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System and method for use of nanoparticles in magnetic particle imaging (MPI) and temperature measurement with extended / increased 3D sub-saturation region

机译:用于纳米粒子在磁性粒子成像(MPI)和具有扩展/增加的3D次饱和区域的温度测量中使用的系统和方法

摘要

This invention provides a system and method that improves the sensitivity and localization capabilities of Magnetic Particle Imaging (MPI) by using combinations of time-varying and static magnetic fields. Combinations of magnetic fields can be used to distribute the signals coming from the magnetic particles among the harmonics and other frequencies in specific ways to improve sensitivity and to provide localization information to speed up or improve the signal-to-noise ratio (SNR) of imaging and/or eliminate the need for saturation fields currently used in MPI. In various embodiments, coils can be provided to extend the sub-saturation region in which nanoparticles reside; to provide a static field offset to bring nanoparticles nearer to saturation; to introduce even and odd harmonics that can be observed; and/or to introduce combinations of frequencies for more-defined observation of signals from nanoparticles. Further embodiments provide for reading of the signal produced by cyclically saturated magnetic nanoparticles in a sample so as to provide a measurement of the temperature of those nanoparticles.
机译:本发明提供了一种通过使用时变磁场和静磁场的组合来提高磁性粒子成像(MPI)的灵敏度和定位能力的系统和方法。磁场的组合可用于以特定方式在谐波和其他频率之间分配来自磁性粒子的信号,以提高灵敏度并提供定位信息,以加快或改善成像的信噪比(SNR)和/或消除对MPI中当前使用的饱和度字段的需要。在各种实施方案中,可以提供线圈以延伸其中存在纳米颗粒的亚饱和区域;优选地,在所述亚饱和区域中延伸。提供静态场偏移以使纳米粒子更接近饱和;引入可以观察到的偶数和奇数谐波;和/或引入频率组合以更清晰地观察来自纳米粒子的信号。进一步的实施方案提供了读取由样品中的环状饱和磁性纳米颗粒产生的信号的方式,以便提供那些纳米颗粒的温度的测量值。

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