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This atlas is a comprehensive compendium of congeni and two-dimensional echocardiographic examples. The tal cardiac morphology as depicted by tomographic two examples and experience span all ages and may be used dimensional echocardiography. Anatomic specimens by both pediatric and adult cardiologists. The intended cut in planes of section corresponding to the echocar emphasis is on tomographic morphology and not on diographic views help in the understanding of the echo specialty applications such as fetal, contrast, or Dop cardiographic sections. Composite photographs relate pler echocardiography. different planes of section or cardiac events. Still-frame The tomographic approach to congenital anomalies is photography cannot always adequately relate real-time the imaging modality of the 80s and is applicable to echocardiography, computerized tomography, and imaging events. However, the emphasis of this text is to demonstrate the tomographic morphology and no at magnetic resonance imaging. It is the building block tempt is made to discuss in detail functional or physio from which the expected three-dimensional imaging logic events. techniques of the 1990s will be developed. The wide spread clinical application of these imaging modalities Those performing two-dimensional echocardiography should have a working knowledge of cardiac anatomy has rekindled interest in cardiac anatomy and pathol and common congenital aberrations. This is an in-depth ogy, particularly in the evaluation of patients with con tomographic atlas not only of the common congenital genital heart disease.
The introduction of quantitative Doppler echocardiography gave rise to explo sive interest in the application of this method in clinical cardiology. However, before cardiologists could fully validate its clinical utility, they were confronted with a further development, namely color-coded Doppler flow imaging. This new technique allows a comprehensive study of the direction, velocity, uniformity and timing of intracardiac blood flow, while simultaneously revealing cardiac struc tures and their movement. 'Color Doppler' facilitates the diagnosis of a variety of cardiac conditions, and an overwhelming amount of information is available at any instant. Interpretation of these fascinating images requires a substantial experience and theoretical background. This monograph updates the application of color Doppler to both congenital and acquired heart disease. The work comprises 15 chapters written by authorities in the field, each of whom presents his most recent experience in the field. In addition, further advantages in the clinical use of pulsed and continuous wave Doppler in pediatric and adult cardiol ogy are presented. This book contains, of course, many color plates. 1. Roelandt, M.D. VII Contents Preface V List of contributors IX 1. Technical aspects and physical principles revisited Structure and performances of mono- and bidimensional pulsed Doppler systems 3 P. Peronneau, B. Diebold, J.P. Guglielmi, O. Lanusel, R. Bele, J. Souquet Estimation of transvalvular pressure drops hy Doppler echocardiography: the Bernoulli equation revisited 19 H. Rijsterborgh, 1. Roelandt Factors influencing fluid velocity measurements in valvular regurgitation 29 B. Wranne, P. Ask, D.
This two volume textbook is a practical guide to echocardiography for trainees. Divided into seven sections, the book begins with an introduction to the history and basics of echocardiography. The second section explains how to perform different types of echocardiograph. Each of the following sections examines echocardiography and its interpretation for various groups of heart diseases, whilst the final section describes the use of the technique for more general non-invasive procedures, including in systemic diseases, in life threatening conditions and for geriatric patients. Edited by internationally-recognised Dr Navin Nanda from the University of Alabama at Birmingham, US, this comprehensive manual includes more than 1150 echocardiographic images and illustrations. Key points Comprehensive guide to echocardiography Covers basic technique and use for diagnosis of numerous heart diseases Edited by University of Alabama at Birmingham Prof Navin Nanda Includes more than 1150 images and illustrations, and 6 DVD-ROMs with over 1700 video clips
The thoroughly revised Seventh Edition of Feigenbaum's Echocardiography reflects recent changes in the technology and clinical use of echocardiography. Highlights include over 1,600 illustrations, 600 in full color; detailed discussions on the use of three-dimensional echocardiography and perfusion imaging; and new information on the mechanics and utility of Strain and Strain rate imaging. Many new images complement the state-of-the-art information on technological advances. Current AHA/ACC guidelines are included for each chapter. An accompanying DVD contains tutorials on echo interpretation with voiceover and animations.
This monograph represents an attempt to collect the methods developed within the past decade in which echocardiography was being used to guide or to assess the results of some cardiovascular interventions or to overcome the imaging limitations of transthoracic approaches. I have entitled this book Echocardio graphy in Cardiac Interventions, although I am aware that this title is not entirely applicable to all the included methods. In these interventive procedures echocar diography preserves its noninvasive nature, and by combining it with invasive procedures, they become more accurate, safer and less invasive. The book is divided into 8 sections and 42 chapters written by many authorities in the field. When such comprehensive contributions from many authors are used, some overlapping cannot be avoided. I would like to express my appreciation to the individual contributors for their A. 1. Tajik dedication and cooperation in preparing this book. I am indebted to Dr. from the Mayo Clinic, who created a pleasant milieu for preparing the book during my sabbatical year at the Mayo Clinic. It is hoped that the reader will derive from this book a sense of where and how the ultrasound can be used in cardiovascular interventions today and what new approaches might be forthcoming. Iva Cikes List of contributors M. L. Antunes, MD., Department of Surgery, Columbia University College of Physicians and Surgeons, New York, New York, USA. J. Areeda, Cedars-Sinai Medical Center, Los Angeles, California, USA.
Diese ideale Einführung in die TEE ist mit hervorragenden Originalaufnahmen ausgestattet. Zwei Disketten für Macintosh zeigen vier Filme, die auch auf der CD-ROM für Macintosh enthalten sind.
Publisher's Note: Products purchased from 3rd Party sellers are not guaranteed by the Publisher for quality, authenticity, or access to any online entitlements included with the product. Continuing the long-standing Feigenbaum tradition as an authoritative, comprehensive echocardiography resource, the thoroughly revised Feigenbaum's Echocardiography, Eighth Edition, helps echocardiographers, fellows, clinicians, and sonographers master the art and science of echocardiography and stay current with all that’s new in the field. Written by William F. Armstrong and Thomas Ryan, it guides you through pertinent physics, technology, clinical applications, and new developments in the field. As in the past, the book is written primarily for the practitioner who uses echocardiographic methods to care for and manage patients, with a focus on appropriate clinical applications.
Just a very few years after Edler and Hertz had described the clinical use of M-mode echocardiographyl Satomura reported the application of Dop 2 pler ultrasound to the study of cardiac function. Yet Doppler ultrasound has been integrated into diagnostic practice in cardiology much more slowly than conventional (M-mode and two-dimensional) echocardiogra phy. Now, however, tremendous growth in the interest of clinicians in the diagnostic use of Doppler ultrasound can be observed and may in fact be due to the recent advent of color flow imaging. The reason for this growth may be that this method makes it possible to directly visualize the blood flow in the cardiovascular system in cross-sectional views. Moreover, the results are reproducible and much easier to understand than the older mapping techniques using a single-gate Doppler. In its short existence many different names have been used to describe this method, for instance, color Doppler, color flow imaging, real-time two-dimen sional Doppler echocardiography, and Doppler flow imaging. This diver sity reflects the large interest that many researchers have shown in this method. The technical development of color blood flow imaging (CBFI) - as this method will be called in this book - has not yet reached a universally accepted standard of performance in cardiology. Despite this state of flux and the uncertainty about future developments, I think it is justified to dedicate an entire book to this fascinating method.