Development of a Monte Carlo-based Electron Beam Treatment Planning System

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ISBN 13 :
Total Pages : 440 pages
Book Rating : 4.:/5 (258 download)

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Book Synopsis Development of a Monte Carlo-based Electron Beam Treatment Planning System by : Abdulkarim A. Al-Beteri

Download or read book Development of a Monte Carlo-based Electron Beam Treatment Planning System written by Abdulkarim A. Al-Beteri and published by . This book was released on 1990 with total page 440 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Measurement Driven, Electron Beam Modeling and Commissioning for a Monte Carlo Treatment Planning System with Improved Accuracy

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (664 download)

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Book Synopsis Measurement Driven, Electron Beam Modeling and Commissioning for a Monte Carlo Treatment Planning System with Improved Accuracy by : Jonathan Thébaut

Download or read book Measurement Driven, Electron Beam Modeling and Commissioning for a Monte Carlo Treatment Planning System with Improved Accuracy written by Jonathan Thébaut and published by . This book was released on 2009 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Monte Carlo Techniques in Radiation Therapy

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Publisher : CRC Press
ISBN 13 : 1000455556
Total Pages : 291 pages
Book Rating : 4.0/5 (4 download)

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Book Synopsis Monte Carlo Techniques in Radiation Therapy by : Frank Verhaegen

Download or read book Monte Carlo Techniques in Radiation Therapy written by Frank Verhaegen and published by CRC Press. This book was released on 2021-11-29 with total page 291 pages. Available in PDF, EPUB and Kindle. Book excerpt: About ten years after the first edition comes this second edition of Monte Carlo Techniques in Radiation Therapy: Introduction, Source Modelling, and Patient Dose Calculations, thoroughly updated and extended with the latest topics, edited by Frank Verhaegen and Joao Seco. This book aims to provide a brief introduction to the history and basics of Monte Carlo simulation, but again has a strong focus on applications in radiotherapy. Since the first edition, Monte Carlo simulation has found many new applications, which are included in detail. The applications sections in this book cover the following: Modelling transport of photons, electrons, protons, and ions Modelling radiation sources for external beam radiotherapy Modelling radiation sources for brachytherapy Design of radiation sources Modelling dynamic beam delivery Patient dose calculations in external beam radiotherapy Patient dose calculations in brachytherapy Use of artificial intelligence in Monte Carlo simulations This book is intended for both students and professionals, both novice and experienced, in medical radiotherapy physics. It combines overviews of development, methods, and references to facilitate Monte Carlo studies.

Application of Monte Carlo Simulations to the Development of Energy- and Intensity-modulated Electron Beam Radiation Therapy

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ISBN 13 :
Total Pages : 276 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Application of Monte Carlo Simulations to the Development of Energy- and Intensity-modulated Electron Beam Radiation Therapy by : Michael C. Lee

Download or read book Application of Monte Carlo Simulations to the Development of Energy- and Intensity-modulated Electron Beam Radiation Therapy written by Michael C. Lee and published by . This book was released on 2002 with total page 276 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Monte Carlo Treatment Planning for Molecular Targeted Radiotherapy Within the MINERVA System

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ISBN 13 :
Total Pages : 28 pages
Book Rating : 4.:/5 (316 download)

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Book Synopsis Monte Carlo Treatment Planning for Molecular Targeted Radiotherapy Within the MINERVA System by : D. Nigg

Download or read book Monte Carlo Treatment Planning for Molecular Targeted Radiotherapy Within the MINERVA System written by D. Nigg and published by . This book was released on 2004 with total page 28 pages. Available in PDF, EPUB and Kindle. Book excerpt: The aim of this project is to extend accurate and patient-specific treatment planning to new treatment modalities, such as molecular targeted radiation therapy, incorporating previously crafted and proven Monte Carlo and deterministic computation methods. A flexible software environment is being created that allows planning radiation treatment for these new modalities and combining different forms of radiation treatment with consideration of biological effects. The system uses common input interfaces, medical image sets for definition of patient geometry, and dose reporting protocols. Previously, the Idaho National Engineering and Environmental Laboratory (INEEL), Montana State University (MSU), and Lawrence Livermore National Laboratory (LLNL) had accrued experience in the development and application of Monte Carlo-based, three-dimensional, computational dosimetry and treatment planning tools for radiotherapy in several specialized areas. In particular, INEEL and MSU have developed computational dosimetry systems for neutron radiotherapy and neutron capture therapy, while LLNL has developed the PEREGRINE computational system for external beam photon-electron therapy. Building on that experience, the INEEL and MSU are developing the MINERVA (Modality Inclusive Environment for Radiotherapeutic Variable Analysis) software system as a general framework for computational dosimetry and treatment planning for a variety of emerging forms of radiotherapy. In collaboration with this development, LLNL has extended its PEREGRINE code to accommodate internal sources for molecular targeted radiotherapy (MTR), and has interfaced it with the plug-in architecture of MINERVA. Results from the extended PEREGRINE code have been compared to published data from other codes, and found to be in general agreement (EGS4 - 2%, MCNP - 10%)(Descalle et al. 2003). The code is currently being benchmarked against experimental data. The interpatient variability of the drug pharmacokinetics in MTR can only be properly accounted for by image-based, patient-specific treatment planning as has been common in external beam radiation therapy for many years. MINERVA offers 3D Monte Carlo based MTR treatment planning as its first integrated operational capability. The new MINERVA system will ultimately incorporate capabilities for a comprehensive list of radiation therapies. In progress are modules for external beam photon-electron therapy and Boron Neutron Capture Therapy (BNCT). Brachytherapy and Protontherapy are planned. Through the open Application Programming Interface (API) other groups can add their own modules and share them with the community.

Energy-and Intensity-Modulated Electron Beam for Breast Cancer Treatment

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ISBN 13 :
Total Pages : 349 pages
Book Rating : 4.:/5 (946 download)

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Book Synopsis Energy-and Intensity-Modulated Electron Beam for Breast Cancer Treatment by :

Download or read book Energy-and Intensity-Modulated Electron Beam for Breast Cancer Treatment written by and published by . This book was released on 2003 with total page 349 pages. Available in PDF, EPUB and Kindle. Book excerpt: In order to deliver MERT plans efficiently, we have designed and manufactured a prototype EMLC based on the results of Monte Carlo simulations and a Varian 25 x 25 Cm to the 2 electron applicator. The performance of the EMLC was experimentally evaluated and the results were compared with those of Monte Carlo simulations and a PMLC. We have also developed a complete system of Monte Carlo-based inverse treatment planning system for MERT plans. The system incorporates the Monte Carlo simulated electron pencil beams into the inverse planning process. Additionally, we have characterized the EMLC using a multiple-source beam model for fast Monte Carlo simulation, incorporated the EMLC into the EGS/BEAM simulations as an MLC component module, and created MERT plans for breast cancers. We have also studied the effect of beam delivery on optimized modulated electron radiation therapy plans in the final dose calculation. Furthermore, we have developed aperture-based MERT techniques for fast delivery of MERT plans. We believe that MERT provides a viable alternative modality to conventional Opposed tangential fields approach and photon IMRT.

Monte Carlo Treatment Planning with Modulated Electron Radiotherapy

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (842 download)

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Book Synopsis Monte Carlo Treatment Planning with Modulated Electron Radiotherapy by : Andrew William Alexander

Download or read book Monte Carlo Treatment Planning with Modulated Electron Radiotherapy written by Andrew William Alexander and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Within the field of medical physics, Monte Carlo radiation transport simulations are considered to be the most accurate method for the determination of dose distributions in patients. The McGill Monte Carlo treatment planning system (MMCTP), provides a flexible software environment to integrate Monte Carlo simulations with current and new treatment modalities. A developing treatment modality called energy and intensity modulated electron radiotherapy (MERT) is a promising modality, which has the fundamental capabilities to enhance the dosimetry of superficial targets. An objective of this work is to advance the research and development of MERT with the end goal of clinical use. To this end, we present the MMCTP system with an integrated toolkit for MERT planning and delivery of MERT fields. Delivery is achieved using an automated "few leaf electron collimator" (FLEC) and a controller. Aside from the MERT planning toolkit, the MMCTP system required numerous...

Development of a Fast Monte Carlo Code for Dose Calculation in a Treatment Planning and Feasibility Study of High Contrast Portal Imaging

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (126 download)

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Book Synopsis Development of a Fast Monte Carlo Code for Dose Calculation in a Treatment Planning and Feasibility Study of High Contrast Portal Imaging by : Keivan Jabbari Najafabadi

Download or read book Development of a Fast Monte Carlo Code for Dose Calculation in a Treatment Planning and Feasibility Study of High Contrast Portal Imaging written by Keivan Jabbari Najafabadi and published by . This book was released on 2009 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: A fast and accurate treatment planning system is essential for radiation therapy and Monte Carlo (MC) techniques produce the most accurate results for dose calculation in treatment planning. In this work, we developed a fast Monte Carlo code based on pre-calculated data (PMC, Pre-calculated Monte Carlo) for applications in radiation therapy treatment planning. The PMC code takes advantage of large available memory in current computer hardware for extensive generation of pre-calculated data. Primary tracks of electrons are generated in the middle of homogeneous materials (water, air, bone, lung) and with energies between 0.2 and 18 MeV using the EGSnrc code. Secondary electrons are not transported but their position, energy, charge and direction are saved and used as a primary particle. Based on medium type and incident electron energy, a track is selected from the pre-calculated set. The performance of the method is tested in various homogeneous and heterogeneous configurations and the results were generally within 2% compared to EGSnrc but with a 40-60 times speed improvement. Pre-calculated Monte Carlo codes are accurate, fast and physics-independent and therefore applicable to different radiation types including heavy-charged particles. In another project, we worked on Monte Carlo feasibility study to use orthogonal bremsstrahlung beams for imaging in radiation therapy. The basic characteristics of orthogonal bremsstrahlung beams are studied and the feasibility of improved contrast imaging in linear accelerator with such a beam is evaluated. In the context of this work orthogonal bremsstrahlung beams represent the component of the bremsstrahlung distribution perpend.

Monte Carlo Based Electron Treatment Planning and Cutout Output Factor Calculations

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (841 download)

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Book Synopsis Monte Carlo Based Electron Treatment Planning and Cutout Output Factor Calculations by : Ellis Mitrou

Download or read book Monte Carlo Based Electron Treatment Planning and Cutout Output Factor Calculations written by Ellis Mitrou and published by . This book was released on 2011 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Electron radiotherapy (RT) offers a number of advantages over photons. The high surface dose, combined with a rapid dose fall-off beyond the target volume presents a net increase in tumor control probability and decreases the normal tissue complication for superficial tumors. Electron treatments are normally delivered clinically without previously calculated dose distributions due to the complexity of the electron transport involved and greater error in planning accuracy. This research uses Monte Carlo (MC) methods to model clinical electron beams in order to accurately calculate electron beam dose distributions in patients as well as calculate cutout output factors, reducing the need for a clinical measurement. The present work is incorporated into a research MC calculation system: McGill Monte Carlo Treatment Planning (MMCTP) system. Measurements of PDDs, profiles and output factors in addition to 2D GAFCHROMIC EBT2 film measurements in heterogeneous phantoms...

Monte Carlo Transport of Electrons and Photons

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Publisher : Springer Science & Business Media
ISBN 13 : 1461310598
Total Pages : 637 pages
Book Rating : 4.4/5 (613 download)

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Book Synopsis Monte Carlo Transport of Electrons and Photons by : T.M. Jenkins

Download or read book Monte Carlo Transport of Electrons and Photons written by T.M. Jenkins and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 637 pages. Available in PDF, EPUB and Kindle. Book excerpt: For ten days at the end of September, 1987, a group of about 75 scientists from 21 different countries gathered in a restored monastery on a 750 meter high piece of rock jutting out of the Mediterranean Sea to discuss the simulation of the transport of electrons and photons using Monte Carlo techniques. When we first had the idea for this meeting, Ralph Nelson, who had organized a previous course at the "Ettore Majorana" Centre for Scientific Culture, suggested that Erice would be the ideal place for such a meeting. Nahum, Nelson and Rogers became Co-Directors of the Course, with the help of Alessandro Rindi, the Director of the School of Radiation Damage and Protection, and Professor Antonino Zichichi, Director of the "Ettore Majorana" Centre. The course was an outstanding success, both scientifically and socially, and those at the meeting will carry the marks of having attended, both intellectually and on a personal level where many friendships were made. The scientific content of the course was at a very high caliber, both because of the hard work done by all the lecturers in preparing their lectures (e. g. , complete copies of each lecture were available at the beginning of the course) and because of the high quality of the "students", many of whom were accomplished experts in the field. The outstanding facilities of the Centre contributed greatly to the success. This volume contains the formal record of the course lectures.

The Modern Technology of Radiation Oncology

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Publisher : Medical Physics Publishing Corporation
ISBN 13 :
Total Pages : 1106 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis The Modern Technology of Radiation Oncology by : Jake Van Dyk

Download or read book The Modern Technology of Radiation Oncology written by Jake Van Dyk and published by Medical Physics Publishing Corporation. This book was released on 1999 with total page 1106 pages. Available in PDF, EPUB and Kindle. Book excerpt: Details technology associated with radiation oncology, emphasizing design of all equipment allied with radiation treatment. Describes procedures required to implement equipment in clinical service, covering needs assessment, purchase, acceptance, and commissioning, and explains quality assurance issues. Also addresses less common and evolving technologies. For medical physicists and radiation oncologists, as well as radiation therapists, dosimetrists, and engineering technologists. Includes bandw medical images and photos of equipment. Paper edition (unseen), $145.95. Annotation copyrighted by Book News, Inc., Portland, OR

Commissioning and Evaluation of Electron Beam Dose Calculation in a Computerized Treatment Planning System Using Generalized Gaussian Pencil Beam and Macro Monte Carlo Model

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ISBN 13 :
Total Pages : 248 pages
Book Rating : 4.:/5 (696 download)

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Book Synopsis Commissioning and Evaluation of Electron Beam Dose Calculation in a Computerized Treatment Planning System Using Generalized Gaussian Pencil Beam and Macro Monte Carlo Model by : Piyanan Liammookda

Download or read book Commissioning and Evaluation of Electron Beam Dose Calculation in a Computerized Treatment Planning System Using Generalized Gaussian Pencil Beam and Macro Monte Carlo Model written by Piyanan Liammookda and published by . This book was released on 2009 with total page 248 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Monte Carlo Methods for Radiation Transport

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Publisher : Springer
ISBN 13 : 3319441418
Total Pages : 292 pages
Book Rating : 4.3/5 (194 download)

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Book Synopsis Monte Carlo Methods for Radiation Transport by : Oleg N. Vassiliev

Download or read book Monte Carlo Methods for Radiation Transport written by Oleg N. Vassiliev and published by Springer. This book was released on 2016-10-17 with total page 292 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is a guide to the use of Monte Carlo techniques in radiation transport. This topic is of great interest for medical physicists. Praised as a "gold standard" for accurate radiotherapy dose calculations, Monte Carlo has stimulated a high level of research activity that has produced thousands of papers within the past few years. The book is designed primarily to address the needs of an academically inclined medical physicist who wishes to learn the technique, as well as experienced users of standard Monte Carlo codes who wish to gain insight into the underlying mathematics of Monte Carlo algorithms. The book focuses on the fundamentals—giving full attention to and explaining the very basic concepts. It also includes advanced topics and covers recent advances such as transport of charged particles in magnetic fields and the grid-based solvers of the Boltzmann equation.

Development of a Monte Carlo Simulation Method for the Evaluation of Dose Distribution Calculations of Radiotherapy Treatment Planning Systems

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Publisher :
ISBN 13 :
Total Pages : 362 pages
Book Rating : 4.:/5 (457 download)

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Book Synopsis Development of a Monte Carlo Simulation Method for the Evaluation of Dose Distribution Calculations of Radiotherapy Treatment Planning Systems by : Frederik Carl Philippus Du Plessis

Download or read book Development of a Monte Carlo Simulation Method for the Evaluation of Dose Distribution Calculations of Radiotherapy Treatment Planning Systems written by Frederik Carl Philippus Du Plessis and published by . This book was released on 1999 with total page 362 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Therapeutic Applications of Monte Carlo Calculations in Nuclear Medicine

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Publisher : CRC Press
ISBN 13 : 1000687686
Total Pages : 441 pages
Book Rating : 4.0/5 (6 download)

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Book Synopsis Therapeutic Applications of Monte Carlo Calculations in Nuclear Medicine by : H. Zaidi

Download or read book Therapeutic Applications of Monte Carlo Calculations in Nuclear Medicine written by H. Zaidi and published by CRC Press. This book was released on 2002-09-01 with total page 441 pages. Available in PDF, EPUB and Kindle. Book excerpt: Therapeutic Applications of Monte Carlo Calculations in Nuclear Medicine examines the applications of Monte Carlo (MC) calculations in therapeutic nuclear medicine, from basic principles to computer implementations of software packages and their applications in radiation dosimetry and treatment planning. With chapters written by recognized authorit

Measurement and Monte Carlo Simulation of Electron Fields for Modulated Electron Radiation Therapy

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (981 download)

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Book Synopsis Measurement and Monte Carlo Simulation of Electron Fields for Modulated Electron Radiation Therapy by : Samantha A. M. Lloyd

Download or read book Measurement and Monte Carlo Simulation of Electron Fields for Modulated Electron Radiation Therapy written by Samantha A. M. Lloyd and published by . This book was released on 2017 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This work establishes a framework for Monte Carlo simulations of complex, modulated electron fields produced by Varian's TrueBeam medical linear accelerator for investigations into modulated electron radiation therapy (MERT) and combined modulated photon and electron radiation therapy (MPERT). Both MERT and MPERT have shown potential for reduced low dose to normal tissue without compromising target coverage in the external beam radiation therapy of some breast, chest wall, head and neck, and scalp cancers. This reduction in low dose could translate into the reduction of immediate radiation side effects as well as long term morbidities and incidence of secondary cancers.Monte Carlo dose calculations are widely accepted as the gold standard for complex radiation therapy dose modelling, and are used almost exclusively for modelling the complex electron fields involved in MERT and MPERT. The introduction of Varian's newest linear accelerator, the TrueBeam, necessitated the development of new Monte Carlo models in order to further research into the potential role of MERT and MPERT in radiation therapy. This was complicated by the fact that the field independent internal schematics of TrueBeam were kept proprietary, unlike in previous generations of Varian accelerators.Two approaches are presented for performing Monte Carlo simulations of complex electron fields produced by TrueBeam. In the first approach, the dosimetric characteristics of electron fields produced by the TrueBeam were first compared with those produced by an older Varian accelerator, the Clinac 21EX. Differences in depth and profile characteristics of fields produced by the TrueBeam and those produced by the Clianc 21EX were found to be within 3%/3 mm. Given this information, complete accelerator models of the Clinac 21EX, based on its known internal geometry, were then successfully modified in order to simulate 12 and 20 MeV electron fields produced by the TrueBeam to within 2%/2 mm of measured depth and profile curves and to within 3.7% of measured relative output. While the 6 MeV TrueBeam model agreed with measured depth and profile data to within 3%/3 mm, the modified Clinac 21EX model was unable to reproduce trends in relative output as a function of fieldsize with acceptable accuracy.The second approach to modelling TrueBeam electron fields used phase-space source files provided by Varian that were scored below the field-independent portions of the accelerator head geometry. These phase-spaces were first validated for use in MERT and MPERT applications, in which simulations using the phase-space source files were shown to model depth dose curves that agreed with measurement within 2%/2 mm and profile curves that agreed with measurement within 3%/3 mm. Simulated changes in output as a function of field size fell within 2.7%, for the most part.In order to inform the positioning of jaws in MLC-shaped electron field delivery, the change in output as a function of jaw position for fixed MLC-apertures was investigated using the phase-space source files. In order to achieve maximum output and minimize treatment time, a jaw setting between 5 and 10 cm beyond the MLC- field setting is recommended at 6 MeV, while 5 cm or closer is recommended for 12 and 20 MeV with the caveat that output is most sensitive to jaw position when the jaws are very close to the MLC-field periphery. Additionally, output was found to be highly sensitive to jaw model. A change in divergence of the jaw faces from a point on the source plane to a 3x3 mm^2 square in the source plane changed the shape of the output curve dramatically.Finally, electron backscatter from the jaws into the monitor ionization chamber of the TrueBeam was measured and simulated to enable accurate absolute dose calculations. Two approaches were presented for measuring backscatter into the monitor ionization chamber without specialized electronics by turning o the dose and pulse forming network servos. Next, a technique was applied for simulating backscatter factors for the TrueBeam phase-space source models without the exact specifications of the monitor ionization chamber. By using measured backscatter factors, the forwarddose component in a virtual chamber was determined and then used to calculate backscatter factors for arbitrary fields to within 0.21%. Backscatter from the jaws was found to contribute up to 2.6% of the overall monitor chamber signal. The measurement techniques employed were not sensitive enough to quantify backscatter from the MLC, however, Monte Carlo simulations predicted this contribution to be 0.3%, at most, verifying that this component can be neglected.

Monte Carlo Techniques in Radiation Therapy

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Publisher : CRC Press
ISBN 13 : 1000455599
Total Pages : 579 pages
Book Rating : 4.0/5 (4 download)

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Book Synopsis Monte Carlo Techniques in Radiation Therapy by : Frank Verhaegen

Download or read book Monte Carlo Techniques in Radiation Therapy written by Frank Verhaegen and published by CRC Press. This book was released on 2021-10-13 with total page 579 pages. Available in PDF, EPUB and Kindle. Book excerpt: About ten years after the first edition comes this second edition of Monte Carlo Techniques in Radiation Therapy: Introduction, Source Modelling, and Patient Dose Calculations, thoroughly updated and extended with the latest topics, edited by Frank Verhaegen and Joao Seco. This book aims to provide a brief introduction to the history and basics of Monte Carlo simulation, but again has a strong focus on applications in radiotherapy. Since the first edition, Monte Carlo simulation has found many new applications, which are included in detail. The applications sections in this book cover the following: Modelling transport of photons, electrons, protons, and ions Modelling radiation sources for external beam radiotherapy Modelling radiation sources for brachytherapy Design of radiation sources Modelling dynamic beam delivery Patient dose calculations in external beam radiotherapy Patient dose calculations in brachytherapy Use of artificial intelligence in Monte Carlo simulations This book is intended for both students and professionals, both novice and experienced, in medical radiotherapy physics. It combines overviews of development, methods, and references to facilitate Monte Carlo studies.