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    • 2. 发明授权
    • High speed NMR spectroscopic imaging method
    • 高速NMR光谱成像方法
    • US4797616A
    • 1989-01-10
    • US151901
    • 1988-02-03
    • Shigeru MatsuiTakashi OnoderaKensuke SekiharaHidemi ShionoHideki Kohno
    • Shigeru MatsuiTakashi OnoderaKensuke SekiharaHidemi ShionoHideki Kohno
    • G01R33/32A61B5/055A61B10/00G01R33/44G01R33/48G01R33/485G01R33/20
    • G01R33/485
    • An NMR spectroscopic imaging method of obtaining separate spin distribution images for respective spectral components of the spectrum of an NMR signal caused by the chemical shift of nuclides of interest in an object includes providing for a transversal magnetization signal of the object placed in a static magnetic field. A position of the signal in a phase domain is translated in a K-space from the origin thereof. Further, the signal is sampled while rotating a position of the signal in the K-space plural times on a certain circle in the K-space by applying a rotating field gradient, thereby to obtain a group of signal data. Signal data trains each of which is composed of signal data present at the same position on the K-space in the signal data group obtained by the sampling during the plural signal rotations, is subjected to Fourier transformations, respectively, thereby effecting a spectral analysis of the NMR signal.
    • 由对象物质的化学位移引起的核磁共振信号频谱的各频谱分量的分离自旋分布图像的NMR分光成像方法包括提供放置在静磁场中的物体的横向磁化信号 。 信号在相位域中的位置从其原点在K空间中平移。 此外,在通过施加旋转场梯度在K空间中的某个圆上多次旋转K空间中的信号的位置的同时对信号进行采样,从而获得一组信号数据。 由多个信号旋转中的采样获得的信号数据组中的与K空间上的相同位置处的信号数据组成的信号数据串分别进行傅里叶变换,从而进行频谱分析 NMR信号。
    • 3. 发明授权
    • High speed imaging method with three-dimensional NMR
    • 高速成像方法采用三维NMR
    • US4716369A
    • 1987-12-29
    • US746663
    • 1985-06-20
    • Kensuke SekiharaShigeru MatsuiHideki KohnoEtsuji YamamotoHidemi Shiono
    • Kensuke SekiharaShigeru MatsuiHideki KohnoEtsuji YamamotoHidemi Shiono
    • G01R33/485G01R33/561G01R33/20
    • G01R33/485G01R33/5615G01R33/5616
    • The present invention is an imaging method using three-dimensional NMR to which an echo-planar method is applied. After excitation of nuclear spins, the gradient magnetic field Gx for phase-encoding is applied and there is repeated a sequence of measuring and obtaining an echo train of spin-echoes with a constant gradient magnetic field Gx and a periodically-inverted gradient magnetic field Gy, as varying the amount of encoding, so as to obtain the three-dimensional imaging by the Fourier-conversion. Moreover, after the selective excitation of spins within an X-Y surface, a 180.degree. radio frequency pulse is applied. As varying the time difference .tau..sub..epsilon. between the interval from the excitation until the application of the 180.degree. radio frequency pulse and the interval from the application thereof until a peak of a first echo of an echo train, three-dimensional imaging is carried out with a chemical shift axis as one axis by repeating the sequence and accomplishing Fourier-conversion with .tau..sub..epsilon. as a numerical variable.
    • 本发明是使用采用回波平面法的三维NMR的成像方法。 在激励核自旋之后,施加用于相位编码的梯度磁场Gx,并且重复测量并获得具有恒定梯度磁场Gx和周期性反转梯度磁场Gy的自旋回波回波序列的序列 ,因为改变编码量,从而通过傅里叶变换获得三维成像。 此外,在X-Y表面中的自旋选择性激发之后,施加180°射频脉冲。 随着从激励到施加180°射频脉冲的间隔与从应用到应用的间隔直到回波列的第一回波的峰值之间的时间差τεε改变,三维成像是 化学位移轴作为一个轴,通过重复该序列,并以tauε作为数值变量进行傅里叶变换。
    • 5. 发明授权
    • NMR imaging method
    • NMR成像方法
    • US4739265A
    • 1988-04-19
    • US846151
    • 1986-03-31
    • Etsuji YamamotoKensuke SekiharaHidemi ShionoHideki Kohno
    • Etsuji YamamotoKensuke SekiharaHidemi ShionoHideki Kohno
    • G01R33/485G01R33/565G01R33/20
    • G01R33/565G01R33/485G01R33/56527
    • A method for providing spin density distribution images of an object, discriminated with respect to plural chemical shifts. This method is performed by repeating a measurement sequence in a spin warp imaging method, of the spin data plural times, with a time difference .DELTA..tau. between a time interval .tau..sub.1 from spin excitation to a 180.degree. RF pulse and a time interval .tau..sub.2 from the 180.degree. RF pulse to a peak of a spin echo, altering .DELTA..tau. in the ways corresponding the number of chemical shifts to be discriminated from one another, subjecting the respective spin data to two-dimensional Fourier transform to provide plural sets of spin data for respective coordinates in a spatial domain, and solving simultaneous equations of the sets of spin data to provide spin densities corresponding to the respective chemical shifts.
    • 一种用于提供对象的自旋密度分布图像的方法,其被鉴别为多个化学位移。 该方法通过在旋转数据成像方法中重复自旋数据多次的测量序列,其中从自旋激发到180°RF脉冲的时间间隔τ1与时间间隔τ2之间的时间差DELTAτ 从180°RF脉冲到自旋回波的峰值,以相应于要彼此区分的化学位移数的方式改变DELTA tau,对各自旋转数据进行二维傅里叶变换以提供多组旋转 用于空间域中的各个坐标的数据,以及求解自旋数据组的联立方程以提供对应于各个化学位移的自旋密度。
    • 7. 发明授权
    • Radiation image photographing apparatus
    • 辐射摄影装置
    • US4485480A
    • 1984-11-27
    • US366781
    • 1982-04-08
    • Hideki KohnoHidemi ShionoKensuke SekiharaShigenobu YanakaTakaji Suzuki
    • Hideki KohnoHidemi ShionoKensuke SekiharaShigenobu YanakaTakaji Suzuki
    • G01N23/04A61B6/00A61B6/02H05G1/60G03B41/16
    • A61B6/4476H05G1/60
    • A radiation-image photographing apparatus comprises a radiation source, a radiation detector disposed in opposition to the radiation source for detecting radiation through an object to be examined and to generate an electrical signal proportional to the amount of incident radiation, a scanning device for changing the relative, positional relationship between the radiation source and the radiation detector, an analog-to-digital converter for converting the output signal from the radiation detector to a digital quantity, a memory for storing the digital signal, an arithmetic unit, and a display unit. A plurality of measurements of a two-dimensional radiation absorption distribution of the object disposed between the radiation source and the radiation detector is obtained while the relative positional relationship between the radiation source and the radiation detector is being changed, and a linear arithmetic operation is performed on the plurality of image measurements, or a set of data passing a point within the object to be photographed, thereby displaying a cross-sectional image on a given cross-section approximately parallel to the radiation detector plane within the object to be examined.
    • 辐射图像拍摄装置包括辐射源,与辐射源相对设置的放射线检测器,用于检测通过待检查物体的辐射并产生与入射辐射量成比例的电信号;扫描装置,用于改变 辐射源和辐射检测器之间的相对位置关系,用于将来自辐射检测器的输出信号转换为数字量的模拟 - 数字转换器,用于存储数字信号的存储器,运算单元和显示单元 。 在辐射源和辐射检测器之间的相对位置关系正在改变的同时,获得放置在辐射源和放射线检测器之间的物体的二维辐射吸收分布的多个测量值,并进行线性算术运算 或多个图像测量中的一组数据,或者通过要拍摄的对象内的点的一组数据,从而在与被检查对象内的放射线检测器平面近似平行的给定横截面上显示横截面图像。
    • 10. 发明授权
    • NMR imaging method
    • NMR成像方法
    • US4760339A
    • 1988-07-26
    • US944001
    • 1986-12-22
    • Etsuji YamamotoKoichi SanoHidemi ShionoHideki Kohno
    • Etsuji YamamotoKoichi SanoHidemi ShionoHideki Kohno
    • A61B10/00A61B5/055G01R33/48G01R33/485G01R33/565G01R33/20
    • G01R33/565G01R33/485G01R33/56527
    • An NMR imaging method is disclosed in which an object is measured in accordance with a pulse sequence capable of expressing a difference between two of a plurality of chemical shifts by a phase difference in a signal, that is, a pulse sequence 90.degree.-.tau..sub.a -180.degree.-.tau..sub.b -spin echo (where .tau..sub.a .noteq..tau..sub.b) to obtain spin distribution data, a histogram with respect to the phase of the spin distribution data is formed to regard a phase corresponding to that one of a plurality of peaks of the histogram which exists at one end of the histogram, as a position-independent offset phase which is contained in the spin distribution data and is peculiar to an NMR imaging apparatus, and the spin distribution data is corrected using the offset value thus obtained, to extract spin density distribution data for each of the chemical shifts from the corrected spin distribution data.
    • 公开了一种NMR成像方法,其中根据能够通过信号的相位差表示多个化学位移之间的差异的脉冲序列来测量物体,即脉冲序列90°-τa -180°-τb-自旋回波(其中τa NOTEQUAL tau b)为了获得自旋分布数据,形成相对于自旋分布数据的相位的直方图,以考虑与多个峰中的那一个相对应的相位 存在于直方图的一端的直方图作为自旋分布数据中包含的并且是NMR成像设备特有的与位置无关的偏移相位,并且使用由此获得的偏移值来校正自旋分布数据, 从校正的自旋分布数据中提取每个化学位移的自旋密度分布数据。