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超导量子干涉器件在微特斯拉磁场中检测到核磁共振。

SQUID detected NMR in microtesla magnetic fields.

作者信息

Matlachov Andrei N, Volegov Petr L, Espy Michelle A, George John S, Kraus Robert H

机构信息

Los Alamos National Laboratory, Biophysics Group, MS D454, Los Alamos, NM 87545, USA.

出版信息

J Magn Reson. 2004 Sep;170(1):1-7. doi: 10.1016/j.jmr.2004.05.015.

Abstract

We have built an NMR system that employs a superconducting quantum interference device (SQUID) detector and operates in measurement fields of 2-25 microT. The system uses a pre-polarizing field from 4 to 30 mT generated by simple room-temperature wire-wound coils that are turned off during measurements. The instrument has an open geometry with samples located outside the cryostat at room-temperature. This removes constraints on sample size and allows us to obtain signals from living tissue. We have obtained 1H NMR spectra from a variety of samples including water, mineral oil, and a live frog. We also acquired gradient encoded free induction decay (FID) data from a water-plastic phantom in the microT regime, from which simple projection images were reconstructed. NMR signals from samples inside metallic containers have also been acquired. This is possible because the penetration skin depth is much greater at the low operating frequencies of this system than for conventional systems. Advantages to ultra-low field NMR measurements include lower susceptibility artifacts caused by high strength polarizing and measurement fields, and negligible line width broadening due to measurement field inhomogeneity, reducing the burden of producing highly homogeneous fields.

摘要

我们构建了一个核磁共振(NMR)系统,该系统采用超导量子干涉装置(SQUID)探测器,在2 - 25微特斯拉的测量磁场中运行。该系统使用由简单的室温绕线线圈产生的4至30毫特斯拉的预极化场,在测量期间关闭。该仪器具有开放的几何结构,样品位于室温下的低温恒温器外部。这消除了对样品尺寸的限制,并使我们能够从活体组织中获取信号。我们已经从包括水、矿物油和活青蛙在内的各种样品中获得了氢核磁共振谱。我们还在微特斯拉范围内从水 - 塑料模型中采集了梯度编码自由感应衰减(FID)数据,并据此重建了简单的投影图像。我们也采集了金属容器内样品的核磁共振信号。这是可行的,因为在该系统的低工作频率下,穿透皮肤深度比传统系统大得多。超低场核磁共振测量的优点包括由高强度极化场和测量场引起的较低的磁化率伪影,以及由于测量场不均匀性导致的可忽略不计的线宽展宽,减轻了产生高度均匀场的负担。

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