Dvorak | Clinical Radiotherapy Physics with MATLAB | E-Book | sack.de
E-Book

E-Book, Englisch, 280 Seiten

Reihe: Series in Medical Physics and Biomedical Engineering

Dvorak Clinical Radiotherapy Physics with MATLAB

A Problem-Solving Approach

E-Book, Englisch, 280 Seiten

Reihe: Series in Medical Physics and Biomedical Engineering

ISBN: 978-0-429-01930-2
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



The first MATLAB® programming book written specifically for clinical radiotherapy medical physicists and medical physics trainees, this much-needed book teaches users how to create their own clinical applications using MATLAB®, as a complement to commercial software particularly when the latter does not cover specific local clinical needs.
Chapters explore key radiotherapy areas such as handling volumes, 3D dose calculation, comparing dose distributions, reconstructing treatment plans and their summations, and automated tests for machine quality assurance. Readers will learn to independently analyse and process images, doses, structures, and other radiotherapy clinical data to deal with standard and non-standard situations in radiotherapy. This book will also significantly improve understanding of areas such as data nature, information content, DICOM RT standard, and data flow. It will be an invaluable reference for students of medical physics, in addition to clinical radiotherapy physicists and researchers working in radiotherapy.
Features:

Includes real clinical medical physics applications derived from actual clinical problems
Provides commented MATLAB® scripts working with sample data and/or own data matching input requirements
Promotes critical thinking and practical problem solving skills
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Autoren/Hrsg.


Weitere Infos & Material


Chapter 1: MATLAB Essentials and Principles of Simple Programming
Chapter 2: Radiotherapy Physics, Related Data Types, & Basic Operations
Chapter 3: Reconstructing Basic DICOM RT Data
Chapter 4: Modifying DICOM Data in Radiotherapy
Chapter 5: Simple 3D Plan Sum Using Rigid Registration
Chapter 6: Handling Regions and Volumes of Interest in Radiotherapy
Chapter 7: Three-dimensional Dose Calculations in Radiotherapy
Chapter 8: Semi-automated Measurements of Linac Major Mechanical Parameters
Chapter 9: Comparing Dose Distributions: The Gamma Method
Chapter 10: Examples of Accessory Modeling in Radiotherapy


Pavel Dvorak is a medical physicist with several years’ experience in managerial clinical positions. Within medical physics, he has worked in education, research, and clinical practice in public and private health institutions in the Czech Republic, Austria, and the United Kingdom. His speciality is implementing novel techniques and technologies, creating and managing efficient workflows, and problem solving in radiotherapy.


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