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Magnetic flux density measurement in magnetic resonance electrical impedance tomography using a low-noise current source

机译:使用低噪声电流源的磁共振电阻抗层析成像中的磁通密度测量

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摘要

Current injected into an electrically conducting object induces distributions of magnetic flux density as well as voltage and current density. In magnetic resonance electrical impedance tomography (MREIT), we measure the induced magnetic flux density using an MRI scanner to reconstruct cross-sectional conductivity images of the object. The current injection must be synchronized with a chosen MRI pulse sequence and the current source needs to be programmable to accommodate various pulse sequences. For an injected current of 1 mA, for example, we may expect an induced magnetic flux density of a few nanoteslas, and noise reduction in measured magnetic flux density data is important for better conductivity image quality. In this paper, we describe how to reduce noise in measured magnetic flux density data based on analyses of noise sources in MREIT. Given an MRI scanner and an imaging object, we found that the current source including lead wires becomes a major noise source. We designed a low-noise programmable current source with optical links, batteries and electromagnetic shields. Equipped with lead switching capability, it automates MREIT imaging experiments using multiple pairs of electrodes. We found that the new current source improves the output current SNR by about 10 dB and the MR magnitude image SNR by about 30percent. Placing it near an imaging object inside the shielded room, we could reduce the noise standard deviation in measured magnetic flux density data by 40percent. We propose use of this low-noise current source for in vivo animal and human MREIT imaging studies.
机译:注入导电物体的电流会引起磁通量密度以及电压和电流密度的分布。在磁共振电阻抗层析成像(MREIT)中,我们使用MRI扫描仪测量感应磁通密度,以重建物体的截面电导率图像。电流注入必须与选定的MRI脉冲序列同步,并且电流源需要可编程以适应各种脉冲序列。例如,对于1 mA的注入电流,我们可以预期感应的磁通密度为几个纳米特斯拉,而降低测得的磁通密度数据对于提高电导率图像质量至关重要。在本文中,我们基于对MREIT中噪声源的分析,描述了如何减少测得的磁通密度数据中的噪声。给定MRI扫描仪和成像对象,我们发现包括引线在内的电流源成为主要的噪声源。我们设计了具有光链路,电池和电磁屏蔽的低噪声可编程电流源。配备了引线切换功能,它可以使用多对电极自动执行MREIT成像实验。我们发现,新的电流源将输出电流SNR提高了约10 dB,并将MR幅值图像SNR提高了约30%。将其放置在屏蔽室内的成像对象附近,可以将测得的磁通密度数据中的噪声标准偏差降低40%。我们建议将此低噪声电流源用于体内动物和人类MREIT成像研究。

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