN2P3, CNRS, Inst Pluridisciplinaire Hubert Curien, UMR 7178, F-67037 Strasbourg 02, France
来源
2008 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (2008 NSS/MIC), VOLS 1-9 | 2009年
关键词
STRIP DETECTOR; SIMULATION; SYSTEM; SPECT;
D O I
暂无
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
Some current researches based on small animal model are dedicated to functional cerebral imaging which represents a fundamental tool to understand the mechanisms involved in neurodegenerative diseases. In the radiopharmaceutical development approach, the main challenge is to measure the radioactivity distribution in the brain of a subject with good temporal and spatial resolutions in order to investigate the behaviors of new radiopharmaceuticals inside the injected subject. In the case where the isotope is a single photon emitter, we present a 1 D gamma counter to investigate the possibility to obtain both high detection efficiency and good spatial resolution to access the kinetic of radiopharmaceutical in the brain of a mouse. The system consists in a 64 channels Multi-Anode PhotoMultiplier Tube (H8804, Hamamatsu Corp.) coupled to a highly segmented YAP:Ce crystal consisting of 32 strips of 0.575 x 18.4 x 10 mm(3). The collimation is made of 33 tungsten slats of 100 mu m thick with a 40 mm height optimized using GEANT4 Monte Carlo simulations. For a field of view of 18.4 x 18.4 mm(2), the intrinsic spatial resolution is equal to 575 mu m with a total detection efficiency of 0.29% for an extended source. The geometry of this new gamma counter gives one kinetic curve per strip to finally get the radiopharmaceutical kinetic in the whole brain of the mouse. To obtain a 2D projection of the brain radioactivity distribution, a spin rotation procedure can be applied. The gamma counter can also be combined to a microCT system to obtain anatomical information.
引用
收藏
页码:4057 / 4061
页数:5
相关论文
共 8 条
  • [1] GEANT4-a simulation toolkit
    Agostinelli, S
    Allison, J
    Amako, K
    Apostolakis, J
    Araujo, H
    Arce, P
    Asai, M
    Axen, D
    Banerjee, S
    Barrand, G
    Behner, F
    Bellagamba, L
    Boudreau, J
    Broglia, L
    Brunengo, A
    Burkhardt, H
    Chauvie, S
    Chuma, J
    Chytracek, R
    Cooperman, G
    Cosmo, G
    Degtyarenko, P
    Dell'Acqua, A
    Depaola, G
    Dietrich, D
    Enami, R
    Feliciello, A
    Ferguson, C
    Fesefeldt, H
    Folger, G
    Foppiano, F
    Forti, A
    Garelli, S
    Giani, S
    Giannitrapani, R
    Gibin, D
    Cadenas, JJG
    González, I
    Abril, GG
    Greeniaus, G
    Greiner, W
    Grichine, V
    Grossheim, A
    Guatelli, S
    Gumplinger, P
    Hamatsu, R
    Hashimoto, K
    Hasui, H
    Heikkinen, A
    Howard, A
    [J]. NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2003, 506 (03) : 250 - 303
  • [2] BARD P, 2005, 14 IEEE NPSS REAL TI
  • [3] Design and simulation of a high-resolution stationary SPECT system for small animals
    Beekman, FJ
    Vastenhouw, B
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2004, 49 (19) : 4579 - 4592
  • [4] BEEKMAN FJ, 2005, J NUCL MED, V46
  • [5] Towards an inline reconstruction architecture for micro-CT systems
    Brasse, D
    Humbert, B
    Mathelin, C
    Rio, MC
    Guyonnet, JL
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2005, 50 (24) : 5799 - 5811
  • [6] METZLER SD, 2006, J NUCL MED, V47
  • [7] System characteristics of SPECT with a slat collimated strip detector
    Vandenberghe, S
    Van Holen, R
    Staelens, S
    Lemahieu, I
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2006, 51 (02) : 391 - 405
  • [8] CdZnTe strip detector SPELT imaging with a slit collimator
    Zeng, GSL
    Gagnon, D
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2004, 49 (11) : 2257 - 2271