National Institute of Standards and Technology, Boulder, CO 80305, USA.
J Magn Reson. 2012 Nov;224:71-7. doi: 10.1016/j.jmr.2012.09.001. Epub 2012 Sep 15.
We have developed a nuclear magnetic resonance (NMR) microcapillary probe for the detection of single magnetic microbeads. The geometry of the probe has been optimized so that the signal from the background water has a similar magnitude compared to the signal from the dephased water nearby a single magnetic bead within the probe detector coil. In addition, the RF field of the coil must be uniform within the effective range of the magnetic bead. Three different RF probes were tested in a 7 T (300 MHz) pulsed NMR spectrometer with sample volumes ranging from 5 nL down to 1 nL. The 1 nL probe had a single-shot signal-to-noise ratio (SNR) for pure water of 27 and a volume resolution that exhibits a 600-fold improvement over a conventional (5 mm tube) NMR probe with a sample volume of 18 μL. This allowed for the detection of a 1 μm magnetite/polystyrene bead (m=2×10(-14)Am(2)) with an estimated experimental SNR of 30. Simulations of the NMR spectra for the different coil geometries and positions of the bead within the coil were developed that include the B(0) shift near a single bead, the inhomogeneity of the coils, the local coil sensitivity, the skin effect of the coil conductor, and quantitated estimates of the proximity effect between coil windings.
我们开发了一种用于检测单个磁性微珠的核磁共振(NMR)微毛细管探头。优化了探头的几何形状,使得背景水中的信号与探头检测线圈中单个磁性微珠附近去相位水中的信号具有相似的幅度。此外,线圈的 RF 场必须在磁性微珠的有效范围内均匀。在 7 T(300 MHz)脉冲 NMR 光谱仪中测试了三个不同的 RF 探头,样品体积从 5 nL 降至 1 nL。1 nL 探头对纯水的单次信噪比(SNR)为 27,体积分辨率比具有 18 μL 样品体积的传统(5 mm 管)NMR 探头提高了 600 倍。这允许检测 1 μm 磁铁矿/聚苯乙烯珠(m=2×10(-14)Am(2)),估计实验 SNR 为 30。为不同的线圈几何形状和线圈内珠子的位置开发了 NMR 光谱的模拟,包括单个珠子附近的 B(0)位移、线圈的非均匀性、局部线圈灵敏度、线圈导体的趋肤效应,以及线圈绕组之间接近效应的定量估计。