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2H transmit–receive NMR probes for magnetic field monitoring in MRI

机译:2H发射-接收NMR探头,用于MRI中的磁场监测

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摘要

Measuring image encoding fields in real time and applying the information in postprocessing offer improved image quality for MRI, particularly for applications that are intrinsically sensitive to gradient imperfections. For this task, a stand-alone magnetometer system based on multiple 2H transmit–receive NMR probes has been developed. The conceptual advantages of changing to 2H NMR probes for 1H magnetic field monitoring are elucidated here, and the practical design of the probes is described. In comparison to previous 1H NMR probe-based designs, 2H probes are perfectly decoupled from standard 1H imaging. Utilization of RF shielding or other nonoptimal decoupling schemes is therefore not needed. Probes based on 2H nuclei are also more easily miniaturized for high-resolution imaging. This is particularly important for diffusion tensor and phase-contrast imaging, which rely on strong motion-sensitizing gradients. The presented 2H NMR probes have been shown to fulfill the requirements for accurate 1H imaging down to image resolutions of 0.2 mm. Using susceptibility matching techniques, the probe's B0 inhomogeneity-induced signal dephasing is reduced and monitoring periods beyond 200 msec are achieved. The benefit of real time magnetic field monitoring is highlighted for phase-contrast and non-Cartesian multishot imaging. Magn Reson Med, 2011. © 2010 Wiley-Liss, Inc.
机译:实时测量图像编码字段并在后处理中应用信息可为MRI提供改进的图像质量,特别是对于对梯度缺陷本质敏感的应用。为此,已经开发了基于多个 2 H发射-接收NMR探针的独立磁力计系统。在此阐明了更改为 1 H磁场监测的 2 H NMR探针的概念优势,并说明了探针的实际设计。与以前的 1 H NMR探针设计相比, 2 H探针与标准 1 H成像完全脱钩。因此,不需要利用RF屏蔽或其他非最佳解耦方案。基于 2 H核的探针也更容易小型化,以用于高分辨率成像。这对于依赖于强烈的运动敏感梯度的扩散张量和相位对比成像尤其重要。已经证明,提出的 2 H NMR探针可以满足精确的 1 H成像要求,图像分辨率低至0.2 mm。使用磁化率匹配技术,可以减少探针的B 0 不均匀性引起的信号移相,并实现超过200毫秒的监视时间。对于相衬和非笛卡尔多镜头成像,实时磁场监视的优势得到了强调。 Magn Reson Med,2011年。©2010 Wiley-Liss,Inc.。

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