Tomosynthesis Imaging: Imaging in Medical Diagnosis and Therapy
Editat de Ingrid Reiser, Stephen Glicken Limba Engleză Paperback – 8 mar 2017
Tomosynthesis produces quasi-three-dimensional images that can significantly enhance the visualization of important diagnostic features. This book highlights the flexibility of tomosynthesis systems for new clinical applications, and provides a detailed discussion of the tomosynthesis acquisition process and the impact of physical factors. It explores such topics as acquisition parameters, system components, modeling, image reconstruction algorithms, and system evaluation.
- Provides in-depth coverage of system design considerations, as well as image reconstruction strategies
- Describes the current state of clinical applications of tomosynthesis, including imaging of the breast and chest, as well as its use in radiotherapy
- Illustrates the merits of tomosynthesis imaging and its potential clinical applications in imaging of the breast and chest, as well as for radiation therapy
Toate formatele și edițiile
Toate formatele și edițiile | Preț | Express |
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Paperback (1) | 477.32 lei 6-8 săpt. | |
CRC Press – 8 mar 2017 | 477.32 lei 6-8 săpt. | |
Hardback (1) | 1191.13 lei 6-8 săpt. | |
CRC Press – 12 mar 2014 | 1191.13 lei 6-8 săpt. |
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Specificații
ISBN-13: 9781138199651
ISBN-10: 1138199656
Pagini: 254
Ilustrații: 264
Dimensiuni: 210 x 280 x 17 mm
Greutate: 0.64 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Imaging in Medical Diagnosis and Therapy
ISBN-10: 1138199656
Pagini: 254
Ilustrații: 264
Dimensiuni: 210 x 280 x 17 mm
Greutate: 0.64 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Imaging in Medical Diagnosis and Therapy
Cuprins
Section I Introduction. The history of tomosynthesis. Section II System Design. System design and acquisition parameters for breast tomosynthesis. Detectors for tomosynthesis. Patient dose. Tomosynthesis with circular orbits. Tomosynthesis system modeling. Section III Image Reconstruction. Filtered back projection-based methods for tomosynthesis image reconstruction. Iterative image reconstruction design for digital breast tomosynthesis. Section IV System Performance. Fourier-domain methods for optimization of tomosynthesis (NEQ). Spatial-domain model observers for optimizing tomosynthesis. Observer experiments with tomosynthesis. section V Clinical Applications. Clinical applications of breast tomosynthesis. Chest tomosynthesis. Tomosynthesis applications in radiation oncology. Future developments in breast tomosynthesis. Index.
Notă biografică
Ingrid Reiser, PhD, is a research associate (assistant professor) in the Department of Radiology at the University of Chicago. After receiving her PhD in physics from Kansas State University in 2002, she transitioned into medical physics research where she witnessed the presentation of the first breast tomosynthesis images at RSNA 2002 (Radiological Society of North America). Tomosynthesis captivated her interest and she has since investigated many aspects of tomosynthesis imaging, such as computer-aided detection, system modeling, and objective assessment. Her research interests further include image perception and observer performance, as well as tomosynthesis and CT image reconstruction.
Stephen J. Glick, PhD, is a professor of radiology at the University of Massachusetts University Medical School and the director of the Tomographic Breast Imaging Research Laboratory. He earned his PhD from Worcester Polytechnic Institute (WPI) in 1991. Dr. Glick is the author of over 60 journal articles and 100 conference proceedings papers and 8 book chapters. Over the past decade, his research has been focused on 3D breast imaging techniques including digital breast tomosynthesis and breast CT with an emphasis on radiation dose, imaging technique optimization, advanced iterative reconstruction methods, detection studies for lesions and microcalcifications, and photon counting detector CT.
Stephen J. Glick, PhD, is a professor of radiology at the University of Massachusetts University Medical School and the director of the Tomographic Breast Imaging Research Laboratory. He earned his PhD from Worcester Polytechnic Institute (WPI) in 1991. Dr. Glick is the author of over 60 journal articles and 100 conference proceedings papers and 8 book chapters. Over the past decade, his research has been focused on 3D breast imaging techniques including digital breast tomosynthesis and breast CT with an emphasis on radiation dose, imaging technique optimization, advanced iterative reconstruction methods, detection studies for lesions and microcalcifications, and photon counting detector CT.
Recenzii
"A comprehensive assessment of the current technology and application of tomosynthesis … the book can be read cover to cover without significant repeated material, but each chapter can be consulted and used as an independent reference on a specific aspect of tomosynthesis imaging. The experience and competence of all of the authors is evident. This is required reading for physicists and radiologists who are interested in learning about the fundamentals of the technology behind the future of diagnostic radiography and mammography."
—John M Sabol, PhD, GE Healthcare, Doody’s Review
—John M Sabol, PhD, GE Healthcare, Doody’s Review
Descriere
This cutting-edge book presents a comprehensive overview of tomosynthesis, a new quasi-three-dimensional x-ray imaging technique that provides improved visualization of complex anatomic structures. The text covers technical aspects and clinical applications and offers detailed discussions of system design and image reconstruction strategies. It provides readers with an in-depth understanding of the process of image formation and the practical tools necessary to tailor their tomosynthesis systems for new clinical applications.