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Biomedical subjects

R Breschi

Publications and source records attributed to R Breschi.

6 recordsLinked to original sources

[Optimization of a dosimetric procedure in total body irradiation].

The experimental dosimetry of 2 radiotherapy beams produced by a 60Co Picker unit and by a Siemens 4 MV unit, respectively, was analyzed to verify the use of tissue air ratio (TAR) and tissue maximum ratio (TMR) in the computerized planning of total body irradiation (TBI). The use of a small ionization chamber PRO5P Capintec in anthropometric phantoms allowed us to test a computed calculation procedure adopted to reduce both experimental uncertainties and time consumption. The experimental test on the computed procedure was also useful to identify the equivalent fields the patient's body had to be divided into for dosimetric planning. Such dosimetric specifications as average dose to the patient and degree of dose inhomogeneity are calculated when the thickness of compensator filters in perspex is optimized. Following the guidelines reported in ICRU 29, a dosimetric record is presented. In page 1 the target volume is described, in page 2 the provisional treatment planning, and in page 3 the actual treatment planning, checked with in vivo TLD measurements, and the dose specifications for TBI.

Humans↗

[Introduction to the use of 125 iodine in interstitial radiotherapy (author's transl)].

The 125-iodine is employed for definitive implantation in the treatment of some apical and non apical lung tumors, and in pancreas and prostate tumors. The results obtained by the authors are not evaluable and the results of north-american literature are reported. The 125-iodine properties are original and allows a very important progress above all of the protection problems.

Brachytherapy↗

Field separation in radiation therapy with opposing fields.

Dose distribution at the junction of two pairs of opposing fields with 60Co radiation was investigated. In order to obtain a uniform dose distribution, the field separation at the depth of interest was found to be the most important parameter. Values of this parameter to be used in every specific situation are reported. A simple formula is derived, which should be of practical help to the radiotherapist. This formula enables one to compute the field separation at the skin level in order to obtain the best dose distribution in the junction area at the tumor depth.

Cobalt Radioisotopes↗