4 results match your criteria: "National Centre for Radiation Protection and Computational Physics[Affiliation]"

Article Synopsis
  • NORM contributes to radiation exposure for workers, the public, and the environment, prompting the EURATOM Horizon 2020 RadoNorm project to investigate exposure scenarios and data collection related to NORM across Europe.
  • The project aims to better understand the activities involving NORM and associated risks by developing a tiered methodology and tools for standardized data collection, including Excel NORM registers.
  • These tools facilitate the identification of NORM-related issues, characterize exposure scenarios, and support regulatory management of NORM processes and natural radiation exposure globally.
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Retinal tissue can receive incidental γ-rays exposure during radiotherapy either of tumors of the eye and optic nerve or of head-and-neck tumors, and during medical diagnostic procedures. Healthy retina is therefore at risk of suffering radiation-related side effects and the knowledge of pathophysiological response of retinal cells to ionizing radiations could be useful to design possible strategies of prevention and management of radiotoxicity. In this study, we have exploited an in vitro model (primary rat retinal cell culture) to study an array of biological effects induced on retinal neurons by γ-rays.

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The relation between radon in schools and in dwellings: A case study in a rural region of Southern Serbia.

J Environ Radioact

February 2017

European Commission, DG JRC, Directorate for Nuclear Safety and Security, Ispra, Italy.

Recognized as a significant health hazard, radon (Rn) has been given increasing attention for years. Surveys of different kinds have been performed in many countries to assess the intensity and the geographical extent of possible Rn problems. Common surveys cover mainly dwellings, the indoor place with highest occupancy, and schools, where people spend a large fraction of their lifetime and which can also be considered exemplary for Rn exposure at workplaces; it has however been observed that relating them is difficult.

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Measurements covering a 1 year period are often used and required by legislation to assess the average radon concentration within a house or a workplace. This kind of long-term measurement-generally carried out with techniques based on nuclear track detectors-can be affected by a reduction in sensitivity due to ageing and fading of latent tracks during the exposure period, thus resulting in an underestimation of the actual average concentration. In order to evaluate in field conditions the ageing and fading effects on annual radon concentration measurements, two different studies in a large sample of rooms in dwellings (162) and in workplaces (432) were conducted using two different techniques (detector and track read-out system): (i) CR-39 plastics readout with a fully automated image analysis system, and (ii) LR 115 films with a spark-counter for track counting.

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