首页> 外文期刊>Journal of magnetic resonance >Calculated signal-to-noise ratio of MRI detected with SQUIDs and Faraday detectors in fields from 10 mu T to 1.5 T
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Calculated signal-to-noise ratio of MRI detected with SQUIDs and Faraday detectors in fields from 10 mu T to 1.5 T

机译:用SQUID和法拉第检测器在10μT至1.5 T的磁场中测得的MRI信噪比

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摘要

We examine the calculated signal-to-noise ratio (SNR) achievable with different MRI detection modalities in precession fields ranging from 10 mu T to 1.5 T. In particular, we compare traditional Faraday detectors with both tuned and untuned detectors based on superconducting quantum interference devices (SQUIDs). We derive general expressions for the magnetic field noise due to the samples and the detectors, and then calculate the SNR achievable for a specific geometry with each modality with and without prepolarization. We show that each of the three modalities is superior in one of the three field ranges. SQUID-based detection is superior to conventional Faraday detection for MRI in precession fields below 250 mT for a 65 mm diameter surface coil placed a distance of 25 mm from the voxel of interest embedded in a cylinder of tissue 50 mm tall and of radius 50 trim. This crossover field, however, is sensitive to the geometry. (c) 2007 Elsevier Inc. All rights reserved.
机译:我们检查了在10μT至1.5 T的进动范围内使用不同的MRI检测方式可达到的计算信噪比(SNR)。特别是,我们将传统的法拉第检测器与基于超导量子干扰的调谐和非调谐检测器进行了比较设备(SQUID)。我们推导了由样本和检测器引起的磁场噪声的一般表达式,然后计算了具有和没有预极化的每种模态下对于特定几何形状可获得的SNR。我们显示,这三个模态中的每一个在三个领域范围之一中均优越。基于SQUID的检测优于250 mT以下的进动场中MRI的常规法拉第检测,对于直径为65 mm的表面线圈,其与嵌入在50 mm高,半径为50的组织圆柱体中的目标体素之间的距离为25 mm 。但是,此交越场对几何形状敏感。 (c)2007 Elsevier Inc.保留所有权利。

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