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    • 1. 发明申请
    • MAGNETIC RESONANCE IMAGING APPARATUS
    • 磁共振成像装置
    • US20120319689A1
    • 2012-12-20
    • US13584002
    • 2012-08-13
    • Nobuyasu IchinoseYoshiteru Watanabe
    • Nobuyasu IchinoseYoshiteru Watanabe
    • G01R33/341
    • G01R33/56383G01R33/3415G01R33/3664G01R33/5659
    • In a magnetic resonance imaging apparatus according to an embodiment, an array coil is structured by arranging a plurality of coil elements each of which receives a magnetic resonance signal generated from a subject. An acquisition controlling unit acquires the magnetic resonance signals while changing a position to be selected and excited within the subject who has the array coil attached thereon. A large-area image generating unit generates a large-area image of the subject, based on the magnetic resonance signals acquired by the acquisition controlling unit. A position measuring unit measures positions of the coil elements, based on strengths of the magnetic resonance signals used for generating the large-area image and positions of the couchtop corresponding to the times when the magnetic resonance signals were acquired.
    • 在根据实施例的磁共振成像装置中,阵列线圈通过布置多个线圈元件而构成,每个线圈元件接收从被摄体产生的磁共振信号。 获取控制单元在改变在其上安装有阵列线圈的被摄体内被选择和激励的位置的同时获取磁共振信号。 大面积图像生成单元基于由获取控制单元获取的磁共振信号,生成被摄体的大面积图像。 位置测量单元基于用于产生大面积图像的磁共振信号的强度和与获得磁共振信号的时间相对应的沙发顶部的位置来测量线圈元件的位置。
    • 4. 发明授权
    • Control of setting phase-encoding direction in MRI
    • MRI中设置相位编码方向的控制
    • US6068595A
    • 2000-05-30
    • US942683
    • 1997-10-02
    • Mitsue MiyazakiNobuyasu Ichinose
    • Mitsue MiyazakiNobuyasu Ichinose
    • A61B6/00G06T11/00A61B5/055
    • G01R33/5635A61B6/541G01R33/4835G01R33/5617G01R33/5673
    • By employing controlled setting of a phase-encoding direction in MRI, for imaging a tissue or blood flow composed of spins whose time T.sub.2 is rather short or ranges from 100 to 200 milliseconds, signal levels induced by the blood flow or the like are raised in order to maintain a good signal-to-noise ratio. An image enjoying an excellent depiction ability can be produced without the loss of information of directivities of blood flows or tissues running in diverse directions. An MRI system utilizing the Fourier transform comprises an element for scanning the same region to be imaged of a subject a plurality of times while changing phase-encoding directions, and an element for producing image data of one frame on the basis of MR rawdata of a plurality of frames. The producing element includes, for example, a unit for reconstructing image data in the real space by processing frame by frame MR raw data of a plurality of frames, and a unit for synthesizing reconstructed image data of the plurality of frames so as to produce image data of one frame. Synthesis is, for example, addition or maximum intensity projection.
    • 通过采用MRI中的相位编码方向的受控设定,对于由时间T2相当短或范围为100〜200毫秒的自旋构成的组织或血流成像,血流等引起的信号电平升高 以保持良好的信噪比。 可以在不损失在不同方向上运行的血流或组织的方向性的信息的情况下产生享有优良描绘能力的图像。 使用傅立叶变换的MRI系统包括用于在改变相位编码方向的同时多次扫描被摄体的相同区域的元件,以及用于基于一个帧的MR原始数据产生一帧的图像数据的元件 多个帧。 制作元件例如包括通过多帧的逐帧MR原始数据进行处理来重建真实空间中的图像数据的单元,以及用于合成多个帧的重建图像数据的单元,以产生图像 一帧数据 合成是例如添加或最大强度投影。
    • 9. 发明申请
    • MAGNETIC RESONANCE IMAGING APPARATUS
    • 磁共振成像装置
    • US20100259262A1
    • 2010-10-14
    • US12757375
    • 2010-04-09
    • Nobuyasu ICHINOSE
    • Nobuyasu ICHINOSE
    • G01R33/44
    • G01R33/3415G01R33/3664G01R33/543G01R33/546
    • A storage unit stores coil positional information that indicates a physical position of an element coil relative to a representative position set on a receiving coil. A creating unit creates profile data that indicates a distribution of Nuclear Magnetic Resonance (NMR) signals in a coil-arrangement direction. A calculating unit calculates the position of a representative position set on the receiving coil by performing a regression analysis by using the coil positional information and the profile data. A control unit causes a display unit to display the position of each element coil based on the calculated position of the representative position.
    • 存储单元存储表示元件线圈相对于设置在接收线圈上的代表位置的物理位置的线圈位置信息。 创建单元创建表示在线圈排列方向上的核磁共振(NMR)信号的分布的轮廓数据。 计算单元通过使用线圈位置信息和轮廓数据进行回归分析来计算在接收线圈上设定的代表位置的位置。 控制单元使显示单元基于计算出的代表位置的位置来显示每个元件线圈的位置。