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Titlebook: Basic Principles of Cardiovascular MRI; Physics and Imaging Mushabbar A. Syed,Subha V. Raman,Orlando P. Simone Book 2015 Springer Internat

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期刊全稱Basic Principles of Cardiovascular MRI
期刊簡(jiǎn)稱Physics and Imaging
影響因子2023Mushabbar A. Syed,Subha V. Raman,Orlando P. Simone
視頻videohttp://file.papertrans.cn/182/181102/181102.mp4
發(fā)行地址Covers basic MRI principles in detail.Focuses on the needs of cardiovascular imagers.Comprehensive and authoritative text on this subject.Includes figures and CMR examples in the form of high-resoluti
圖書(shū)封面Titlebook: Basic Principles of Cardiovascular MRI; Physics and Imaging  Mushabbar A. Syed,Subha V. Raman,Orlando P. Simone Book 2015 Springer Internat
影響因子This book is a comprehensive and authoritative text on the expanding scope of CMR, dedicated to covering basic principles in detail focusing on the needs of cardiovascular imagers. The target audience for this book includes CMR specialists, trainees in CMR and cardiovascular medicine, cardiovascular physicists or clinical cardiovascular imagers. This book includes figures and CMR examples in the form of high-resolution still images and is divided in two sections: basic MRI physics, i.e. the nuts and bolts of MR imaging; and imaging techniques (pulse sequences) used in cardiovascular MR imaging. Each imaging technique is discussed in a separate chapter that includes the physics and clinical applications (with cardiovascular examples) of a particular technique.Evolving techniques or research based techniques are discussed as well.This section covers both cardiac and vascular imaging. ?Cardiovascular magnetic resonance (CMR) imaging is now considered a clinically important imaging modality for patients with a wide variety of cardiovascular diseases. Recent developments in scanner hardware, imaging sequences, and analysis software have led to 3-dimensional, high-resolution imaging of t
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Black-Blood CMRptimizing the cardiac phase during which data acquisition occurs. For those relying on black blood imaging to detect myocardial edema, caution must be exerted in recognizing spuriously bright areas of myocardium resulting from slow-flowing blood. While contemporary tissue mapping techniques overcome
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Tissue Characterization: T1, T2 and T2* Techniques such as sarcoid granuloma and amyloid protein. LGE usually provides robust myocardial characterization, but has two major limitations. First, it requires administration of gadolinium-based contrast, which may not be suitable for individuals with known allergy to such agents or patients with advance
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Perfusionerent components of cardiac perfusion MRI including pulse sequences, image readout, acceleration techniques, and image analysis. In each section, we review the basic theory behind each technique and then discuss their relative advantages and disadvantages. We conclude with a brief discussion of emer
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Late Gadolinium Enhancement Imagingevelopment, highlighting many crucial innovations along the way. Finally, we explore a variety of clinical applications of LGE, including its role in the characterization of infarct scar, in multiple cardiomyopathies, and in the rule-out of infectious or infiltrative disease. Common approaches for q
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Flow Imaginglic and diastolic function to aide both diagnosis and prognosis in patients with cardiovascular disease. Disease conditions highlighted include myocardial disease, valve disease, and vascular disease. Special emphasis is given to congenital heart disease, where a significant number of PCMR applicati
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