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    • 2. 发明授权
    • Magnetic resonance imaging system
    • US5055789A
    • 1991-10-08
    • US480767
    • 1990-02-16
    • Masafumi KondoKozo Satoh
    • Masafumi KondoKozo Satoh
    • A61B5/055G01R33/48G01R33/561
    • G01R33/56554
    • An MRI system applies a phase encoding gradient field, a read-out gradient field, and an RF field to an object which is placed in a homogeneous static field in accordance with a predetermined pulse sequence so as to excite MR at a specific slice plane of the object, thereby detecting an MR signal from the object and visualizing the slice plane. The system includes a data acquiring section for acquiring all the data required for image reconstruction of the slice portion excited by the RF field within a time in which magnetization in the slice plane is relaxed, by switching the read-out gradient field to positive and negative polarities, an image reconstructing section for obtaining positive and negative time phase images which are respectively based on data acquired when the read gradient field is at positive time phases and data acquired when the read gradient field is at negative time phases by performing image reconstruction based on the respective data, a correcting section for correcting an image degradation factor for each time phase images, and an image synthesizing section for obtaining an MR image of the slice portion by synthesizing both time phase images corrected by the correcting section.
    • 3. 发明授权
    • Nuclear magnetic resonance diagnostic apparatus
    • 核磁共振诊断仪
    • US4549137A
    • 1985-10-22
    • US506290
    • 1983-06-21
    • Hirokazu SuzukiKozo Satoh
    • Hirokazu SuzukiKozo Satoh
    • A61B10/00A61B5/055G01R33/48G01R33/483G01R33/54G01N24/08
    • G01R33/482G01R33/4838
    • Nuclear magnetic resonance diagnostic apparatus including means for applying a gradient magnetic field to form an equivalent plane in the magnetic field corresponding to the slice in the predetermined region to be measured for the acquisition of projection data, means for selectively saturating magnetization vectors in the entire region other than the region corresponding to the slice by applying radio frequency signal composed of continuous waves the frequency of which is successively varied in the range of the resonance frequency of the specified atomic nuclei and means for obtaining the projection data in the predetermined directions in the slice by measuring the resonance signals obtained by applying the 90.degree. pulses of resonance frequency of the specified atomic nuclei to the region to be measured while the saturation state of magnetization vectors is maintained.
    • 核磁共振诊断装置包括用于施加梯度磁场以在对应于要测量的预定区域中的切片的磁场中形成等效平面以获取投影数据的装置,用于选择性地饱和整个区域中的磁化矢量的装置 通过施加由连续波构成的射频信号,其频率在特定原子核的共振频率的范围内依次变化的连续波的区域以及在切片中的预定方向获得投影数据的单元 通过测量在维持磁化矢量的饱和状态的同时,将指定的原子核的共振频率的90°脉冲施加到待测量的区域而获得的共振信号。
    • 4. 发明授权
    • Nuclear magnetic resonance diagnostic apparatus
    • 核磁共振诊断仪
    • US4509011A
    • 1985-04-02
    • US373627
    • 1982-04-30
    • Hiroshi SugimotoKozo Satoh
    • Hiroshi SugimotoKozo Satoh
    • A61B10/00A61B5/055G01R33/48G01R33/54G01R33/08
    • G01R33/4833
    • Nuclear magnetic resonance diagnostic apparatus including a magnet for generating a uniform static magnetic field, a first coil for generating a gradient magnetic field, a selective detector for detecting the free induction decay signals from the selective slice portion of an object, a current controller for controlling the current in the first coil to the shift the selective slice portion, a second coil for generating the gradient magnetic field direction in the selective plane of the object, a projection data producer for obtaining a one-directional projection data on the basis of the detected free induction signals, and an image synthesizer for producing the extensive one-directional projection of the specified atomic nuclei distribution in the object by placing a plurality of one-directional projection data.
    • 包括用于产生均匀静磁场的磁体的核磁共振诊断装置,用于产生梯度磁场的第一线圈,用于检测来自对象的选择性切片部分的自由感应衰减信号的选择性检测器,用于控制的电流控制器 第一线圈中的电流移动选择性切片部分,用于在对象的选择平面中产生梯度磁场方向的第二线圈,用于基于检测到的用于获得单向投影数据的投影数据生成器 以及图像合成器,用于通过放置多个单向投影数据来产生对象中指定的原子核分布的广泛的单向投影。
    • 6. 发明授权
    • Magnetic resonance imaging system
    • 磁共振成像系统
    • US4746864A
    • 1988-05-24
    • US31461
    • 1987-03-30
    • Kozo Satoh
    • Kozo Satoh
    • G01R33/44A61B5/055A61B10/00G01R33/48G01R33/561G01R33/565G01R33/20
    • G01R33/56563G01R33/5615G01R33/5618
    • In an MRI system of this invention, a pulsed RF magnetic field, and pulsed slice, phase encoding, and read gradient fields are applied to an object to be examined placed in a uniform static magnetic field in accordance with a predetermined sequence by a controller, thereby causing an MR phenomenon. Echo signals based on the MR phenomenon are acquired so as to obtain an image of MR data. The controller alternately and repetitively executes a first operation for applying the read gradient field while repetitively inverting it so as to produce the echo signal, and a second operation for applying, as the radio-frequency magnetic field, a 180.degree. pulse which can compensate for an echo signal phase error due to a nonuniformity and offset of the static magnetic field so as to generate the echo signal. The controller also inverts the phase encoding gradient field each time the 180.degree. pulse is applied.
    • 在本发明的MRI系统中,根据控制器的预定顺序将脉冲RF场和脉冲切片相位编码和读取梯度场应用于放置在均匀静磁场中的被检体, 从而导致MR现象。 获取基于MR现象的回波信号,以获得MR数据的图像。 控制器交替重复地执行用于施加读取的梯度场的第一操作,同时重复地反转它以产生回波信号,以及第二操作,作为射频磁场施加可以补偿的180度脉冲 由于静态磁场的不均匀性和偏移引起的回波信号相位误差,以产生回波信号。 每当施加180°脉冲时,控制器也会反相相位编码梯度场。
    • 8. 发明授权
    • Magnetic resonance imaging system
    • 磁共振成像系统
    • US4999581A
    • 1991-03-12
    • US362443
    • 1989-05-30
    • Kozo Satoh
    • Kozo Satoh
    • A61B10/00A61B5/055G01R33/32G01R33/36G01R33/44G01R33/48
    • G01R33/3621
    • A magnetic resonance imaging system includes magnetic resonance signal detecting means (1, 2, 3, 4, 7, 8, 10) for detecting a magnetic resonance signal from an object to be examined, receiving means (9) for phase-sensitive detecting and amplifying the magnetic resonance signal, data acquiring means (11) for sampling and digitizing the magnetic resonance signal obtained by the receiving unit (9), and image reconstructing means (12) for performing image reconstruction on the basis of the magnetic resonance signal and the sampling data obtained by the data acquiring means (11). The magnetic resonance imaging system includes a reference signal phase correcting circuit (26) for correcting a phase of a phase-sensitive detecting reference signal, a base line correcting circuit (27) for correcting a base line of the magnetic resonance signal detected by the magnetic resonance signal detecting means (1, 2, 3, 4, 7, 8, 10), and a sampling point correcting circuit (28) for correcting a sampling point of the magnetic resonance signal in the data acquiring means (11).
    • 9. 发明授权
    • Magnetic resonance imaging system
    • 磁共振成像系统
    • US4746860A
    • 1988-05-24
    • US31132
    • 1987-03-30
    • Kozo Satoh
    • Kozo Satoh
    • A61B10/00A61B5/055G01R33/48G01R33/54G01R33/565G01R33/20
    • G01R33/482G01R33/56509
    • In a magnetic resonance imaging system, a radio frequency field for exciting a magnetic resonance phenomenon, a first gradient field for determining a image slice, a second gradient field for phase-encoding, and a third gradient field for reading out an echo signal of the magnetic resonance, are applied to a subject in the static field. Thus, the echo signal is acquired, and image reconstruction data is obtained from the echo signal, whereby reconstructed image information is obtained. A correction data generating section uses the second gradient field as a gradient field for reading out the echo signal, and applies the first and second gradient fields, and the radio frequency field to the subject in the static field, in accordance with a predetermined sequence, without applying a gradient field for phase-encoding, and acquires the echo signal, so as to obtain correction data corresponding to the image reconstruction data along an encoding axis. A correcting section corrects the image reconstruction data, using the correction data.
    • 在磁共振成像系统中,用于激发磁共振现象的射频场,用于确定图像切片的第一梯度场,用于相位编码的第二梯度场,以及用于读出第二梯度场的回波信号 磁共振,被施加到静态场所的受试者。 因此,获取回波信号,并且从回波信号获得图像重建数据,由此获得重建的图像信息。 校正数据生成部使用第二梯度场作为读出回波信号的梯度场,并且根据预定的顺序将静态场中的第一和第二梯度场以及射频场施加到被摄体, 而不施加用于相位编码的梯度场,并且获取回波信号,以便获得与编码轴对应的图像重建数据的校正数据。 校正部使用校正数据校正图像重建数据。