Investigation of PET Imaging Experiment and Monte Carlo Simulation for Cancer Therapy Using Heavy-Ion Beams at HIRFL

  • For cancer therapy using heavy-ion beams at HIRFL, a simple Positron Emission Tomography(PET) imaging system was made using two position sensitive BGO scintillator detectors. The object images and γ ray energy spectra were measured for the PET. The energy resolution for the 511keV full energy peak is 18.6% and its countiong fraction is 52 4%. Monte Carlo calculations were performed for the PET imaging system by using GEANT3 code. The object images and γ ray energy spectra are in good agreement with the experimental data. In order to develop a PET imaging system with high efficiency, good resolution and low cost, the PET imaging system was optimized.
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CHEN Zhi-Qiang, YE Yan-Lin, LI Chen, YANG Yong-Feng, ZHAN Wen-Long, XIAO Guo-Qing, XU Hu-Shan, GUO Zhong-Yan, LI Wen-Fei, JIANG Dong-Xing, WANG Quan-Jin, ZHENG Tao, Investigation of PET Imaging Experiment and Monte Carlo Simulation for Cancer Therapy Using Heavy-Ion Beams at HIRFL[J]. Chinese Physics C, 2004, 28(7): 792-796.
CHEN Zhi-Qiang, YE Yan-Lin, LI Chen, YANG Yong-Feng, ZHAN Wen-Long, XIAO Guo-Qing, XU Hu-Shan, GUO Zhong-Yan, LI Wen-Fei, JIANG Dong-Xing, WANG Quan-Jin, ZHENG Tao, Investigation of PET Imaging Experiment and Monte Carlo Simulation for Cancer Therapy Using Heavy-Ion Beams at HIRFL[J]. Chinese Physics C, 2004, 28(7): 792-796. shu
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Received: 2003-11-11
Revised: 1900-01-01
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Investigation of PET Imaging Experiment and Monte Carlo Simulation for Cancer Therapy Using Heavy-Ion Beams at HIRFL

    Corresponding author: YE Yan-Lin,
  • Department of Technical Physics and the DOE Key Laboratory of Heavy Ion Physics,Peking University,Beijing 100871,China2 Institute of Modern Physics,Chinese Academy of Sciences,Lanzhou 730000,China

Abstract: For cancer therapy using heavy-ion beams at HIRFL, a simple Positron Emission Tomography(PET) imaging system was made using two position sensitive BGO scintillator detectors. The object images and γ ray energy spectra were measured for the PET. The energy resolution for the 511keV full energy peak is 18.6% and its countiong fraction is 52 4%. Monte Carlo calculations were performed for the PET imaging system by using GEANT3 code. The object images and γ ray energy spectra are in good agreement with the experimental data. In order to develop a PET imaging system with high efficiency, good resolution and low cost, the PET imaging system was optimized.

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