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Imaging Practice and Radiation Protection in Pediatric Radiology . Conventional Radiography / by Michael Seidenbusch, Veronika Rösenberger, Karl Schneider.

By: Seidenbusch, Michael, autor
Contributor(s): SpringerLink (Online service) | Rösenberger, Veronika., autor | Schneider, Karl, autor
Material type: materialTypeLabelE-bookSeries: (Medicine (Springer-11650)).Publisher: Cham : Springer International Publishing : Imprint: Springer, 2019Edition: 1st ed. 2019.Description: 1 recurso en línea (XVII, 905 páginas) : 214 ilustraciones, 147 ilustraciones a color.ISBN: 9783030185046.Subject: Radiología pediátricaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction: Outline of Paediatric radiology -- Radiation exposure and radiation risk in diagnostic radiology -- Image quality and radiographic technique -- Fundamentals of Radiation Dosimetry: Radiation dose and dosimetry in paediatric radiology -- Image quality in paediatric radiology -- Technical principles of conventional paediatric radiography -- Standard Operating Procedures (SOP) and Normalized Organ Doses for Conventional Radiographs : Introduction -- Skull -- Chest -- Babygram -- Abdomen -- Pelvis -- Spine -- Hip joint -- Upper Extremities -- Lower Extremities -- Shoulder and clavicle. .
Abstract: This book offers the reader sound advice on how to perform optimal conventional pediatric radiographs and how to obtain quick and easy organ dose estimates in order to improve the optimization process in pediatric imaging. Clear guidelines are provided for minimization of the radiation exposure of children through optimization of the radiation exposure conditions, and conversion coefficients are presented for calculation of the organ doses achieved in organs and tissues during conventional pediatric radiography, taking into consideration both optimal and suboptimal radiation field settings. Previously published conversion coefficients have failed to represent the variation in radiation field settings in daily clinical routine, which has made it difficult for the pediatric radiologist to estimate the impact of the field settings on absorbed doses in organs and tissues. The aim of this book, co-written by a pediatric radiologist, a physician and physicist, and a medical radiation technologist, is to address this issue by providing, for the first time, a thorough overview of clinical radiation field settings and their implications for radiation protection. An accompanying volume is devoted to fluoroscopy. .
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud RJ51.R3 R895-920 S453 2019 (Browse shelf(Opens below)) Acceso electrónico eBook.10032294
Total holds: 0

Introduction: Outline of Paediatric radiology -- Radiation exposure and radiation risk in diagnostic radiology -- Image quality and radiographic technique -- Fundamentals of Radiation Dosimetry: Radiation dose and dosimetry in paediatric radiology -- Image quality in paediatric radiology -- Technical principles of conventional paediatric radiography -- Standard Operating Procedures (SOP) and Normalized Organ Doses for Conventional Radiographs : Introduction -- Skull -- Chest -- Babygram -- Abdomen -- Pelvis -- Spine -- Hip joint -- Upper Extremities -- Lower Extremities -- Shoulder and clavicle. .

This book offers the reader sound advice on how to perform optimal conventional pediatric radiographs and how to obtain quick and easy organ dose estimates in order to improve the optimization process in pediatric imaging. Clear guidelines are provided for minimization of the radiation exposure of children through optimization of the radiation exposure conditions, and conversion coefficients are presented for calculation of the organ doses achieved in organs and tissues during conventional pediatric radiography, taking into consideration both optimal and suboptimal radiation field settings. Previously published conversion coefficients have failed to represent the variation in radiation field settings in daily clinical routine, which has made it difficult for the pediatric radiologist to estimate the impact of the field settings on absorbed doses in organs and tissues. The aim of this book, co-written by a pediatric radiologist, a physician and physicist, and a medical radiation technologist, is to address this issue by providing, for the first time, a thorough overview of clinical radiation field settings and their implications for radiation protection. An accompanying volume is devoted to fluoroscopy. .

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