首页> 外文期刊>Journal of Applied Physics >Optimization of the detection coil of high-Tc superconducting quantum interference device-based nuclear magnetic resonance for discriminating a minimum amount of liver tumor of rats in microtesla fields
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Optimization of the detection coil of high-Tc superconducting quantum interference device-based nuclear magnetic resonance for discriminating a minimum amount of liver tumor of rats in microtesla fields

机译:基于高Tc超导量子干扰装置的核磁共振检测线圈的优化,以在小特斯拉场中区分大鼠的最小肝肿瘤

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This study presents an optimization of the detection coil of high-Tc superconducting quantum interference device (SQUID)-based nuclear magnetic resonance (NMR) in microtesla fields for discriminating a minimum amount of liver tumor in rats by characterizing the longitudinal relaxation rate, T1-1, of tested samples. The detection coil, which was coupled to the SQUID through a flux transformer, was optimized by varying the copper wires’ winding turns and diameters. When comparing the measured NMR signals, we found that the simulated NMR signal agrees with simulated signals. When discriminating liver tumors in rats, the averaged longitudinal relaxation rate was observed to be T1-1 = 3.3 s-1 for cancerous liver tissue and T1-1 = 6.6 s-1 for normal liver tissue. The results suggest that it can be used to successfully discriminate cancerous liver tissue from normal liver tissues in rats. The minimum amount of samples that can be detected is 0.2 g for liver tumor and 0.4 g for normal liver tissue in 100 μT fields. The specimen was not damaged; it can be used for other pathological analyses. The proposed method provides more possibilities for examining undersized specimens.
机译:这项研究提出了在微特斯拉场中优化基于高Tc超导量子干扰装置(SQUID)的核磁共振(NMR)检测线圈的方法,该方法通过表征纵向弛豫率T1 < sup> -1 。通过改变铜线的绕组匝数和直径,优化了通过磁通量互感器耦合到SQUID的检测线圈。当比较测得的NMR信号时,我们发现模拟NMR信号与模拟信号一致。在区分大鼠肝肿瘤时,观察到肝癌组织的平均纵向舒张率为T1 -1 = 3.3 s -1 和T1 -1 < / sup> = 6.6 s -1 对于正常肝组织。结果表明,它可用于成功地区分大鼠肝癌组织和正常肝组织。在100μT视野中,肝肿瘤的最小检出量为0.2 g,正常肝组织的最小检出量为0.4 g。标本没有损坏;它可以用于其他病理分析。所提出的方法为检查尺寸过小的样品提供了更多的可能性。

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