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AAPM/RSNA physics tutorials for residents: MR imaging: brief overview and emerging applications.

机译:针对居民的AAPM / RSNA物理教程:MR成像:简要概述和新兴应用。

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摘要

Magnetic resonance (MR) imaging has become established as a diagnostic and research tool in many areas of medicine because of its ability to provide excellent soft-tissue delineation in different areas of interest. In addition to T1- and T2-weighted imaging, many specialized MR techniques have been designed to extract metabolic or biophysical information. Diffusion-weighted imaging gives insight into the movement of water molecules in tissue, and diffusion-tensor imaging can reveal fiber orientation in the white matter tracts. Metabolic information about the object of interest can be obtained with spectroscopy of protons, in addition to imaging of other nuclei, such as sodium. Dynamic contrast material-enhanced imaging and recently proton spectroscopy play an important role in oncologic imaging. When these techniques are combined, they can assist the physician in making a diagnosis or monitoring a treatment regimen. One of the major advantages of the different types of MR imaging is the ability of the operator to manipulate image contrast with a variety of selectable parameters that affect the kind and quality of the information provided. The elements used to obtain MR images and the factors that affect formation of an MR image include MR instrumentation, localization of the MR signal, gradients, k-space, and pulse sequences.
机译:磁共振(MR)成像已成为许多医学领域的诊断和研究工具,因为它能够在不同的关注领域提供出色的软组织轮廓。除了T1和T2加权成像之外,还设计了许多专门的MR技术来提取代谢或生物物理信息。扩散加权成像可以洞察组织中水分子的运动,而扩散张量成像可以揭示白质束中的纤维取向。除了对其他原子核(例如钠)成像之外,还可以通过质子光谱获得有关目标物体的代谢信息。动态对比材料增强成像和最近的质子光谱学在肿瘤成像中起着重要作用。当这些技术结合在一起时,它们可以帮助医生做出诊断或监测治疗方案。不同类型的MR成像的主要优点之一是操作员能够以多种可选参数操纵图像对比度,这些可选参数会影响所提供信息的种类和质量。用于获得MR图像的元素以及影响MR图像形成的因素包括MR仪器,MR信号的定位,梯度,k空间和脉冲序列。

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