Cylindrical coordinate-based TG-43U1 parameters for dose calculation around elongated brachytherapy sources

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Erratum: “Cylindrical coordinate‐based TG‐43U1 parameters for dose calculation around elongated brachytherapy sources”

i) The institutional affiliation for co-author Manzoor Hussain is missing. The affiliation of Manzoor Hussain is University of the Punjab, Department of Physics, Jinnah Campus, Lahore, Pakistan. With this correction, the institutional affiliations of all the authors will be as follows: Shahid B. Awan,a,b Sharifeh A. Dinib, Manzoor Hussaina, David Soleimani-Meigoonib, and Ali S. Meigoonib Univer...

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Cylindrical coordinate‐based TG‐43U1 parameters for dose calculation around elongated brachytherapy sources

In 2001, the use of cylindrical coordinates was demonstrated to be more suitable than was the use of polar coordinates for accurate computer calculations during treatment planning for 192Ir intravascular brachytherapy sources. In the present work, we investigated the applicability of cylindrical coordinate-based TG-43U1 parameters for dosimetric evaluation and dose calculations for RadioCoil 10...

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TG‐43U1 parameterization of elongated RadioCoil P103d brachytherapy sources

Recently, to eliminate problems associated with seed type sources, RadioMed Corporation (Tyngsboro, MA) introduced RadioCoil 103Pd sources for interstitial prostate implants. The RadioCoil sources are available in integral lengths ranging from 1.0 cm to 6.0 cm. In this project, dosimetric characteristics of these sources were determined following the TG-43U1 recommendations, with consideration ...

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Investigation of dose distribution 252Cf Isotron brachytherapy source based on TG-43U1 protocol by Monte Carlo method.

Introduction: The commercial 252Cf sources are too large in size and clinical applications of neutron brachytherapy (NBT) are limited to a small number of intracavitary treatments of cervical cancers. Recently, under the Cooperative Research and Development Agreement (CRADA) with Isotron Inc., the Oak Ridge National Laboratory (ORNL) encapsulated a new medical 252Cf sources, c...

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Investigation of dose distribution 252Cf Isotron brachytherapy source based on TG-43U1 protocol by Monte Carlo method

 Introduction:The commercial 252Cf sources are too large in size and clinical applications of neutronbrachytherapy (NBT) are limited to a small number of intracavitary treatments of cervical cancers. Recently, under the Cooperative Research and Development Agreement (CRADA) with Isotron Inc., the Oak Ridge National Laboratory (ORNL) encapsulated a new medical 252Cf sources, cal...

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ژورنال

عنوان ژورنال: Journal of Applied Clinical Medical Physics

سال: 2008

ISSN: 1526-9914

DOI: 10.1120/jacmp.v9i2.2760