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    • 3. 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。
    • 8. 发明申请
    • WIRELESS COMMUNICATION SYSTEM, BASE STATION DEVICE, AND TERMINAL DEVICE
    • 无线通信系统,基站设备和终端设备
    • US20130336418A1
    • 2013-12-19
    • US14002616
    • 2012-03-02
    • Hiromichi TomebaTakashi OnoderaHiroshi NakanoAlvaro Ruiz DelgadoShimpei To
    • Hiromichi TomebaTakashi OnoderaHiroshi NakanoAlvaro Ruiz DelgadoShimpei To
    • H04B7/04
    • H04B7/0482H04B7/0452H04B7/0465H04B7/0632H04B7/0697H04L1/0003
    • A terminal device notifies a base station device about control information associated with a receive quality of the terminal device. The base station device performs data modulation on a plurality of pieces of transmit data for the terminal device, by using a plurality of different data modulation schemes one by one, based on the control information, and spatially multiplexes the plurality of pieces of transmit data after the data modulation over a single wireless resource and transmits a spatially multiplexed signal. The terminal device receives the signal with the plurality of pieces of transmit data spatially multiplexed, and detects desirable transmit data from the receive signal, based on a first channel matrix which represents channel state information between the base station device and the terminal device and a second channel matrix in which the first channel matrix is multiplied by a transform matrix. Accordingly, an adaptive modulation technology is applied even to MIMO spatial multiplexing transmission using a LR technology, and hence a wireless communication system and so forth that can contribute to improvement in frequency utilization efficiency can be provided.
    • 终端装置向基站装置通知与终端装置的接收质量有关的控制信息。 基站装置基于控制信息,通过使用多个不同的数据调制方案,对终端装置的多条发送数据进行数据调制,并且将多条发送数据在 通过单个无线资源进行数据调制,并发送空间复用信号。 终端设备接收具有多个发送数据的信号进行空间复用,并且基于表示基站设备与终端设备之间的信道状态信息的第一信道矩阵和第二信道矩阵,从接收信号中检测期望的发送数据 信道矩阵,其中第一信道矩阵乘以变换矩阵。 因此,利用LR技术甚至可以应用自适应调制技术进行MIMO空间复用传输,因此可以提供有助于提高频率利用效率的无线通信系统等。