IP Library Granted Patent US 10,067,202
Granted Patent B2
US 10,067,202 · App. 14/841,090 · Granted Sep 4, 2018

Magnetic resonance imaging apparatus and gradient coil

Inventor: Yoshitomo Sakakura (Tochigi, JP)
Assignee: TOSHIBA MEDICAL SYSTEMS CORPORATION
G01R33/3403G01R33/3856G01R33/3858G01R33/4215
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Quick Facts
Patent No.
US 10,067,202
App. No.
14/841,090
Granted
Sep 4, 2018
Kind
B2
Abstract

A magnetic resonance imaging apparatus includes a static magnetic field magnet and a gradient coil. The static magnetic field magnet generates a static magnetic field. The gradient coil is provided on an inside of the static magnetic field magnet and includes an X coil, a Y coil and a Z coil. The X coil generates a gradient magnetic field along a horizontal axis of a substantially circular cylinder, the horizontal axis being perpendicular to a long axis. The Y coil generates a gradient magnetic field along a vertical axis of the substantially circular cylinder. The Z coil generates a gradient magnetic field along the long axis of the substantially circular cylinder. In the gradient coil, coils are laminated in such a manner that the X coil is positioned more distant from a magnetic field center than the Y coil is.

Claims (20)

1. A magnetic resonance imaging apparatus comprising:

a static magnetic field magnet configured to generate a static magnetic field; and a composite gradient coil disposed inside the static magnetic field magnet and including a first set of coils configured to generate gradient magnetic fields, a second set of coils configured to cancel out leakage magnetic fields from the first set of coils and a cooling conduit disposed between the first set of coils and the second set of coils, the first set of coils including: (i) an X coil configured to generate a gradient magnetic field along a horizontal axis of a substantially circular cylinder, the horizontal axis being perpendicular to a long axis of the substantially circular cylinder, (ii) a Y coil configured to generate a gradient magnetic field along a vertical axis of the substantially circular cylinder, and (iii) a Z coil configured to generate a gradient magnetic field along the long axis of the substantially circular cylinder,

the second set of coils also including an X coil, a Y coil and a Z coil, wherein

in the composite gradient coil, coils are laminated, starting from a position closest to the center of the substantially circular cylinder, in an order of YXZ of the first set of coils, the cooling conduit, and ZYX of the second set of coils.

2. The magnetic resonance imaging apparatus according to claim 1 , wherein no cooling pipe is disposed inside the first set of coils.

3. The magnetic resonance imaging apparatus according to claim 1 , wherein, in the composite gradient coil, coils are laminated in such a manner that an inter-layer distance between the X coil included in the first set of coils and the X coil included in the second set of coils is substantially equal to an inter-layer distance between the Y coil included in the first set of coils and the Y coil included in the second set of coils.

4. The magnetic resonance imaging apparatus according to claim 1 , including a magnetic resonance imaging system sequence controller configured to acquire a magnetic resonance image by performing an Echo Planar Imaging (EPI) process.

5. A composite gradient coil configured for disposition inside a static magnetic field magnet of a magnetic resonance imaging system, the composite gradient coil including a first set of coils configured to generate gradient magnetic fields, a second set of coils configured to cancel out leakage magnetic fields from the first set of coils and a cooling conduit disposed between the first set of coils and the second set of coils, the first set of coils comprising: (i) an X coil configured to generate a gradient magnetic field along a horizontal axis of a substantially circular cylinder, the horizontal axis being perpendicular to a long axis of the substantially circular cylinder, (ii) a Y coil configured to generate a gradient magnetic field along a vertical axis of the substantially circular cylinder, and (ii) a Z coil configured to generate a gradient magnetic field along the long axis of the substantially circular cylinder,

the second set of coils also comprising an X coil, a Y coil and a Z coil,

wherein

in the composite gradient coil, coils are laminated, starting from a position closest to the center of the substantially circular cylinder, in an order of YXZ of the first set of coils, the cooling conduit, and ZYX of the second set of coils.

6. A magnetic resonance imaging apparatus comprising:

a static magnetic field magnet configured to generate a static magnetic field; and

a composite gradient coil disposed inside the static magnetic field magnet and including a first set of coils configured to generate gradient magnetic fields, a second set of coils configured to cancel out leakage magnetic fields of the first set of coils and a cooling conduit disposed between the first set of coils and the second set of coils, the first set of coils including: (i) an X coil configured to generate a gradient magnetic field along a horizontal axis of a substantially circular cylinder, the horizontal axis being perpendicular to a long axis of the substantially circular cylinder, (ii) a Y coil configured to generate a gradient magnetic field along a vertical axis of the substantially circular cylinder, and (iii) a Z coil configured to generate a gradient magnetic field along the long axis of the substantially circular cylinder,

the second set of coils also including an X coil, a Y coil and a Z coil,

wherein

in the composite gradient coil, coils are laminated, starting from a position closest to the center of the substantially circular cylinder, in an order of YXZ of the first set of coils, the cooling conduit, and the ZXY of the second set of coils.

7. A composite gradient coil configured for disposition inside a static magnetic field magnet of a magnetic resonance imaging system, the composite gradient coil including a first set of coils configured to generate gradient magnetic fields, a second set of coils configured to cancel out leakage magnetic fields of the first set of coils and a cooling conduit disposed between the first set of coils and the second set of coils, the first set of coils comprising: (i) an X coil configured to generate a gradient magnetic field along a horizontal axis of a substantially circular cylinder, the horizontal axis being perpendicular to a long axis of the substantially circular cylinder, (ii) a Y coil configured to generate a gradient magnetic field along a vertical axis of the substantially circular cylinder, and (iii) a Z coil configured to generate a gradient magnetic field along the long axis of the substantially circular cylinder,

the second set of coils also comprising an X coil, a Y coil and a Z coil, wherein

in the composite gradient coil, coils are laminated, starting from a position closest to the center of the substantially circular cylinder, in an order of YXZ for the first set of coils, the cooling conduit, and in an order of ZXY for the second set of coils.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038831/0922 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2016
From: SAKAKURA, YOSHITMOMO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 037848/0381 →
Priority Claims (1)
JP 2013-040895 · Mar 1, 2013 · national
Continuity (1)
Related Publication 20150369884A1 · Dec 24, 2015