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Comparison of Penumbra Regions Produced by Ancient Gamma Knife Model C and Gamma Art 6000 Using Monte Carlo Mcnp6 Simulation Publisher Pubmed



Banaee N1 ; Asgari S1 ; Nedaie HA2
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Authors Affiliations
  1. 1. Department of Medical Radiation Engineering, Central Tehran Branch, Islamic Azad University, Tehran, Iran
  2. 2. Joint Cancer Research Center, Radiotherapy Oncology & Radiobiology Research Center, Cancer Institute, Tehran University of Medical Sciences, Tehran, Iran

Source: Applied Radiation and Isotopes Published:2018


Abstract

The accuracy of penumbral measurements in radiotherapy is pivotal because dose planning computers require accurate data to adequately modeling the beams, which in turn are used to calculate patient dose distributions. Gamma knife is a non-invasive intracranial technique based on principles of the Leksell stereotactic system for open deep brain surgeries, invented and developed by Professor Lars Leksell. The aim of this study is to compare the penumbra widths of Leksell Gamma Knife model C and Gamma ART 6000. Initially, the structure of both systems were simulated by using Monte Carlo MCNP6 code and after validating the accuracy of simulation, beam profiles of different collimators were plotted. MCNP6 beam profile calculations showed that the penumbra values of Leksell Gamma knife model C and Gamma ART 6000 for 18, 14, 8 and 4 mm collimators are 9.7, 7.9, 4.3, 2.6 and 8.2, 6.9, 3.6, 2.4, respectively. The results of this study showed that since Gamma ART 6000 has larger solid angle in comparison with Gamma Knife model C, it produces better beam profile penumbras than Gamma Knife model C in the direct plane. © 2017 Elsevier Ltd
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