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Titlebook: Neuroimaging; Clinical and Physica Robert A. Zimmerman (Professor of Radiology, Chief Textbook 2000 Springer-Verlag New York, Inc. 2000 Ner

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发表于 2025-3-21 18:46:15 | 显示全部楼层 |阅读模式
书目名称Neuroimaging
副标题Clinical and Physica
编辑Robert A. Zimmerman (Professor of Radiology, Chief
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概述Covers all techniques from MR, including latest developments in fast MR, MRA, and FLAIR, to CT, ultrasonography, angiography, plain film and myelography - State-of-the-art descriptions of imaging of t
图书封面Titlebook: Neuroimaging; Clinical and Physica Robert A. Zimmerman (Professor of Radiology, Chief Textbook 2000 Springer-Verlag New York, Inc. 2000 Ner
描述.Neuroimaging: Clinical and Physical Principles. is destined to be the new benchmark among text/reference books for neuroradiology. Unique among all similar titles is this book‘s complete coverage of ALL imaging modalities and techniques used in modern neuroimaging, from MR (including up-to-the minute developments in fast MR, MRA, and FLAIR), to CT, ultrasonography, angiography, plain film, and myelography. Many topics that are covered little if at all in standard neuroimaging texts are given complete, state-of-the-art descriptions in this book, including: imaging of the head, neck, temporal bone, orbit, and sinuses; normal variants; imaging of pediatric neurologic diseases and developmental anomalies; imaging of trauma to the head, brain, and spine; interventional techniques, both intracranial and spinal; and sedation of both adult and pediatric patients. The book is rounded out with complete coverage of the Physical Principles that underlie modern Computed Tomography and Magnetic Resonance Imaging. The ten chapters in this section provide everything the radiologist must know such as; the physical basics of MR and CT; MR and CT contrast agents and their applications; hardware and
出版日期Textbook 2000
关键词Nervous System; Tumor; clinical application; computed tomography (CT); diagnosis; radiology
版次1
doihttps://doi.org/10.1007/978-1-4612-1152-5
isbn_softcover978-1-4612-7025-6
isbn_ebook978-1-4612-1152-5
copyrightSpringer-Verlag New York, Inc. 2000
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Data Acquisition and Image Formationcribed by Kumar. and modified by Edelstein.. Many investigational groups, such as those headed by Mansfield,. Lauterbur,. Crooks,. Hinshaw,. and Pykett,. have made substantial contributions to the development of the techniques required for cost effective signal acquisition.
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MRI Hardware, Signal-to-Noise Ratio, and Safety apparatus; the third is the computer apparatus with the analog to digital convertor, array processor, and software for data acquisition and manipulation. Parameters that influence signal-to-noise ratios and a review of safety issues of MRI are also addressed.
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Faster MRIr imaging. However, each of these imaging schemes has had to make inevitable trade-offs in signal-to-noise, spatial resolution, and tissue contrast. Several excellent review articles are included for the interested reader..
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Magnetic Resonance Artifactstion, and strategies to eliminate them are important to anyone interpreting MRI. Artifacts can create pseudo-lesions (Fig. 8.1), degrade image quality, and instigate inappropriate additional tests or treatments if not recognized.
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Congenital Brain Anomaliesmosome abnormality), environmental (ionizing radiation, toxic agents), infection (rubella and cytomegalovirus), and nutrition (hypervitaminosis A) might play roles.. Generally, developmental malformations are either a morphological abnormality (organogenesis) or an abnormal cellular differentiation (histogenesis).
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