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    • 6. 发明授权
    • Non-linear symmetric sweep spectral-spatial RF pulses for MR spectroscopy
    • 用于MR光谱的非线性对称扫描频谱 - 空间RF脉冲
    • US07042214B2
    • 2006-05-09
    • US10823979
    • 2004-04-13
    • Charles H. CunninghamJohn M. PaulyDaniel B. Vigneron
    • Charles H. CunninghamJohn M. PaulyDaniel B. Vigneron
    • G01V3/00
    • G01R33/446G01R33/4828
    • A method for designing non-linear phase 180° spectral-spatial radio frequency pulses that can be used for spectral editing in magnetic resonance spectroscopic imaging. A novel feature of the pulse is a symmetric sweep developed by the spectral profile from the outside edges of the spectral window towards the middle whereby coupled components are tipped simultaneously and over a short interval. Pulses have been designed for lactate editing at 1.5T and 3T. The spectral and spatial spin-echo profiles of the RF pulses can be measured experimentally and altered in an iterative manner. Spectral-spatial radio frequency (SSRF) pulses allow simultaneous selection in both frequency and spatial domains. These pulses are particularly important for clinical and research magnetic resonance spectroscopy (MRS) applications for suppression of large water and lipid resonances.
    • 用于设计可用于磁共振光谱成像中的光谱编辑的非线性相位180°频谱空间射频脉冲的方法。 脉冲的新颖特征是通过从频谱窗口的外边缘向中间的光谱轮廓展开的对称扫描,由此耦合的部件同时并且在短的间隔内翻转。 脉冲设计用于1.5T和3T的乳酸盐编辑。 RF脉冲的频谱和空间自旋回波曲线可以通过实验测量并以迭代方式进行改变。 频谱空间射频(SSRF)脉冲允许在频域和空间域中同时进行选择。 这些脉冲对于抑制大量水和脂质共振的临床和研究磁共振波谱(MRS)应用尤为重要。
    • 7. 发明授权
    • Method of improved magnetic resonance spectroscopic localization using spectral-spatial pulses
    • 使用光谱空间脉冲改进磁共振光谱定位的方法
    • US06304084B1
    • 2001-10-16
    • US09019967
    • 1998-02-06
    • John Star-LackJohn M. PaulyDaniel B. Vigneron
    • John Star-LackJohn M. PaulyDaniel B. Vigneron
    • G01V300
    • G01R33/446
    • The present invention uses spectral-spatial 180° refocusing pulses in the point resolved spectroscopy (PRESS) localization sequence. The PRESS sequence uses a series of three pulses having a tilt angle pattern of 90°-180°-180°. The first excitation pulses in the present invention is a spatially selective 90° tilt angle pulse. The following two pulses are spectral-spatial refocusing pulses which provide multi-dimensional selectivity. This feature allows for enhanced solvent suppression, reduced chemical shift induced spatial displacement and an ability to refocus weakly coupled spins. In a preferred embodiment, the spectral-spatial pulses are time-asymmetric and identical, providing for a linear phase profile by means of phase compensation between the two refocusing pulses. Alternatively, a linear phase profile can be provided by using time-symmetric refocusing pulses. The time-asymmetric feature is preferred because it results in lower applied RF power and shorter echo times.
    • 本发明在点解析光谱(PRESS)定位序列中使用光谱空间180重新聚焦脉冲。 PRESS序列使用一系列具有90-180 -180的倾斜角度图案的三个脉冲。 本发明中的第一激发脉冲是空间选择性90°倾斜角脉冲。 以下两个脉冲是提供多维选择性的光谱 - 空间重聚焦脉冲。 该特征允许增强溶剂抑制,减少化学位移引起的空间位移和重新聚焦弱耦合旋转的能力。 在优选实施例中,频谱空间脉冲是时间不对称的和相同的,通过两个重聚焦脉冲之间的相位补偿提供线性相位分布。 或者,可以通过使用时间对称重新聚焦脉冲来提供线性相位分布。 时间不对称特征是优选的,因为它导致较低的施加的RF功率和较短的回波时间