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Dose optimization in digital radiogr...
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Seeram, Euclid.
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Dose optimization in digital radiography and computed tomography = an essential guide /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Dose optimization in digital radiography and computed tomography/ by Euclid Seeram.
Reminder of title:
an essential guide /
Author:
Seeram, Euclid.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xiii, 102 p. :ill., digital ;24 cm.
[NT 15003449]:
Dose Optimization: A Useful Tool in Radiation Protection -- Digital Radiography: A Technical Review -- Optimization Strategies in Digital Radiography -- Computed Tomography: A Technical Review.
Contained By:
Springer Nature eBook
Subject:
Radiation dosimetry. -
Online resource:
https://doi.org/10.1007/978-3-031-22871-1
ISBN:
9783031228711
Dose optimization in digital radiography and computed tomography = an essential guide /
Seeram, Euclid.
Dose optimization in digital radiography and computed tomography
an essential guide /[electronic resource] :by Euclid Seeram. - Cham :Springer International Publishing :2023. - xiii, 102 p. :ill., digital ;24 cm.
Dose Optimization: A Useful Tool in Radiation Protection -- Digital Radiography: A Technical Review -- Optimization Strategies in Digital Radiography -- Computed Tomography: A Technical Review.
This book addresses radiation protection of patients having digital radiography and computed tomography (CT) examinations. The literature on radiation doses to patients from these two modalities have reported that the doses to patients are high. As a result, the radiology community has focused on methods and procedures to keep these doses as low as reasonably achievable (ALARA) without compromising the diagnostic image quality. This book outlines the motivation for dose optimization in radiology, identifies and describes the ICRP principle of optimization, outlines the factors affecting the dose in digital radiography and in CT, and identifies and describes strategies used in digital radiography and in CT for dose optimization. This book is intended for all those working in digital radiography and CT environments including radiological technologists, and radiographers, radiologists, biomedical engineering technologists, and student medical physicists. It is best used as a supplement to radiologic science textbooks, and in particular, radiation protection textbooks. Furthermore, this book lays the foundations for students and practitioners engaged in research on dose reduction and dose optimization in radiology.
ISBN: 9783031228711
Standard No.: 10.1007/978-3-031-22871-1doiSubjects--Topical Terms:
518232
Radiation dosimetry.
LC Class. No.: R906 / .S44 2023
Dewey Class. No.: 612.014480287
Dose optimization in digital radiography and computed tomography = an essential guide /
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This book addresses radiation protection of patients having digital radiography and computed tomography (CT) examinations. The literature on radiation doses to patients from these two modalities have reported that the doses to patients are high. As a result, the radiology community has focused on methods and procedures to keep these doses as low as reasonably achievable (ALARA) without compromising the diagnostic image quality. This book outlines the motivation for dose optimization in radiology, identifies and describes the ICRP principle of optimization, outlines the factors affecting the dose in digital radiography and in CT, and identifies and describes strategies used in digital radiography and in CT for dose optimization. This book is intended for all those working in digital radiography and CT environments including radiological technologists, and radiographers, radiologists, biomedical engineering technologists, and student medical physicists. It is best used as a supplement to radiologic science textbooks, and in particular, radiation protection textbooks. Furthermore, this book lays the foundations for students and practitioners engaged in research on dose reduction and dose optimization in radiology.
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based on 0 review(s)
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EB R906 .S44 2023
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