首页> 外国专利> Method and apparatus for continuous precision NMR / MRI-based quantum (nuclear magnetic resonance spectroscopy / magnetic resonance imaging)

Method and apparatus for continuous precision NMR / MRI-based quantum (nuclear magnetic resonance spectroscopy / magnetic resonance imaging)

机译:用于基于NMR / MRI的连续精确量子(核磁共振波谱/磁共振成像)的方法和设备

摘要

Generally method of spin magnetic resonance application, and in detail NMR (nuclear magnetic resonance spectroscopy) and MRI (nuclear magnetic resonance image method) the method of executing is disclosed. It is the continual precise method of being based on quantum theory. As for this method, relaxation time and the autocorrelation where spin several density are required and the spin magnetic resonance random discharge which forms power spectrum are used directly. Method reduces the complexity of the NMR/MRI machine and data processing substantially, the NMR/MRI machine, than pulse NMR/MRI of existence makes smaller, more accurately, and easy to operate directly low much at cost with that. The very low opposite RF magnetic field B1 (it is less than approximately 0.01 gauss or 0.01 gauss) by using, MRI with this method directly is safe for the patient. NMR of this method satisfies the request of all sciences and industrial engineering, and, by using continual spin magnetic resonance discharge, substantially it is method of limitless spectrum resolution. Selective figure Figure 4
机译:公开了执行自旋磁共振的一般方法,并且详细公开了NMR(核磁共振波谱)和MRI(核磁共振成像法)。它是基于量子理论的连续精确方法。对于该方法,直接使用弛豫时间和需要自旋的自相关,其中需要自旋数个密度,并且形成功率谱的自旋磁共振随机放电。该方法大大降低了NMR / MRI机器和数据处理的复杂性,与现有的脉冲NMR / MRI相比,NMR / MRI机器体积更小,更准确并且易于直接操作,从而大大降低了成本。通过使用极低的反向射频磁场B 1 (小于约0.01高斯或0.01高斯),用这种方法直接进行MRI对患者是安全的。此方法的NMR可以满足所有科学和工业工程的要求,并且通过使用连续自旋磁共振放电,基本上是无限制的光谱分辨率的方法。<选择图>图4

著录项

  • 公开/公告号JP5549882B2

    专利类型

  • 公开/公告日2014-07-16

    原文格式PDF

  • 申请/专利权人 フェン;デレク;ディー.;

    申请/专利号JP20100506703

  • 发明设计人 フェン;デレク;ディー.;

    申请日2008-05-02

  • 分类号G01R33/32;G01N24/08;G01N24/10;A61B5/055;

  • 国家 JP

  • 入库时间 2022-08-21 16:16:03

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