Study of open-type magnetically shielded room for MRI

被引:0
|
作者
Kamata K. [1 ]
Tamari Y. [1 ]
Temma S. [1 ]
Goto K. [1 ]
Yunokuchi K. [2 ]
机构
[1] National Institute of Technology, Kagoshima College, 1460-1, Shinko, Hayato, Kirishima-shi, Kagoshima
[2] Kagoshima University, 1-21-40, Korimoto, Kagoshima-shi, Kagoshima
关键词
3D magnetic field analysis; Amenity improvement; Lattice shape; Magnetic material plate; Open-type magnetically shielded room; Square cylinder made by magnetic material;
D O I
10.1541/ieejeiss.138.799
中图分类号
学科分类号
摘要
The magnetic resonance imaging (MRI) is usually installed in a magnetically shielded room (MSR), in order to reduce the leakage flux density to less than 0.5 mT outside the room. The small space enclosed by the wall causes patients a great deal of stress and discomfort because they are isolated from the operators and from the scenery outside. In order to improve amenity for patients in hospitals, open type of MSRs for MRI, which use canceling coils, combined with square cylinders made by magnetic and conductive material, and magnetic material plates instead of magnetic walls. The magnetic shielding effects of open type of magnetically shielded room combined with square cylinders model made by magnetic, conductive material, magnetic material plates model and lattice shape model made of magnetic material for MRI are estimated by 3-D magnetic field analysis. In this report, we clarified simple lattice of magnetic plate with gap to improve shielding performance using 3D magnetic field analysis. © 2018 The Institute of Electrical Engineers of Japan.
引用
收藏
页码:799 / 804
页数:5
相关论文
共 50 条
  • [31] Passive Shimming of Magnetically Shielded Room Using Ferromagnetic Plates
    Jin, Shixu
    Kuwahata, Akihiro
    Chikaki, Shinichi
    Hatano, Mutsuko
    Sekino, Masaki
    IEEE TRANSACTIONS ON MAGNETICS, 2022, 58 (02)
  • [32] Optimal structure of magnetic and conductive layers of a magnetically shielded room
    Yamazaki, Keita
    Muramatsu, Kazuhiro
    Hirayama, Masayuki
    Haga, Akira
    Torita, Fumihiko
    IEEE TRANSACTIONS ON MAGNETICS, 2006, 42 (10) : 3524 - 3526
  • [33] FIRE DETECTION IN OPEN-TYPE HYDROGENERATORS
    DAWSON, CW
    IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1970, PA89 (06): : 1100 - &
  • [34] Study on sound transmission between open-type classrooms by numerical analysis
    Nakajima, Akihiro
    Ueno, Kanako
    Yokota, Takatoshi
    Sakamoto, Shinichi
    Tachibana, Hideki
    ACOUSTICAL SCIENCE AND TECHNOLOGY, 2005, 26 (06) : 537 - 539
  • [35] Retaining function of open-type sabo dams
    Lin, PS
    Chang, WJ
    Liu, KS
    DEBRIS-FLOW HAZARDS MITIGATION: MECHANICS, PREDICTION & ASSESSMENT, 1997, : 636 - 645
  • [36] Open-type mixing device of a bubble structure
    Lepeshinskii I.A.
    Istomin E.A.
    Zarankevich I.A.
    Reshetnikov V.A.
    Russian Aeronautics, 2016, 59 (03): : 371 - 375
  • [37] INTERMITTENT LIGHTING FOR LAYERS IN OPEN-TYPE HOUSING
    MATHER, FB
    POULTRY SCIENCE, 1982, 61 (07) : 1507 - 1507
  • [38] A CASE STUDY OF A SHIELDED ROOM
    THOMPSON, NP
    ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1967, 22 (03): : 290 - &
  • [39] DEVELOPMENT OF A MAGNETICALLY SHIELDED ROOM EQUIPPED WITH AN AUTOMATIC DOOR FOR BIOMAGNETIC MEASUREMENTS
    Odawara S.
    Sakakibara M.
    Sakurai J.
    Adachi Y.
    AIJ Journal of Technology and Design, 2022, 28 (69) : 727 - 732
  • [40] Design of a magnetically shielded room for development of HTS SQUID systems for magnetocardiography
    Davidson, CR
    Griffin, RH
    Best, KJ
    Maltin, L
    Wolf, W
    Zhang, Y
    Bousack, H
    Soltner, H
    BIOMAG 96: PROCEEDINGS OF THE TENTH INTERNATIONAL CONFERENCE ON BIOMAGNETISM, VOLS I & II, 2000, : 35 - 38