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Development of device for quantifying magnetic nanoparticle tracers accumulating in sentinel lymph nodes

机译:施用磁纳米粒子示踪剂在哨落淋巴结中累积的装置的开发

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摘要

The developed device with electromagnetic coils and small permanent magnets quantifies the iron contents of superparamagnetic iron oxide nanoparticles for sentinel lymph node (SLN) biopsy. To remove diamagnetic and paramagnetic components and detect only superparamagnetic components, a 2nd harmonics signal is detected by a gradiometer under a moderate AC magnetic field (1–2 mT) with the fundamental frequency (2.944 kHz) of the coils and DC magnetic field (1–2 mT) of the magnets. The detection limit with a signal-to-noise ratio of 5 is approximately 0.28 μg of iron, and the device has a wide dynamic range of 104, 0.28 μg–2.8 mg. Additional coils and permanent magnets play an important role producing the optimum distribution of AC/DC magnetic fields for an iron distribution-independent and SLN size-independent quantification. We demonstrated the quantification of the iron in phantoms, which have a size of 3–20 mm with varied iron distributions and contain magnetic nanoparticles numerically. These results indicate that the developed device is useful for quantifying the magnetic nanoparticles accumulating in SLNs.
机译:具有电磁线圈和小永磁体的开发装置量化了Sentinel淋巴结(SLN)活组织检查的超顺磁性氧化铁纳米粒子的铁含量。为了除去抗磁石和顺磁性部件并仅检测超顺磁性分量,通过线圈和直流磁场的基频(2.944 kHz)下的梯度计检测了第二次谐波信号(1-2 mt),通过线圈和直流磁场(1 -2 mt)的磁铁。信号到噪声比为5的检测限为约0.28μg的铁,并且该装置具有104,0.28μg-2.8mg的宽动态范围。额外的线圈和永磁体发挥了一种重要的作用,可以为铁分配和SLN尺寸无关量化的铁/直流磁场的最佳分布。我们证明了含有尺寸为3-20mm的含铁的定量,具有不同的铁分布,并在数值上含有磁性纳米粒子。这些结果表明,开发装置可用于量化在SLN中积聚的磁性纳米颗粒。

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