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This book provides a comprehensive overview of the multidisciplinary management of meningiomas, followed by evaluation and management considerations along a spectrum of benign to more malignant behavior. It outlines the management of presumed Grade 1 tumors and how to identify features of tumors radiographically and clinically that may support a benign course rather than aggressive and vice versa. Following a stepwise progression from simple to complex, chapters introduce and tackle more aggressive meningiomas and tumor recurrence (of all Grades), with paradigms for evaluation and treatment. Tumor biology and genomics are fundamental and largely focused in the book. More recent findings which have directed personalized medicine and clinical trials are also addressed. Meningiomas: Comprehensive Strategies for Management addresses all aspects of the evaluation and care of patients with all WHO grades of meningiomas. It is highly informative and provides clarity for a wide audience of neurosurgeons, reconstructive surgeons, oncologists, neurologists, radiation oncologists, pathologists, radiologists, residents and students who treat these patients and those who are training for a career in managing patients with these potentially challenging tumors.
Traditionally, computer programming skills have rarely been emphasized during the education and training of medical physicists, meaning that many individuals enter the workplace without the ability to solve real-world clinical problems.
This book acts as a primer for radiographers upon performing computed tomography (CT) examinations. The focus resides in radiation physics, radiobiology, anatomy, imaging protocols and image evaluation. It seeks to provide readers insight into the practical and innovative approaches within CT, backed up with key literature and examples in practice. Recent innovations and the importance of new technology to acquire enhanced quality remain a focal point. These are essential in understanding the importance of dose optimization, patient anatomy and common pathology observed. Patient care will remain central in this book, supported with a dedicated chapter discussing effective communication, patient education, informed consent, coupled with the assessment of laboratory results and vital signs. The editors draw from recent publications and clinical expertise, supported with the growing trend of technological advances utilized within the CT environment. Critically, this volume focuses on the role of CT for an array of audiences but, more specifically, undergraduate and postgraduate radiographers worldwide.
The reference text covers computational intelligence, artificial intelligence, cognitive systems, industrial IoT, and industry 4.0. It will be an ideal reference text for graduate students, professional and academic researchers in the fields of electrical engineering, electronics and communication engineering, and computer science.
This book acts as a primer for radiographers upon performing computed tomography (CT) examinations. The focus resides in radiation physics, radiobiology, anatomy, imaging protocols and image evaluation. It seeks to provide readers insight into the practical and innovative approaches within CT, backed up with key literature and examples in practice. Recent innovations and the importance of new technology to acquire enhanced quality remain a focal point. These are essential in understanding the importance of dose optimization, patient anatomy and common pathology observed. Patient care will remain central in this book, supported with a dedicated chapter discussing effective communication, patient education, informed consent, coupled with the assessment of laboratory results and vital signs. The editors draw from recent publications and clinical expertise, supported with the growing trend of technological advances utilized within the CT environment. Critically, this volume focuses on the role of CT for an array of audiences but, more specifically, undergraduate and postgraduate radiographers worldwide.
A computed tomography (CT) scan uses X-rays and a computer to create detailed images of the inside of the body. CT scanners measure, versus different angles, X-ray attenuations when passing through different tissues inside the body through rotation of both X-ray tube and a row of X-ray detectors placed in the gantry. These measurements are then processed using computer algorithms to reconstruct tomographic (cross-sectional) images. CT can produce detailed images of many structures inside the body, including the internal organs, blood vessels, and bones. This book presents a comprehensive overview of CT scanning. Chapters address such topics as instrumental basics, CT imaging in coronavirus, radiation and risk assessment in chest imaging, positron emission tomography (PET), and feature extraction.
Master sonographic examination protocols and techniques! The market-leading ultrasound text and reference, Textbook of Diagnostic Sonography, 9th Edition provides an in-depth understanding of general/abdominal and obstetric/gynecologic sonography. More than 3,100 ultrasound images and full-color anatomy illustrations help you recognize normal anatomy and abnormal pathology. Organized primarily by body system, coverage includes vascular sonography and echocardiography, and in the obstetrics section features a chronologic, trimester approach to ultrasound during pregnancy. Written by expert medical sonography educator and clinician Sandra L. Hagen-Ansert, this resource serves as ideal preparation for board exams and as a reference for practitioners in many different clinical settings. Comprehensive coverage includes sections on the foundations of ultrasound imaging and patient care, the abdomen, superficial structures of the body, pediatrics, the thoracic cavity and echocardiography, cerebrovascular evaluation, gynecology, and obstetrics. More than 3,100 images and full-color illustrations include high-resolution ultrasound pictures, detailed line drawings with need-to-know anatomic information, color photographs of gross pathology, and color Doppler illustrations. Key Terms open each chapter, focusing your attention on the vocabulary that you are required to know and understand. Key Pearls highlight the important concepts in each chapter. Pathology tables summarize clinical findings, laboratory findings, sonographic findings, and differential considerations. Sonographic Findings icon makes it easy to locate clinical information on particular pathologic conditions. Imaging information in each chapter includes normal anatomy, normal physiology, laboratory data and values, pathology, sonographic evaluation of an organ, pitfalls in sonography, clinical findings, and differential considerations. Condensed bibliography at the end of each chapter lists essential references for further research and study. Resources on the Evolve website include review questions for students and PowerPoint® slides, an image collection, and a test bank with 1,625 questions for instructors. NEW! Updated images depict the latest advances in the field of sonography and help you prepare for ARDMS boards and for clinicals. NEW! Updated content reflects the newest curriculum standards so you gain the knowledge and expertise required to pass the boards.
The most salient feature of the infor- last four chapters of the book evaluate the mation provided by nuclear medicine is its information from an analytical and pathophysiological and functional charac- statistical point of view. This approach is ter. For adequate experimental or clinical required for correct decision-making. interpretation, such information should This book is therefore the result of necessarily be interpreted alongside the accumulated experience in nuclear cardiology views of the clinical cardiologist, who is with the invaluable cooperation of medical able to apply it to the individual patient. statisticians. It is directed to physicians This approach, which is routine in every- with an interest in nuclear cardiology, to day clinical practice, reaches its plenitude nuclear medicine specialists wishing to when the whole process is completed and learn the uses and limitations of these an intimate cooperation is established procedures in everyday clinical cardiology, between the nuclear medicine specialist and to cardiologists who feel the need to and the clinical cardiologist. In such understand the rationale and methodology instances, each one of these professionals of the studies which benefit their patients. understands the needs, limits and possi- We understand that the ultimate reason bilities of the other. for any scientific book is the transmission The present book is the fruit of such of knowledge, and we are fully conscious cooperation. In our hospital, an efficient of the enthusiasm of the authors of the nuclear cardiology team has been made up present text to achieve that aim.
Ultrasound Imaging - Current Topics presents complex and current topics in ultrasound imaging in a simplified format. It is easy to read and exemplifies the range of experiences of each contributing author. Chapters address such topics as anatomy and dimensional variations, pediatric gastrointestinal emergencies, musculoskeletal and nerve imaging as well as molecular sonography. The book is a useful resource for researchers, students, clinicians, and sonographers looking for additional information on ultrasound imaging beyond the basics.
This book provides detailed information on functional anatomy, physical examination, and clinical radiology of the knee with a view to enabling the clinician to identify the most suitable treatment approach to different knee joint pathologies. In addition, the arthroscopic treatment techniques most frequently employed in patients with these conditions are described, with presentation of numerous arthroscopic images detailing characteristic findings. Knee joint pathologies today represent a significant challenge owing to the complexity of the injuries suffered, rising activity levels, and high patient expectations. A proper physical examination plays an important role in diagnosis. The surgeon who has the opportunity to conduct a clinical evaluation must fully understand the role of radiological evaluations, and assessment by a radiology expert is also necessary. In all cases, knowledge of the normal anatomy and its correlation with clinical and radiological findings is fundamental to correct diagnosis and treatment selection. Surgeons and trainees with an interest in knee joint pathologies will find this book to be an excellent, richly illustrated educational guide to the subject.
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