Study of the effect of magnetic field in positron range using GATE simulation toolkit

被引:12
|
作者
Soultanidis, G. [1 ]
Karakatsanis, N.
Nikiforidis, G. [1 ]
Loudos, G.
机构
[1] Univ Patras, Dept Med Phys, Sch Med, Rion, Greece
关键词
PET SCANNER;
D O I
10.1088/1742-6596/317/1/012021
中图分类号
O59 [应用物理学];
学科分类号
摘要
In simultaneous PET-MR systems, the emitted positrons trajectory is influenced by the magnetic field. The aim of this study is to define that influence to the positron annihilation distribution. Monte Carlo methods have been applied, using GATE. Several isotopes were studied, in various types of materials and with different magnetic field strengths. The results showed variations in the positron range between different components and especially between the lung and water. Measurements of the 1-D positron annihilation distance indicated a reduction of the mean positron annihilation distance for (82)Rb of similar to 25%, (68)Ga of 19% and (18)F of 3.5%, at 3 Tesla. When the magnetic field was increased to 9.5 Tesla, the reduction was significant for all isotopes, and mainly for (68)Ga and (82)Rb, with approximately 41% reduction of the mean positron annihilation distance in water. Finally, the positron annihilation distribution varies according to the alignment with the magnetic field lines. The results of this study could be used to improve positron annihilation correction algorithms for simultaneous PET-MR acquisition, by taking under consideration the non-isotropic distribution.
引用
收藏
页数:4
相关论文
共 50 条
  • [1] Effect of the magnetic field on positron range using GATE for PET-MR
    Afroditi Eleftheriou
    Charalampos Tsoumpas
    Ottavia Bertolli
    Εfstathios Stiliaris
    EJNMMI Physics, 1 (Suppl 1)
  • [2] The effect of magnetic field strength on the positron range and projected annihilation artifact in integrated PET/MR systems: A GATE Monte Carlo study
    Barati, Sepideh
    Enferadi, Milad
    Sarkar, Saeed
    Geramifar, Parham
    MEDICAL PHYSICS, 2021, 48 (12) : 7712 - 7724
  • [3] Compressive effect of the magnetic field on the positron range in commonly used positron emitters simulated using Geant4
    Chong Li
    Xingzhong Cao
    Fuyan Liu
    Haohui Tang
    Zhiming Zhang
    Baoyi Wang
    Long Wei
    The European Physical Journal Plus, 132
  • [4] Compressive effect of the magnetic field on the positron range in commonly used positron emitters simulated using Geant4
    Li, Chong
    Cao, Xingzhong
    Liu, Fuyan
    Tang, Haohui
    Zhang, Zhiming
    Wang, Baoyi
    Wei, Long
    EUROPEAN PHYSICAL JOURNAL PLUS, 2017, 132 (11):
  • [5] Quantitative analysis of the effect of the magnetic field generated by a PET/MR scanner on positron range
    Ku-Toval, D.
    Rodriguez-Villafuerte, M.
    Avila-Rodriguez, M. A.
    Martinez-Davalos, A.
    Schalch, J. M.
    Alva-Sanchez, H.
    PHYSICS IN MEDICINE AND BIOLOGY, 2024, 69 (18):
  • [6] A SIMULATION STUDY OF A METHOD TO REDUCE POSITRON-ANNIHILATION SPREAD DISTRIBUTIONS USING A STRONG MAGNETIC-FIELD IN POSITRON EMISSION TOMOGRAPHY
    IIDA, H
    KANNO, I
    MIURA, S
    MURAKAMI, M
    TAKAHASHI, K
    UEMURA, K
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1986, 33 (01) : 597 - 600
  • [7] Evaluation of the effect of magnetic field on the positron range/PET spatial resolution in clinical PET scanners
    Cheng, Ju-Chieh
    Laforest, Richard
    Priatna, Agus
    JOURNAL OF NUCLEAR MEDICINE, 2012, 53
  • [8] Study of direct tunneling through ultrathin gate oxide of field effect transistors using Monte Carlo simulation
    Cassan, E
    Galdin, S
    Dollfus, P
    Hesto, P
    JOURNAL OF APPLIED PHYSICS, 1999, 86 (07) : 3804 - 3811
  • [9] EFFECT OF MAGNETIC FIELD ORIENTATION ON POSITRON ANNIHILATION IN POTASSIUM
    GUSTAFSON, DR
    BARNES, GT
    PHYSICAL REVIEW LETTERS, 1967, 18 (01) : 3 - +
  • [10] Monte Carlo simulation of MAMMI PET system and performance evaluation using GATE toolkit
    Emami, A.
    Ghadiri, H.
    Ghafarian, P.
    Geramifar, P.
    Ay, M.
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2018, 45 : S714 - S714