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SQUIDs vs. Induction Coils for Ultra-Low Field Nuclear Magnetic Resonance: Experimental and Simulation Comparison

机译:SQUID与感应线圈的超低场核磁共振:实验和仿真比较

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摘要

Nuclear magnetic resonance (NMR) is widely used in medicine, chemistry and industry. One application area is magnetic resonance imaging (MRI). Recently it has become possible to perform NMR and MRI in the ultra-low field (ULF) regime requiring measurement field strengths of the order of only 1 Gauss. This technique exploits the advantages offered by superconducting quantum interference devices or SQUIDs. Our group has built SQUID based MRI systems for brain imaging and for liquid explosives detection at airport security checkpoints. The requirement for liquid helium cooling limits potential applications of ULF MRI for liquid identification and security purposes. Our experimental comparative investigation shows that room temperature inductive magnetometers may provide enough sensitivity in the 3–10 kHz range and can be used for fast liquid explosives detection based on ULF NMR technique. We describe experimental and computer-simulation results comparing multichannel SQUID based and induction coils based instruments that are capable of performing ULF MRI for liquid identification.
机译:核磁共振(NMR)在医学,化学和工业中被广泛使用。一种应用领域是磁共振成像(MRI)。近来,已经可以在仅需要1高斯量级的测量场强的超低场(ULF)方案中进行NMR和MRI。该技术利用了超导量子干涉装置或SQUID提供的优势。我们的团队已经建立了基于SQUID的MRI系统,用于大脑成像和在机场安全检查站检测液体爆炸物。液氦冷却的要求限制了ULF MRI在液体识别和安全性方面的潜在应用。我们的实验比较研究表明,室温感应磁力计可在3-10 kHz范围内提供足够的灵敏度,并可用于基于ULF NMR技术的快速液体炸药检测。我们描述了实验和计算机仿真结果,比较了基于多通道SQUID和基于感应线圈的仪器,这些仪器能够执行ULF MRI进行液体识别。

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