For most areas of medical ultrasound, textbooks that provide physicians with detailed, practical information are readily available. Unfortunately, for the field of ultrasound mammography, such texts are few in number, in comparison to the num ber available for other fields of medical ultrasound. This textbook by Drs. Hack eHler, Duda, and Lauth fills this gap by presenting a clear overview of the usefulness and limitations of ultrasound mammography. Information based on clinical experiences with various types of automated and real-time instrumentation is presented in a manner that allows physicians to make their own judgments regarding the diagnostic capabilities of ultrasound mammogra phy. It also provides specific information on techniques required to obtain useful diagnostic data. Examples of the many possible image variations of specific breast pathologies are presented. The advantages of recent real-time systems, when used with a stand-off, are clearly outlined. The authors do not belabor the philosophical dilemma of which sys tem, an automated or a real-time, is best suited for ultrasound mammography. They simply present the information they have gained in their use of both of these systems and indicate that, in the future, a combination of automated and real-time would be the most valuable for the physician.
Medical imaging is one of the heaviest funded biomedical engineering research areas. The second edition of Pattern Recognition and Signal Analysis in Medical Imaging brings sharp focus to the development of integrated systems for use in the clinical sector, enabling both imaging and the automatic assessment of the resultant data. Since the first edition, there has been tremendous development of new, powerful technologies for detecting, storing, transmitting, analyzing, and displaying medical images. Computer-aided analytical techniques, coupled with a continuing need to derive more information from medical images, has led to a growing application of digital processing techniques in cancer detection as well as elsewhere in medicine. This book is an essential tool for students and professionals, compiling and explaining proven and cutting-edge methods in pattern recognition for medical imaging. - New edition has been expanded to cover signal analysis, which was only superficially covered in the first edition - New chapters cover Cluster Validity Techniques, Computer-Aided Diagnosis Systems in Breast MRI, Spatio-Temporal Models in Functional, Contrast-Enhanced and Perfusion Cardiovascular MRI - Gives readers an unparalleled insight into the latest pattern recognition and signal analysis technologies, modeling, and applications
This open access book presents a thorough look at tortuosity and microstructure effects in porous materials. The book delivers a comprehensive review of the subject, summarizing all key results in the field with respect to the underlying theories, empirical data available in the literature, modern methodologies and calculation approaches, and quantitative relationships between microscopic and macroscopic properties. It thoroughly discusses up to 20 different types of tortuosity and introduces a new classification scheme and nomenclature based on direct geometric tortuosities, indirect physics-based tortuosities, and mixed tortuosities (geometric and physics-based). The book also covers recent progress in 3D imaging and image modeling for studying novel aspects of tortuosity and associated transport properties in materials, while providing a comprehensive list of available software packages for practitioners in the community. This book is a must-read for researchers and students in materials science and engineering interested in a deeper understanding of microstructure–property relationships in porous materials. For energy materials in particular, such as lithium-ion batteries, tortuosity is a key microstructural parameter that can greatly impact long-term material performance. Thus, the information laid out in this book will also greatly benefit researchers interested in computational modeling and design of next-generation materials, especially those for sustainability and energy applications.
Rowing Science explains and applies up-to-date scientific research across all aspects of the sport to optimize rowing skills and performance, making it essential reading for serious rowers, coaches, and rowing scientists.
Recent advances in auditory neuroscience are characterized by a close interaction between neurophysiological findings, psychophysical effects and integrative models that attempt to bridge the gap between neuroscience and psychophysics. This volume introduces the latest developments in this quickly evolving interdisciplinary area. Tutorials by leading international scientists as well as more focused contributions by active researchers providing an invaluable summary of our current knowledge of psychophysics and auditory physiology and the main lines of research in this field. The book will be of interest to anyone involved in hearing research, including neuroscientists, behavioral scientists, acousticians and biophysicists.
For most areas of medical ultrasound, textbooks that provide physicians with detailed, practical information are readily available. Unfortunately, for the field of ultrasound mammography, such texts are few in number, in comparison to the num ber available for other fields of medical ultrasound. This textbook by Drs. Hack eHler, Duda, and Lauth fills this gap by presenting a clear overview of the usefulness and limitations of ultrasound mammography. Information based on clinical experiences with various types of automated and real-time instrumentation is presented in a manner that allows physicians to make their own judgments regarding the diagnostic capabilities of ultrasound mammogra phy. It also provides specific information on techniques required to obtain useful diagnostic data. Examples of the many possible image variations of specific breast pathologies are presented. The advantages of recent real-time systems, when used with a stand-off, are clearly outlined. The authors do not belabor the philosophical dilemma of which sys tem, an automated or a real-time, is best suited for ultrasound mammography. They simply present the information they have gained in their use of both of these systems and indicate that, in the future, a combination of automated and real-time would be the most valuable for the physician.
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