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Design of planar microcoil-based NMR probe ensuring high SNR

机译:基于Planar Microcoil的NMR探头设计,确保高SNR

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A microNMR probe for ex vivo applications may consist of at least one microcoil, which can be used as the oscillating magnetic field (MF) generator as well as receiver coil, and a sample holder, with a volume in the range of nanoliters to micro-liters, placed near the microcoil. The Signal-to-Noise ratio (SNR) of such a probe is, however, dependent not only on its design but also on the measurement setup, and the measured sample. This paper introduces a performance factor P independent of both the proton spin density in the sample and the external DC magnetic field, and which can thus assess the performance of the probe alone. First, two of the components of the P factor (inhomogeneity factor K and filling factor η ) are defined and an approach to calculate their values for different probe variants from electromagnetic simulations is devised. A criterion based on dominant component of the magnetic field is then formulated to help designers optimize the sample volume which also affects the performance of the probe, in order to obtain the best SNR for a given planar microcoil. Finally, the P factor values are compared between different planar microcoils with different number of turns and conductor aspect ratios, and planar microcoils are also compared with conventional solenoids. These comparisons highlight which microcoil geometry-sample volume combination will ensure a high SNR under any external setup.
机译:用于前体内应用的微米探针可以包括至少一个微罩,其可以用作振荡磁场(MF)发生器以及接收器线圈和样品架,在纳米载体范围内的体积为微 - 升,放置在微壳附近。然而,这种探针的信噪比(SNR)不仅取决于其设计而且在测量设置和测量的样品上取决于其设计。本文介绍了性能因子P独立于样品中的质子旋转密度和外部直流磁场,因此可以单独评估探头的性能。首先,定义了P因子(不均匀性因子K和填充因子η的两种组分,并且设计了一种从电磁模拟中计算它们的不同探针变体的值的方法。然后配制基于磁场的主要部件的标准,以帮助设计者优化也影响探针性能的样品体积,以获得给定平面微罩的最佳SNR。最后,在具有不同数量的匝数和导体纵横比的不同平面微膜之间比较p因子值,并且还与常规螺线管进行平面微膜。这些比较突出显示微胶体几何样本体积组合将确保在任何外部设置下的高SNR。

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