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    • 3. 发明授权
    • Superconducting magnet with magnetic shielding
    • 磁屏蔽超导磁体
    • US5517168A
    • 1996-05-14
    • US323648
    • 1994-10-17
    • Bizhan DorriEvangelos T. LaskarisMichele D. Ogle
    • Bizhan DorriEvangelos T. LaskarisMichele D. Ogle
    • G01R33/3815G01R33/421G01V3/00
    • G01R33/421G01R33/3815
    • A superconductive magnet with magnetic shielding has an annularly-cylindrical-shaped housing whose first end wall and outer cylindrical wall are magnetizable (e.g., iron) walls and whose inner cylindrical wall is a non-magnetizable wall. At least one main superconductive coil is positioned within the housing and carries an electric current in a first (e.g., clockwise) direction. A first resistive (e.g., copper) deflection coil is positioned outside the housing radially proximate the outer cylindrical wall and longitudinally closer to the first end wall than to a midpoint located between the two end walls. The first deflection coil carries an electric current in an opposite direction to the first direction so that its magnetic field longitudinally pushes the stray magnetic field of the superconductive coil(s), which leaves the magnet's bore, inward to be captured by the iron first end wall.
    • 具有磁屏蔽的超导磁体具有环形圆柱形的壳体,其第一端壁和外圆柱形壁是可磁化的(例如铁)壁,并且其内圆柱形壁是不可磁化的壁。 至少一个主超导线圈定位在壳体内并且以第一(例如,顺时针)方向承载电流。 第一电阻(例如铜)偏转线圈位于外壳的径向附近的外圆柱形壁处并且纵向更靠近第一端壁而不是位于两个端壁之间的中点。 第一偏转线圈沿着与第一方向相反的方向承载电流,使得其磁场纵向推动离开磁体孔的超导线圈的杂散磁场向内以被铁第一端捕获 壁。
    • 5. 发明授权
    • Over-shoulder MRI magnet for human brain imaging
    • 用于人脑成像的超肩MRI磁铁
    • US5416415A
    • 1995-05-16
    • US286364
    • 1994-08-05
    • Bizhan DorriEvangelos T. LaskarisMichele D. Ogle
    • Bizhan DorriEvangelos T. LaskarisMichele D. Ogle
    • A61B5/055G01R33/38G01R33/3815G01R33/3875G01V3/00
    • G01R33/3815G01R33/3806G01R33/3875
    • A magnetic resonance imaging (MRI) magnet having an annularly cylindrical-shaped vacuum enclosure with a longitudinal axis, first and second longitudinal ends, a first larger diameter bore extending from the first towards the second longitudinal end, and a second smaller diameter bore extending from the second longitudinal end to the first bore. First and second superconductive coils are placed in the vacuum enclosure with the first coil generally circumferentially surrounding the first bore and the second coil circumferentially surrounding the second bore, wherein the radial distance of the radially innermost portion of the second coil from the axis is smaller than the radius of the first bore. The first longitudinal end of the vacuum enclosure fits over a patient's shoulders with the patient's head at least partially passing through the first bore and extending into the second bore for MRI brain imaging.
    • 一种磁共振成像(MRI)磁体,其具有带有纵向轴线的环形圆柱形真空外壳,第一和第二纵向端部,从第一至第二纵向端部延伸的第一较大直径的孔,以及从第 第二纵向端到第一孔。 第一和第二超导线圈被放置在真空壳体中,其中第一线圈大致周向地围绕第一孔,第二线圈周向围绕第二孔,其中第二线圈的径向最内部分与轴线的径向距离小于 第一个孔的半径。 真空罩的第一纵向端部装配在患者的肩部上,患者的头部至少部分地穿过第一孔并延伸到用于MRI脑成像的第二孔中。
    • 7. 发明授权
    • Open MRI magnet with homogeneous imaging volume
    • 打开具有均匀成像体积的MRI磁体
    • US5574417A
    • 1996-11-12
    • US547002
    • 1995-10-23
    • Bizhan DorriEvangelos T. Laskaris
    • Bizhan DorriEvangelos T. Laskaris
    • G01R33/38G01R33/3815H01F7/22G01V3/00
    • G01R33/3806G01R33/3815
    • An open magnetic resonance imaging (MRI) magnet having first and second spaced-apart superconductive coil assemblies each including a toroidal-shaped coil housing containing a superconductive main coil. A generally annular-shaped permanent magnet array is associated with each coil assembly, being generally coaxially aligned with the associated coil assembly and being spaced radially inward and radially apart from the associated coil assembly's superconductive main coil. The permanent magnet arrays overcome the gross magnetic field distortions in the imaging volume of the superconductive main coils (created by the open space between the magnet's superconductive coil assemblies) to produce a magnetic field of high uniformity within the imaging volume.
    • 一种具有第一和第二间隔开的超导线圈组件的开放式磁共振成像(MRI)磁体,每个包括包含超导主线圈的环形线圈壳体。 大致环形的永磁体阵列与每个线圈组件相关联,其大体上与相关联的线圈组件同轴对准并且相对于相关联的线圈组件的超导主线圈径向向内和径向间隔开。 永磁体阵列克服了超导主线圈(由磁体超导线圈组件之间的开放空间产生)的成像体积中的总磁场失真,从而在成像体积内产生高均匀性的磁场。
    • 10. 发明授权
    • Open MRI magnet with uniform imaging volume
    • 打开具有均匀成像体积的MRI磁体
    • US5521571A
    • 1996-05-28
    • US553736
    • 1995-10-23
    • Evangelos T. LaskarisBizhan Dorri
    • Evangelos T. LaskarisBizhan Dorri
    • G01R33/38G01R33/3875G01V3/00H01F1/00H01F5/00
    • G01R33/3806G01R33/3875
    • An open magnetic resonance imaging (MRI) magnet having first and second spaced-apart superconductive coil assemblies each including a toroidal-shaped coil housing containing a superconductive main coil. A generally annular-shaped resistive coil is associated with each coil assembly, being generally coaxially aligned with the associated coil assembly and being spaced radially inward and radially apart from the associated coil assembly's superconductive main coil. The resistive coils overcome the gross magnetic field distortions in the imaging volume of the superconductive main coils (created by the open space between the magnet's superconductive coil assemblies) to produce a magnetic field of high uniformity within the imaging volume.
    • 一种具有第一和第二间隔开的超导线圈组件的开放式磁共振成像(MRI)磁体,每个包括包含超导主线圈的环形线圈壳体。 大致环形的电阻线圈与每个线圈组件相关联,与相关联的线圈组件大致同轴对准,并且与相关联的线圈组件的超导主线圈径向向内和径向间隔开。 电阻线圈克服了超导主线圈(由磁体的超导线圈组件之间的开放空间产生的)的成像体积中的总磁场失真,以在成像体积内产生高均匀性的磁场。