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Titlebook: Magnetic Resonance Imaging; Methods and Biologic Pottumarthi V. Prasad Book 2006 Humana Press 2006 Tumor.brain.functional magnetic resonanc

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发表于 2025-3-21 16:57:32 | 显示全部楼层 |阅读模式
书目名称Magnetic Resonance Imaging
副标题Methods and Biologic
编辑Pottumarthi V. Prasad
视频video
概述Includes supplementary material:
丛书名称Methods in Molecular Medicine
图书封面Titlebook: Magnetic Resonance Imaging; Methods and Biologic Pottumarthi V. Prasad Book 2006 Humana Press 2006 Tumor.brain.functional magnetic resonanc
描述Leading experts in the use of MRI explain its basic principles and demonstrate its power to understand biological processes with numerous cutting-edge applications. To illustrate its capability to reveal exquisite anatomical detail, the authors discuss MRI applications to developmental biology, mouse phenotyping, and fiber architecture. MRI can also provide information about organ and tissue function based on endogenous cantrast mechanisms. Examples of brain, kidney, and cardiac function are included, as well as applications to neuro and tumor pathophysiology. In addition, the volume demonstrates the use of exogenous contrast material in functional assessment of the lung, noninvasive evaluation of tissue pH, the imaging of metabolic activity or gene expression that occur on a molecular level, and cellular labeling using superparamagnetic iron oxide contrast agents.
出版日期Book 2006
关键词Tumor; brain; functional magnetic resonance imaging (fMRI); kidney; lung; magnetic resonance; magnetic res
版次1
doihttps://doi.org/10.1385/1597450103
isbn_softcover978-1-62703-812-6
isbn_ebook978-1-59745-010-2Series ISSN 1543-1894 Series E-ISSN 1940-6037
issn_series 1543-1894
copyrightHumana Press 2006
The information of publication is updating

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Tissue pH Measurement by Magnetic Resonance Spectroscopy and Imagingcid (IEPA), and 1,4,7,10-Tetraazacyclododecane-1,4,7,10-tetrakis(acetamidomethylenephosphonic acid) (Gd-DOTA-4AmP), to examine local extracellular pH in vivo. The level of detail presented will enable nonnovice users of MRS and MRI to reproduce these methodologies in their own laboratories.
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1543-1894 ogical processes with numerous cutting-edge applications. To illustrate its capability to reveal exquisite anatomical detail, the authors discuss MRI applications to developmental biology, mouse phenotyping, and fiber architecture. MRI can also provide information about organ and tissue function bas
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Magnetic Resonance Microscopyof single cells or small cellular clusters. Here, we discuss some of the challenges facing MR microscopy and the technical and phenomenological strategies used to overcome these challenges. Some of the applications of MR microscopy are highlighted in this chapter.
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Quantitative Perfusion Imaging Using Arterial Spin LabelingTwo main variants of the ASL technique are in use: continuous ASL (CASL) and pulsed ASL (PASL). This chapter describes basic theory for CASL, and experimental and computational procedures for obtaining quantitative perfusion maps of the brain. Extension of the technique for renal perfusion imaging is outlined.
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Magnetic Resonance Microscopy of Mouse Brain Developmentontrast mechanisms are two critical disadvantages. In this article, the future potential of magnetic resonance (MR) microimaging is discussed, with special emphasis on diffusion tensor microimaging as an effective contrast mechanism for the developing central nervous system.
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