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PET image reconstruction with a system matrix containing point spread function derived from single photon incidence response
Authors:Fan Xin;Wang Hai-Peng;Yun Ming-Kai;Sun Xiao-Li;Cao Xue-Xiang;Liu Shuang-Quan;Chai Pei;Li Dao-Wu;Liu Bao-Dong;Wang Lu;Wei Long
Institution:a Key Laboratory of Nuclear Analytical Techniques, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China; b University of Chinese Academy of Sciences, Beijing 100049, China; c Beijing Engineering Research Center of Radiographic Techniques and Equipment, Beijing 100049, China
Abstract:A point spread function(PSF)for the blurring component in positron emission tomography(PET)is studied.The PSF matrix is derived from the single photon incidence response function.A statistical iterative reconstruction(IR)method based on the system matrix containing the PSF is developed.More specifically,the gamma photon incidence upon a crystal array is simulated by Monte Carlo(MC)simulation,and then the single photon incidence response functions are calculated.Subsequently,the single photon incidence response functions are used to compute the coincidence blurring factor according to the physical process of PET coincidence detection.Through weighting the ordinary system matrix response by the coincidence blurring factors,the IR system matrix containing the PSF is finally established.By using this system matrix,the image is reconstructed by an ordered subset expectation maximization(OSEM)algorithm.The experimental results show that the proposed system matrix can substantially improve the image radial resolution,contrast,and noise property.Furthermore,the simulated single gamma-ray incidence response function depends only on the crystal configuration,so the method could be extended to any PET scanner with the same detector crystal configuration.
Keywords:point spread function  single photon incidence  system matrix  positron emission tomography
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