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Titlebook: Echo-Planar Imaging; Theory, Technique an Franz Schmitt,Michael K. Stehling,Robert Turner Book 1998 Springer-Verlag Berlin Heidelberg 1998

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书目名称Echo-Planar Imaging
副标题Theory, Technique an
编辑Franz Schmitt,Michael K. Stehling,Robert Turner
视频video
概述Manual for implementation and use of EPI with complete background on EPI technique.Capabilities and limitations of EPI.Encyclopedic information about important MRI methods and practical details of cru
图书封面Titlebook: Echo-Planar Imaging; Theory, Technique an Franz Schmitt,Michael K. Stehling,Robert Turner Book 1998 Springer-Verlag Berlin Heidelberg 1998
描述"Dost thou love life? Then do not squander time, for that‘s the stuff life is made oj‘: Benjamin Franklin This book describes the technical principles and applications of echo-planar imaging (EPI) which, as much as any other technique, has shaped the develop­ ment of modern magnetic resonance imaging (MRI). The principle of EPI, namely, the acquisition of multiple nuclear magnetic resonance echoes from a single spin excitation, has made it possible to shorten the previously time-con­ suming MRI data acquisition from minutes to much less than a second. Interest­ ingly, EPI is one of the oldest MRI techniques, conceived in 1976 by Sir Peter Mansfield only 4 years after the initial description of the principles of MRI. One of the inventors of MRI himself, Mansfield realized that fast data acquisition would be paramount in bringing medical applications of MRI to full fruition. The technological challenges in implementing EPI, however, were formidable. Until the end of the 1980s few people believed that EPI would be clinically useful, since its complexity was far greater than that of "conventional" MRI methods.
出版日期Book 1998
关键词Fast Imaging; Functional Brain Mapping; Medical Imaging; angiography; brain; brain imaging; magnetic reson
版次1
doihttps://doi.org/10.1007/978-3-642-80443-4
isbn_softcover978-3-642-80445-8
isbn_ebook978-3-642-80443-4
copyrightSpringer-Verlag Berlin Heidelberg 1998
The information of publication is updating

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Echo-Planar Imaging Hardware,magnetic resonance (MR) scanner hardware. The high performance required, particularly in the generation of large rapidly switched magnetic field gradients, meant that in the past it was generally not possible to implement EPI on standard clinical imaging systems, and consequently much of the develop
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Echo-Planar Image Reconstruction,. After a single excitation an appropriate gradient sequence encodes the magnetization repeatedly, thus filling the whole k-space. This allows, for example, the freezing of dynamic processes and the observation of these processes in real time. It has been shown that EPI can provide head and body ima
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Echo-Planar Imaging Angiography,chniques. For most conventional MRI sequences, data acquisition is still slower than many dynamic physiological processes, often yielding images plagued with motion artifacts that can obscure important information. On the other hand, EPI can ensure successful scanning of uncooperative patients and t
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Abdominal Diffusion Imaging Using Echo-Planar Imaging,ibility to motion artifacts was the prime reason for conventional magnetic resonance (MR) imaging to be restricted primarily to imaging the brain. However, with the evolution of several ultrafast imaging techniques [1, 3] this restriction has been lifted. Cardiac and abdominal MR imaging have become
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