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Int J Radiat Oncol Biol Phys ; 37(4): 965-9, 1997 Mar 01.
Article in English | MEDLINE | ID: mdl-9128976

ABSTRACT

PURPOSE: To describe the construction of a simple, inexpensive applicator for irradiation of localized areas of the vagina with intracavitary brachytherapy. METHODS AND MATERIALS: It was desirable to avoid an interstitial implant in an elderly patient with a stage T2 vaginal cancer. The final phase of radiation therapy was delivered with a custom made intracavitary cylinder that allowed the high-dose area to be limited to the portion of the vagina at high risk for residual disease. The applicator was fabricated from a clear cast acrylic (Lucite) rod with dimensions 3.5 cm diameter x 5.0 cm long. The applicator contained 11 parallel grooves, each 1.8 mm deep x 2.2 mm wide, machined along the surface of the cylinder parallel its long axis at 1.0 cm increments. Plastic needles (15 gauge) were inserted into the grooves along the surface of the acrylic cylinder and held in place with heat shrink tubing. The applicator was easily inserted and positioned without anesthesia. Standard low dose rate 192Ir ribbons were inserted into the plastic needles after positioning the applicator in the vagina. RESULTS: Construction of this applicator system requires a few weeks notice and approximately $150. Fabrication of the grooved cylinder is a routine task for a workshop with a milling machine. A step-by-step description of how to construct and use the applicator is provided along with the telephone numbers of commercial vendors to call to order all necessary materials. CONCLUSION: This article describes a simple, inexpensive method for constructing a customized vaginal applicator that can be used to treat a limited area of the vagina with intracavitary brachytherapy.


Subject(s)
Brachytherapy/instrumentation , Carcinoma, Squamous Cell/radiotherapy , Vaginal Neoplasms/radiotherapy , Aged , Aged, 80 and over , Carcinoma, Squamous Cell/diagnostic imaging , Equipment Design , Female , Humans , Radiography , Thermoluminescent Dosimetry , Vaginal Neoplasms/diagnostic imaging
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