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    • 71. 发明授权
    • Inspection apparatus using magnetic resonance
    • 使用磁共振的检查装置
    • US5600245A
    • 1997-02-04
    • US319724
    • 1994-10-07
    • Etsuji YamamotoHisaaki OchiHiroyuki ItagakiYukari OnoderaHiroyuki Takeuchi
    • Etsuji YamamotoHisaaki OchiHiroyuki ItagakiYukari OnoderaHiroyuki Takeuchi
    • G01R33/385G01R33/565G01V3/00
    • G01R33/385G01R33/56518
    • An inspection apparatus using magnetic resonance includes magnetic field generators for generating a static magnetic field, a gradient magnetic field and a radio frequency magnetic field, respectively, a signal detector for detecting magnetic resonance signals from an inspected object, a computer for executing arithmetic operations for detection signals from the signal detector and an output device of the result of the arithmetic operations by the computer. The gradient magnetic field generator includes first and second gradient coils, the first gradient coil is a coil fixed to a magnet for generating a static magnetic field, the second gradient coil is a movable coil, and the magnetic field generated by the second gradient coil at a conducting portion of the magnet is offset by the magnetic field generated by the first gradient coil. According to this construction, an eddy current that occurs with the time change of the gradient magnetic field can be reduced.
    • 使用磁共振的检查装置包括分别产生静磁场,梯度磁场和射频磁场的磁场发生器,用于检测来自被检查物体的磁共振信号的信号检测器,用于执行用于 来自信号检测器的检测信号和计算机的算术运算结果的输出装置。 梯度磁场发生器包括第一和第二梯度线圈,第一梯度线圈是固定到磁体上以产生静态磁场的线圈,第二梯度线圈是可动线圈,并且由第二梯度线圈产生的磁场在 磁体的导电部分由第一梯度线圈产生的磁场偏移。 根据该结构,可以减少随着梯度磁场的时间变化而发生的涡电流。
    • 75. 发明授权
    • Inspection method and apparatus using nuclear magnetic resonance (NMR)
    • 使用核磁共振(NMR)的检查方法和装置
    • US5371465A
    • 1994-12-06
    • US850589
    • 1992-03-13
    • Yukari OnoderaEtsuji YamamotoRyuichi Suzuki
    • Yukari OnoderaEtsuji YamamotoRyuichi Suzuki
    • G01R33/24G01R33/3875G01R33/565G01R33/20
    • G01R33/3875G01R33/24G01R33/56563
    • In an inspection apparatus using nuclear magnetic resonance (NMR), a spatial distribution of homogeneity of a static magnetic field can be quickly measured even when a heterogeneous object is inspected, by measuring simultaneously phase data and a transverse relaxation time at the same spatial position of the heterogeneous object, removing the difference of a phase term due to a chemical shift by anticipating components at that position and obtaining only the phase data resulting from static magnetic field inhomogeneity. A plurality of low-pass filters are provided to a shim power supply unit for driving a shim coil for generating additional static magnetic fields to correct static magnetic field homogeneity so that a low-pass filter having a small time constant is used at the time of adjustment of static magnetic field homogeneity so as quickly adjust static magnetic field homogeneity, and a low-pass filter having a large time constant is used at the time of the actual measurement of the object in order to prevent degradation of S/N of signals.
    • 在使用核磁共振(NMR)的检查装置中,即使在异质物体被检查时也可以快速地测量静态磁场的均匀性的空间分布,通过同时测量相位数据和相同空间位置处的横向弛豫时间 异质物体,通过预测该位置处的分量来消除由于化学位移引起的相位项的差异,并且仅获得由静态磁场不均匀性产生的相位数据。 多个低通滤波器被提供给垫片电源单元,用于驱动垫片线圈以产生额外的静态磁场,以校正静态磁场均匀性,使得在使用具有小时间常数的低通滤波器时 调整静磁场均匀性,以便快速调整静磁场均匀性,并且在物体的实际测量时使用具有大时间常数的低通滤波器,以防止信号的S / N的劣化。