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An image-based approach to understanding the physics of MR artifacts.

机译:一种基于图像的方法来理解MR伪像的物理过程。

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摘要

As clinical magnetic resonance (MR) imaging becomes more versatile and more complex, it is increasingly difficult to develop and maintain a thorough understanding of the physical principles that govern the changing technology. This is particularly true for practicing radiologists, whose primary obligation is to interpret clinical images and not necessarily to understand complex equations describing the underlying physics. Nevertheless, the physics of MR imaging plays an important role in clinical practice because it determines image quality, and suboptimal image quality may hinder accurate diagnosis. This article provides an image-based explanation of the physics underlying common MR imaging artifacts, offering simple solutions for remedying each type of artifact. Solutions that have emerged from recent technologic advances with which radiologists may not yet be familiar are described in detail. Types of artifacts discussed include those resulting from voluntary and involuntary patient motion, magnetic susceptibility, magnetic field inhomogeneities, gradient nonlinearity, standing waves, aliasing, chemical shift, and signal truncation. With an improved awareness and understanding of these artifacts, radiologists will be better able to modify MR imaging protocols so as to optimize clinical image quality, allowing greater confidence in diagnosis.
机译:随着临床磁共振(MR)成像变得越来越通用和复杂,越来越难以发展和保持对控制不断变化的技术的物理原理的透彻理解。对于放射科医生而言,尤其如此,他们的主要义务是解释临床图像,而不必理解描述基本物理原理的复杂方程式。尽管如此,MR成像的物理学在临床实践中仍起着重要作用,因为它决定了图像质量,而次佳的图像质量可能会妨碍准确诊断。本文提供了基于图像的常见MR成像伪像基础的物理学解释,并提供了用于补救每种伪像的简单解决方案。详细描述了放射技术人员可能不熟悉的,从最新技术进步中涌现的解决方案。讨论的伪像类型包括由患者的自愿和非自愿运动,磁化率,磁场不均匀性,梯度非线性,驻波,混叠,化学位移和信号截断引起的伪像。通过提高对这些伪影的认识和理解,放射科医生将能够更好地修改MR成像协议,从而优化临床图像质量,从而提高诊断的信心。

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