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Med Phys ; 33(9): 3220-4, 2006 Sep.
Article in English | MEDLINE | ID: mdl-17022215

ABSTRACT

An important aspect of designing an applicator for radiation treatment of rectal cancer is the ability to minimize dose to the mucosa and noninvolved parts of the rectum wall. For this reason we investigated a construction of a flexible multichannel applicator with several channels placed along the periphery of a cylinder and a construction of a rigid cylinder with a central channel and interchangeable shields. Calculations of the dose gradient, dose homogeneity in the tumor, and shielding ability were performed for the two applicators in question. Furthermore, the influence on dose distribution around a flexible multichannel applicator from an unintended off-axis positioning of the source inside a bent channel was investigated by film measurements on a single bent catheter. Calculations showed that a single-channel applicator with interchangeable shields yields a higher degree of shielding and has a better dose homogeneity in the tumor volume than that of a multi-channel applicator. A single-channel applicator with interchangeable shields was manufactured, and the influence of different size of shield angle on dose rate in front of and behind the shields was measured. While dose rate in front of the shield and shielding ability are closely independent of the size of the shield angle when measured 1 cm from the applicator surface, dose rate in more distant volumes will to some extent be influenced by shield angle due to volume scatter conditions.


Subject(s)
Brachytherapy/instrumentation , Models, Biological , Prosthesis Implantation/instrumentation , Radiometry/methods , Radiotherapy Planning, Computer-Assisted/methods , Rectal Neoplasms/radiotherapy , Brachytherapy/methods , Computer Simulation , Computer-Aided Design , Equipment Design , Equipment Failure Analysis , Humans , Prosthesis Implantation/methods , Radiotherapy Dosage , Relative Biological Effectiveness
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