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首页> 外文期刊>Radiographics >AAPM/RSNA physics tutorial for residents: fundamental physics of MR imaging.
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AAPM/RSNA physics tutorial for residents: fundamental physics of MR imaging.

机译:面向居民的AAPM / RSNA物理教程:MR成像的基本物理。

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摘要

Learning the basic concepts required to understand magnetic resonance (MR) imaging is a straightforward process. Although the individual concepts are simple, there are many concepts to learn and retain simultaneously; this situation may give the illusion that learning the physics of MR imaging is complicated. It is important for the radiologist who interprets MR images to understand the methods used to create the images because image contrast specifically depends on how the image data were acquired. Initial concepts include formation of magnetic fields from electric currents in loops of wire, the resonance phenomenon, the hydrogen proton and its frequency of precession, and absorption of radiofrequency energy. These concepts can then be applied to learn about T1 and T2 relaxation and contrast and how the acquisition parameters of echo time and repetition time can be used to achieve these image contrasts. Basic pulse sequences include the spin-echo, multiecho spin-echo, turbo spin-echo, inversion-recovery, and gradient-recalled-echo sequences.
机译:学习了解磁共振(MR)成像所需的基本概念是一个简单的过程。尽管各个概念很简单,但是有许多概念需要同时学习和保留。这种情况可能会给人一种幻觉,即学习MR成像的物理过程很复杂。对于解释MR图像的放射科医生来说,了解用于创建图像的方法非常重要,因为图像对比度特别取决于如何获取图像数据。最初的概念包括导线回路中的电流形成磁场,共振现象,氢质子及其进动频率以及射频能量的吸收。然后可以将这些概念应用于了解T1和T2弛豫和对比度,以及如何使用回波时间和重复时间的采集参数来实现这些图像对比度。基本脉冲序列包括自旋回波,多回波自旋回波,涡轮自旋回波,反转恢复和梯度回波序列。

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