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从放射学的角度看磁共振成像的历史。

The history of MR imaging as seen through the pages of radiology.

机构信息

From the Department of Radiology, NorthShore University HealthSystem, 2650 Ridge Ave, Evanston, IL 60201.

出版信息

Radiology. 2014 Nov;273(2 Suppl):S181-200. doi: 10.1148/radiol.14140706.

Abstract

The first reports in Radiology pertaining to magnetic resonance (MR) imaging were published in 1980, 7 years after Paul Lauterbur pioneered the first MR images and 9 years after the first human computed tomographic images were obtained. Historical advances in the research and clinical applications of MR imaging very much parallel the remarkable advances in MR imaging technology. These advances can be roughly classified into hardware (eg, magnets, gradients, radiofrequency [RF] coils, RF transmitter and receiver, MR imaging-compatible biopsy devices) and imaging techniques (eg, pulse sequences, parallel imaging, and so forth). Image quality has been dramatically improved with the introduction of high-field-strength superconducting magnets, digital RF systems, and phased-array coils. Hybrid systems, such as MR/positron emission tomography (PET), combine the superb anatomic and functional imaging capabilities of MR imaging with the unsurpassed capability of PET to demonstrate tissue metabolism. Supported by the improvements in hardware, advances in pulse sequence design and image reconstruction techniques have spurred dramatic improvements in imaging speed and the capability for studying tissue function. In this historical review, the history of MR imaging technology and developing research and clinical applications, as seen through the pages of Radiology, will be considered.

摘要

放射学中最早有关磁共振(MR)成像的报告发表于 1980 年,距离 Paul Lauterbur 首创第一幅 MR 图像 7 年,距离获得第一幅人体计算机断层扫描图像 9 年。MR 成像研究和临床应用的历史进展与 MR 成像技术的显著进步非常相似。这些进展大致可分为硬件(例如磁铁、梯度、射频[RF]线圈、RF 发射器和接收器、MR 成像兼容的活检设备)和成像技术(例如脉冲序列、并行成像等)。随着高场强超导磁铁、数字 RF 系统和相控阵线圈的引入,图像质量得到了显著提高。MR/正电子发射断层扫描(PET)等混合系统将 MR 成像的出色解剖和功能成像能力与 PET 对组织代谢的无与伦比的能力相结合。硬件的改进为脉冲序列设计和图像重建技术的进步提供了支持,从而大大提高了成像速度和研究组织功能的能力。在这篇历史综述中,将通过《放射学》杂志来回顾 MR 成像技术的发展历史以及研究和临床应用的发展历史。

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