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1.
Med Phys ; 33(7): 2519-24, 2006 Jul.
Article in English | MEDLINE | ID: mdl-16898455

ABSTRACT

The methodology of brachytherapy source dosimetry with Gafchromic MD 55-2 film (ISP Technologies, Inc.) is examined with an emphasis on the nonlinearity of the optical density-dose relation within the dynamic dose range, the radial distance-dependent measurement uncertainty, and the format of data presentation. The specific source chosen for this study was a Checkmate (Cordis Corporation) intravascular brachytherapy system. The two-dimensional dose distribution around the source was characterized by a comprehensive analysis of measurement uncertainties. A comparative analysis of the dosimetric data from the vendor and from the scientific literature showed a substantial consistency of the information available for the Checkmate source. Our two-dimensional dosimetric data for the Checkmate source trains is presented in the form of measured along and away dose tables.


Subject(s)
Blood Vessels/radiation effects , Brachytherapy/methods , Film Dosimetry/instrumentation , X-Ray Film , Calibration , Film Dosimetry/methods , Humans , Iridium Radioisotopes/therapeutic use , Radiation Dosage , Radiometry , Radiotherapy Dosage
2.
Cardiovasc Radiat Med ; 3(3-4): 199-204, 2002.
Article in English | MEDLINE | ID: mdl-12974374

ABSTRACT

Measurements were performed on the 30, 40 and 60-mm 90Sr/Y beta-emitter source trains used in the Novoste Beta-Cath system to determine the dosimetric characteristics of the sources at millimeter distances and provide the necessary TG-60 dosimetry parameters for mapping the dose distributions. These measurements were carried out in a Solid Water phantom where MD-55-2 Gafchromic films were placed in direct contact with a 5 French (F) catheter used for the 30 and 60-mm source trains and a 3.5 F catheter used for a thinner 40-mm source train. The dosimetric analysis was performed according to the AAPM TG-60 formalism. For the 30-mm source train, data were collected with the source axis at distances of 0.41 and 1.19 mm from the film surface, respectively, in order to investigate possible dosimetric effects due to the intrinsic off centering of the source train lumen within the 5 F catheter. Absolute dose rates at 2 mm were determined by calibrating the radiochromic film in a high energy electron beam from a radiotherapy accelerator. The dose rates at a radial distance of 2 mm were found to be within 10% of the values provided by Novoste. Radial dose functions from this study were in good agreement (< or = 10%) with a 30-mm, 90Sr/Y source train dose data generated from C. G. Soares et al. 90Sr/Y single seed data. However, larger differences were observed at distances shorter than 1 mm when compared to radial dose functions from the Novoste Monte Carlo data.


Subject(s)
Beta Particles , Brachytherapy , Radiometry , Radiotherapy Dosage , Strontium Radioisotopes/administration & dosage , Yttrium Radioisotopes/administration & dosage , Dose-Response Relationship, Radiation , Humans , Models, Biological , Phantoms, Imaging
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