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磁共振物理学关键概念综述。

Review of key concepts in magnetic resonance physics.

作者信息

Moore Michael M, Chung Taylor

机构信息

Department of Radiology, The Pennsylvania State College of Medicine, Penn State Hershey Children's Hospital, Hershey, PA, 17033, USA.

Department of Diagnostic Imaging, UCSF Benioff Children's Hospital Oakland, 747 52nd St., Oakland, CA, 94609, USA.

出版信息

Pediatr Radiol. 2017 May;47(5):497-506. doi: 10.1007/s00247-017-3791-3. Epub 2017 Apr 13.

Abstract

MR physics can be a challenging subject for practicing pediatric radiologists. Although many excellent texts provide very comprehensive reviews of the field of MR physics at various levels of understanding, the authors of this paper explain several key concepts in MR physics that are germane to clinical practice in a non-rigorous but practical fashion. With the basic understanding of these key concepts, practicing pediatric radiologists can build on their knowledge of current clinical MR techniques and future advances in MR applications. Given the challenges of both the increased need for rapid imaging in non-sedated children and the rapid physiological cardiovascular and respiratory motion in pediatric patients, many advances in complex MR techniques are being applied to imaging these children. The key concepts are as follows: (1) structure of a pulse sequence, (2) k-space, (3) "trade-off triangle" and (4) fat suppression. This review is the first of five manuscripts in a minisymposium on pediatric MR. The authors' goal for this review is to aid in understanding the MR techniques described in the subsequent manuscripts on brain imaging and body imaging in this minisymposium.

摘要

磁共振物理对于执业儿科放射科医生来说可能是一门具有挑战性的学科。尽管许多优秀的教科书对磁共振物理领域进行了不同理解层面的非常全面的综述,但本文作者以一种非严格但实用的方式解释了磁共振物理中与临床实践相关的几个关键概念。有了对这些关键概念的基本理解,执业儿科放射科医生可以在其当前临床磁共振技术知识的基础上,进一步了解磁共振应用的未来进展。鉴于在未镇静儿童中快速成像需求增加以及儿科患者生理上快速的心血管和呼吸运动所带来的挑战,许多复杂磁共振技术的进展正被应用于对这些儿童的成像。关键概念如下:(1)脉冲序列结构,(2)k空间,(3)“权衡三角”和(4)脂肪抑制。本综述是关于儿科磁共振的小型研讨会五篇稿件中的第一篇。作者撰写本综述的目的是帮助理解在本次小型研讨会后续关于脑成像和体部成像的稿件中所描述的磁共振技术。

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