Tomas Kron et al 2002 Phys. Med. Biol. 47 713 doi:10.1088/0031-9155/47/5/302
Tomas Kron1,2,5, Mamoon Haque3, Kristie Foulkes1,2 and Robert Jeraj4
Show affiliationsRadioactive sources in close contact offer an alternative to superficial radiation in the treatment of skin lesions. A flattening filter was designed for a lead surface applicator to improve the skin dose distribution of a high dose rate (HDR) brachytherapy unit (Nucletron). At three heights from the opening (10, 15 and 25 mm) of the cylindrical applicator, the 192Ir source can be driven into the centre of the applicator. Thin sheets of lead foil (0.2 mm) were cut into circular shapes and placed in the opening to build a cylindrical cone that acts as a flattening filter. The shape of the cone was optimized in an iterative process using a spreadsheet and the resulting dose distribution under the applicator was determined using radiosensitive film. The use of the filter improved the dose distribution in a plane perpendicular to the beam axis to be within ±5% of the central axis dose. The present applicator and flattening filter together with an HDR brachytherapy unit offer an alternative for skin irradiation where a superficial unit is not available or will be replaced with a more flexible device. As the depth dose characteristics can be modified using different source-to-surface distances, the dose throughout the patient's skin can be shaped as desired by the radiation oncologist using a compensator design type approach.
Issue 5 (7 March 2002)
Received 27 July 2001
Published 15 February 2002
Tomas Kron et al 2002 Phys. Med. Biol. 47 713
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J. E. Dickens et al. 2000 ApJ 542 870
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T L Gibson 1992 J. Phys. B: At. Mol. Opt. Phys. 25 1321
Margaret Meixner et al. 1999 ApJS 122 221
J. R. Mattox et al. 2001 ApJS 135 155
David A. Buote et al 2004 ApJ 607 L91
2009 J. Radiol. Prot. 29 557
M. Nonino et al. 2009 ApJS 183 244