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用于质量受限样品实际核磁共振的射频微线圈设计。

RF microcoil design for practical NMR of mass-limited samples.

作者信息

Subramanian R, Lam M M, Webb A G

机构信息

Magnetic Resonance Engineering Laboratory, Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, Illinois, 61801, USA.

出版信息

J Magn Reson. 1998 Jul;133(1):227-31. doi: 10.1006/jmre.1998.1450.

Abstract

This paper addresses practical issues involved in obtaining high resolution 1H NMR spectra from samples containing less than 10 nmol. Solenoidal microcoils have been constructed to: (a) assess the effects of magnetic susceptibility mismatches at 500 MHz, (b) increase the concentration sensitivity of microcoil probes, (c) incorporate a lock channel for 2D experiments and long 1D acquisitions, and (d) assess the total amount of the sample required (with respect to the coil length) to avoid line broadening due to edge effects. Compared to previously published microcoil results, sample volumes have been increased by a factor of 20 with a concomitant decrease in the required concentration (5-20 mM). Perfluorocarbon susceptibility matching remained effective at 500 MHz, allowing acquisition of high resolution NMR spectra. A lock channel has also been successfully incorporated in microcoil probes. The limits of detection for sucrose with a 10 min acquisition time were found to be 17.8 and 34.1 pmol for the single and double resonance coils, respectively. A sample length of approximately 10 times than that of the coil was required to avoid magnetic susceptibility artifacts.

摘要

本文探讨了从含量低于10 nmol的样品中获取高分辨率¹H NMR谱所涉及的实际问题。已构建螺线管微线圈以:(a)评估500 MHz下磁化率失配的影响,(b)提高微线圈探头的浓度灵敏度,(c)为二维实验和长时间一维采集加入锁通道,以及(d)评估避免边缘效应导致谱线展宽所需的样品总量(相对于线圈长度)。与先前发表的微线圈结果相比,样品体积增加了20倍,同时所需浓度降低(5 - 20 mM)。全氟碳化物磁化率匹配在500 MHz时仍然有效,从而能够采集高分辨率NMR谱。锁通道也已成功纳入微线圈探头。对于单共振和双共振线圈,采集时间为10分钟时,蔗糖的检测限分别为17.8和34.1 pmol。为避免磁化率伪影,所需样品长度约为线圈长度的10倍。

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