This atlas presents over 160 illustrations, with 116 in color, and illustrates the capacity of multidetector CT for the analysis of the anatomy of the coronary arteries. The multidetector CT scanner speeds diagnosis and treatment of patients. One of its many uses is to perform CT coronary angiography. Multidetector CT provides clear pictures and takes less time than other non-invasive techniques. The book is written by cardiologists and radiologists.
This book is an introduction to diagnostic radiology (including nuclear medicine). Written in a user-friendly format, it takes into account that radiology is divided into many subspecialties that constitute a universe of their own. The book is subdivided into ten sections, such as musculoskeletal, thoracic, gastrointestinal, cardiovascular and breast imaging. Each chapter is presented with an introduction of the subspecialty and ten case studies with illustrations and comments.
The first book to cover the groundbreaking development and clinical applications of Magnetic Resonance Elastography, this book is essential for all practitioners interested in this revolutionary diagnostic modality. The book is divided into three sections. The first covers the history of MRE. The second covers technique and clinical applications of MRE in the liver with respect to fibrosis, liver masses, and other diseases. Case descriptions are presented to give the reader a hands-on approach. The final section presents the techniques, sequence and preliminary results of applications in other areas of the body including muscle, brain, lung, heart, and breast.
After the publication of Learning Diagnostic Imaging, which was an introductory teaching ? le to the ten radiological subspecialties included in the American Boards of Radiology, we began to write a series of teaching ? les on each radiological subspecialty. If the ? rst book of the series was mainly aimed at residents and provided them with an introductory tool to the study of radiology, the subsequent volumes of the series try to provide the reader with an introduction to the study of each radiological subspecialty. In Learning Cardiac Imaging, we intend to review cardiac imaging from the p- spective of the six imaging modalities usually performed to obtain anatomic and functional information of the heart. In old days, conventional radiographs gave us some information about the an- omy and, only secondarily, the pathophysiology of the heart. With the advent of echocardiography, the heart could be studied dynamically. Nuclear Medicine and Cardiac MR allowed the study of cardiac function. 32- and 64-detector multislice CT let us obtain images of the coronary tree in a noninvasive approach. Cardiac imaging is complex and many health care professionals are needed, ? rstly, in the obtention and, secondly, in the interpretation of the images. Not only rad- lologists, cardiologists, and nuclear medicine physicians are needed, specialized nurses and technicians are indispensable to obtain diagnostic images of such a dynamic anatomic structure as the heart. The authorship of the book re? ects its multidisciplinary approach of the book.
The ECG is a fundamental diagnostic tool in cardiology, allowingaccurate diagnosis and monitoring of acute and chronic ischemicheart disease. In this most comprehensive book of its kind,internationally renowned authors correlate electrocardiographicrecordings with anatomical patterns of myocardial ischemia toimprove the diagnosis and management of patients with ischemicheart disease. The book is structured in two sections. Part One coverselectrocardiographic patterns of ischemia, injury andinfarction. • Each chapter discusses a different ECG abnormality inturn, clearly explaining the ischemic insults andelectrophysiological mechanisms underlying each pattern to promoterapid and accurate interpretation of the ECG in the clinicalsetting. • ECG abnormalities are correlated with myocardial anatomyand coronary angiography to produce a series of practicaldiagnostic algorithms that allow the clinician to identify not onlythe occluded artery but the precise location of the occlusionwithin the artery, facilitating appropriate therapeuticdecisions. • The authors also propose a new classification of Q-wavemyocardial infarctions based on imaging correlations with advancedtechniques such as contrast-enhanced cardiac magneticresonance. Part Two of the book covers the ECG in clinical practice. Eachchapter focuses on a different clinical syndrome, describing therole of the ECG in a global approach to the diagnosis, prognosisand risk stratification of patients with acute and chronic ischemicheart disease and guiding clinical decision-making. Extensively referenced and illustrated throughout, this book ishighly recommended for any clinician involved in the diagnosis andmanagement of ischemic heart disease.
This book offers a practical guidance to healthcare professionals interested in learning how to make adequate clinically-oriented use of cardiovascular MRI. Thanks to its case-based approach, it provides a detailed guide to MRI applications in the most common clinical cardiovascular scenarios. Chapters describe a number of real clinical cases, including concise clinical data, clear descriptions of the most relevant information obtained from MRI and of their meaning in terms of patient management. Emphasis is placed on traditional as well as newer MRI techniques, always keeping a practical format, focused on the hands-on knowledge required for an accurate image interpretation. In the online version, the text of each case is supplemented with additional images and videos, certainly making this book a useful resource for understanding how MRI principles apply to real clinical cardiovascular situations.
This state-of the-art publication is a result of the combined efforts of participants from the International Registry of Aortic Dissection (IRAD). It is the most comprehensive reference on aortic dissection The book has been divided into sections. Each chapter provides a succinct overview of the current clinical literature and incorporates illustrations for further explanation.
This open access book presents a comprehensive overview of dilated cardiomyopathy, providing readers with practical guidelines for its clinical management. The first part of the book analyzes in detail the disease’s pathophysiology, its diagnostic work up as well as the prognostic stratification, and illustrates the role of genetics and gene-environment interaction. The second part presents current and future treatment options, highlighting the importance of long-term and individualized treatments and follow-up. Furthermore, it discusses open issues, such as the apparent healing phenomenon, the early prognosis of arrhythmic events or the use of genetic testing in clinical practice. Offering a multidisciplinary approach for optimizing the clinical management of DCM, this book is an invaluable aid not only for the clinical cardiologists, but for all physicians involved in the care of this challenging disease.
This book covers the state-of-the-art approaches for automated non-invasive systems for early cardiovascular disease diagnosis. It includes several prominent imaging modalities such as MRI, CT, and PET technologies. There is a special emphasis placed on automated imaging analysis techniques, which are important to biomedical imaging analysis of the cardiovascular system. Novel 4D based approach is a unique characteristic of this product. This is a comprehensive multi-contributed reference work that will detail the latest developments in spatial, temporal, and functional cardiac imaging. The main aim of this book is to help advance scientific research within the broad field of early detection of cardiovascular disease. This book focuses on major trends and challenges in this area, and it presents work aimed to identify new techniques and their use in biomedical image analysis. Key Features: Includes state-of-the art 4D cardiac image analysis Explores the aspect of automated segmentation of cardiac CT and MR images utilizing both 3D and 4D techniques Provides a novel procedure for improving full-cardiac strain estimation in 3D image appearance characteristics Includes extensive references at the end of each chapter to enhance further study