Virtual Simulation of Radiotherapy Technology for Cancer Treatment (Paperback)

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Cancer is one of the main causes of natural fatalities in the world. It is extensively treated using surgery, radiation, chemotherapy or a combination of those. Due to its success rate and non-invasiveness, perhaps the most promising of those is Radiotherapy (RT). Not yet the most widely used, the lack of training tools being possibly the main reason, followed by scarce public awareness of RT as opposed to "scary" chemotherapy. A Virtual Environment (VE) Simulation for Cancer Treatment intends to be a tool that will offer potential means for training radiotherapy personnel and increasing public awareness about RT as an option for cancer treatment. Designed as a hypothetical state-of-the- art Virtual RT unit containing a Linear Accelerator and Treatment Couch with an intuitive GUI for interaction. An editable random RT plan can be created including beams and settings for the Multi Leaf Collimator (MLC) and the RT Device (Clinac); the MLC can be edited at finger or jaw level. The effect of the MLC over the "radiation beam" is visualized. CT slices can be displayed at the isocentre, and other "special effects" were sketched. Core tools used were C++ & OpenGL.

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Product Description

Cancer is one of the main causes of natural fatalities in the world. It is extensively treated using surgery, radiation, chemotherapy or a combination of those. Due to its success rate and non-invasiveness, perhaps the most promising of those is Radiotherapy (RT). Not yet the most widely used, the lack of training tools being possibly the main reason, followed by scarce public awareness of RT as opposed to "scary" chemotherapy. A Virtual Environment (VE) Simulation for Cancer Treatment intends to be a tool that will offer potential means for training radiotherapy personnel and increasing public awareness about RT as an option for cancer treatment. Designed as a hypothetical state-of-the- art Virtual RT unit containing a Linear Accelerator and Treatment Couch with an intuitive GUI for interaction. An editable random RT plan can be created including beams and settings for the Multi Leaf Collimator (MLC) and the RT Device (Clinac); the MLC can be edited at finger or jaw level. The effect of the MLC over the "radiation beam" is visualized. CT slices can be displayed at the isocentre, and other "special effects" were sketched. Core tools used were C++ & OpenGL.

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Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

February 2011

Availability

Expected to ship within 10 - 15 working days

First published

February 2011

Authors

,

Dimensions

229 x 152 x 7mm (L x W x T)

Format

Paperback - Trade

Pages

124

ISBN-13

978-3-8443-0070-3

Barcode

9783844300703

Categories

LSN

3-8443-0070-8



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