
Dose Estimation of Absorbed X-ray Radiation to Safeguard Human DNA Alteration: A Quality Control and Quality Assurance Approach
Author(s) -
Oladotun A. Ojo,
Musibau A. Ibrahim,
Peter A. Oluwafisoye
Publication year - 2021
Publication title -
european journal of medical and health sciences
Language(s) - English
Resource type - Journals
ISSN - 2593-8339
DOI - 10.24018/ejmed.2021.3.3.777
Subject(s) - absorbed dose , ionizing radiation , materials science , radiation dose , dna , x ray , radiation , quality assurance , radiation protection , nuclear medicine , range (aeronautics) , radiochemistry , dosimetry , medicine , irradiation , chemistry , optics , physics , biology , genetics , external quality assessment , pathology , nuclear physics , composite material
The amount of absorbed X-ray dose by a particular human at a single exposure can have some effect on DNA. There is therefore the need to apply the correct range of dose to patients during X-ray. X-ray films from exposed adult patients were collected for use at a hospital. Each of the film’s optical densities was measured at various spots on the film and averaged as the mean. An estimated range of absorbed dose for the films was found to be between 0.83 mGy to 8.86 mGy. The results were compared with the 1.2 mGy value, which is the absorbed dose that should not be exceeded during an exposure, so that the DNA is not altered. The doses above this value are capable of doing harm to the human DNA. As a result, that ionizing radiation of low dose values can produce an effect on human DNA, hence this occurrence may be checked with a research work of this nature.