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目前及未来可用的核磁共振仪器设备及硬件。

NMR instrumentation and hardware available at present and in the future.

作者信息

McFarland E W, Rosen B R

出版信息

Cardiovasc Intervent Radiol. 1986;8(5-6):238-50. doi: 10.1007/BF02552359.

Abstract

Advances in magnetic resonance hardware and instrumentation have facilitated the rapid development of NMR imaging. Systems based on superconducting, resistive, and permanent magnets have been commercially introduced and are now available in a wide range of field strengths. Excellent images are now routinely obtained in fields from 0.1 to 2.0 Tesla (T). It is now clear, however, that obtaining high-quality images requires much more than a high-strength magnet. Improved radiofrequency transmission and receiving subsystems and new special-purpose coils have been essential for high-sensitivity imaging. User interfaces and computational hardware have borrowed from x-ray CT rapid signal processing and image display capabilities. Developments in systems technology are making possible improved image quality and information content together with increased speed. Presented here is a discussion of the basic function and interconnections of the key elements of a complete NMR imaging system.

摘要

磁共振硬件和仪器的进步推动了核磁共振成像的快速发展。基于超导磁体、电阻磁体和永磁体的系统已商业化推出,现在有各种场强可供选择。目前在0.1至2.0特斯拉(T)的场强下常规获取的图像质量优异。然而,现在很清楚的是,获得高质量图像所需的远不止一个高强度磁体。改进的射频发射和接收子系统以及新型专用线圈对于高灵敏度成像至关重要。用户界面和计算硬件借鉴了X射线CT的快速信号处理和图像显示能力。系统技术的发展使得提高图像质量和信息含量以及提高速度成为可能。本文讨论了完整核磁共振成像系统关键元件的基本功能和相互连接。

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