Biomedical subjects
V Martucci
Publications and source records attributed to V Martucci.
[Measurement of radon concentrations in schools at 2 communities of Puglia and oncologic risk].
Measurements of radon's concentration have been effected in the schools of two communes of Puglia: Polignano and Valenzano. The average concentration of radon, based on the prospecting effected in the research period (spring/summer 1997), appeared, for both communes, lower than national average (75 Bq/m3). However, these average concentrations is below estimated caused of the limitation of the research period, owing to organization only at the period spring/summer. In fact, by the extrapolation applying a right factor of conversion, of the "winter" average concentrations from that average calculated during the research period (considering the evident limits of such procedure) we obtain, respectively, for both schools of Polignano and Valenzano, an average concentrations about of 75 Bq/m3 e 103 Bq/m3. The research shows the existence of a correlation among the obtained results and two important factors: the buildings materials utilized and the geological conformation of the subsoil; in particular, the buildings having main wall (tufa) or built by mixed materials (cement, bricks and tufa) measured the highest radon concentrations. Nevertheless, the absolute risk to develop a pulmonary tumour due to the radon exposition, limitedly for the population of the common of Valenzano, appears lightly superior in respect of the national risk (6 cases on 100,000 fellows) resulted about 8.5 case on 100,000 fellows.
[Indoor radon pollution in houses in the Apulian Region of Italy and evaluation of the probability of lung cancer in the population].
BACKGROUND: Radon-222 is a gaseous radioactive chemical which can be transformed into other radioactive chemicals, defined as "products of decay" or "radon's daughter". The modality of radon penetration into the buildings depends on the convection motion created in the ground, which suck it back, so causing the penetration. The principal effect on human health is the increase risk of lung cancer, in proportion to the concentration and the time people spend indoors with exposure to radon. OBJECTIVES: The study proposed to estimate the expected cases of radon-induced lung cancer in the population of Apulia due to contamination by indoor radon. METHODS: The study used the data obtained in a national survey made by ANPA (National Environmental Protection Agency) and ISS (High Health Institute), with the collaboration of the Regional Reference Centres for the Control of Environmental Radioactivity (CRR). In the Apulia Region 310 families (5000 nationwide) were involved, which were selected so as to constitute a representative sample both of the region and the country. Appropriate instruments for the measurement of mean concentrations of indoor radon (passive nuclear trace monitors were installed in the homes of the sample families in two different periods of year). We evaluated the variations of indoor radon concentration in the houses during spring-summer and autumn-winter periods, observing a predictable increase in the latter period. We assessed concentrations in relation to: 1. architectural features and location, 2. construction year, 3. building material, 4. presence of windows. RESULTS: We found higher contamination in the oldest non-cement buildings and on the lower floors. In Lecce and Castrì di Lecce we found a mean radon concentration higher than the national and the regional mean, which is equivalent to annual exposure of 0.54 and 0.46 WLM respectively. For these levels we estimated that the expected cases of radon-induced lung cancer will be 1.5 in Lecce and 1.3 in Castrì per 10,000 inhabitants. CONCLUSION: The results of our investigations confirm that indoor radon pollution is a significant problem as it is one of the main causes of lung cancer. Hence, precautionary measures to reduce as much as possible exposure to indoor radon are highly recommended.