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使用磁共振成像(MRI)测量铜线模型中的微弱电流:磁化率增强的影响

Measurement of weak electric currents in copper wire phantoms using MRI: influence of susceptibility enhancement.

作者信息

Huang Ruiwang, Posnansky Oleg, Celik Abdullah, Oros-Peusquens Ana-Maria, Ermer Veronika, Irkens Marco, Wegener H-Peter, Shah N Jon

机构信息

Institute of Medicine, Research Centre Juelich, 52425 Juelich, Germany.

出版信息

MAGMA. 2006 Aug;19(3):124-33. doi: 10.1007/s10334-006-0035-1. Epub 2006 Jul 25.

DOI:10.1007/s10334-006-0035-1
PMID:16865386
Abstract

The use of magnetic resonance imaging (MRI)-based methods for the direct detection of neuronal currents is a topic of intense investigation. Much experimental work has been carried out with the express aim of establishing detection thresholds and sensitivity to flowing currents. However, in most of these experiments, magnetic susceptibility enhancement was ignored. In this work, we present results that show the influence of a susceptibility artefact on the detection threshold and sensitivity. For this purpose, a novel phantom, consisting of a water-filled cylinder with two wires of different materials connected in series, was constructed. Magnitude MR images were acquired from a single slice using a gradient-echo echo planar imaging (EPI) sequence. The data show that the time course of the detected MR signal magnitude correlates very well with the waveform of the input current. The effect of the susceptibility artefacts arising from the two different wires was examined by comparing the magnitudes of the MR signals at different voxel locations. Our results indicate the following: (1) MR signal enhancement arising from the magnetic susceptibility effect influences the detection sensitivity of weak current; (2) the detection threshold and sensitivity are phantom-wire dependent; (3) sub-mu A electric current detection in a phantom is possible on a 1.5-T MR scanner in the presence of susceptibility enhancement.

摘要

使用基于磁共振成像(MRI)的方法直接检测神经元电流是一个正在深入研究的课题。已经开展了许多实验工作,其明确目标是确定检测阈值和对流动电流的灵敏度。然而,在大多数这些实验中,忽略了磁化率增强的影响。在这项工作中,我们展示的结果表明了磁化率伪影对检测阈值和灵敏度的影响。为此,构建了一种新型体模,它由一个充满水的圆柱体和两根串联的不同材料的导线组成。使用梯度回波平面回波成像(EPI)序列从单个切片采集幅度磁共振图像。数据表明,检测到的磁共振信号幅度的时间进程与输入电流的波形非常吻合。通过比较不同体素位置处磁共振信号的幅度,研究了由两根不同导线产生的磁化率伪影的影响。我们的结果表明:(1)由磁化率效应引起的磁共振信号增强会影响弱电流的检测灵敏度;(2)检测阈值和灵敏度取决于体模导线;(3)在存在磁化率增强的情况下,在1.5-T磁共振扫描仪上对体模中的亚微安电流进行检测是可能的。

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Directly mapping magnetic field effects of neuronal activity by magnetic resonance imaging.
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