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在 7 特斯拉人体乳房中进行直接 B0 场监测和实时 B0 场更新。

Direct B0 field monitoring and real-time B0 field updating in the human breast at 7 Tesla.

机构信息

Department of Radiology, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Magn Reson Med. 2012 Feb;67(2):586-91. doi: 10.1002/mrm.23272. Epub 2011 Dec 12.

Abstract

Large dynamic fluctuations of the static magnetic field (B(0)) are observed in the human body during MR scanning, compromising image quality and detection sensitivity in several MR imaging and spectroscopy sequences. Partially, these dynamic B(0) fluctuations are due to physiological motion such as breathing, but other sources of temporal B(0) field fluctuations are also present in the MR system (e.g., eddy currents). Especially at ultrahigh field (≥7 T), the increased susceptibility effects lead to large B(0) field variations over time. Direct measurement and correction of these temporal field variations of up to 70 Hz will lead to a significant reduction of artifacts and improved measurement stability/reproducibility. For direct measurement of the temporally changing B(0) field, a simple field probe was developed, that was placed in proximity to the tissue of interest. In this work, it is shown how such a field probe system can be used to monitor temporal B(0) field variations in the human body during MRI and magnetic resonance spectroscopy. Furthermore, it is shown how the acquired temporal B(0) field information can drive a dynamic shim module to directly correct the B(0) magnetic field in real time.

摘要

在磁共振扫描过程中,人体中的静态磁场(B(0))会发生大幅动态波动,这会影响到几种磁共振成像和光谱序列的图像质量和检测灵敏度。这些动态 B(0)波动部分是由于呼吸等生理运动引起的,但磁共振系统中也存在其他时间 B(0)磁场波动源(例如涡流)。特别是在超高场(≥7T)下,增加的磁化率效应会导致 B(0)场随时间发生较大变化。直接测量和校正高达 70Hz 的这些时变磁场将显著减少伪影并提高测量稳定性/可重复性。为了直接测量随时间变化的 B(0)场,开发了一种简单的场探头,将其放置在感兴趣的组织附近。在这项工作中,展示了如何使用这种场探头系统来监测磁共振成像和磁共振波谱期间人体中随时间变化的 B(0)场变化。此外,还展示了如何利用所获取的随时间变化的 B(0)场信息来驱动动态匀场模块实时直接校正 B(0)磁场。

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