Insero Giacomo, Fusi Franco, Romano Giovanni
Department of Experimental and Clinical Biomedical Sciences 'Mario Serio', University of Florence, Florence, Italy.
Probiomedica srl, Florence, Italy.
J Public Health Res. 2023 Jul 31;12(3):22799036231187077. doi: 10.1177/22799036231187077. eCollection 2023 Jul.
Optical radiation sources, and in particular lasers, find an ever-increasing number of applications in the medical field. It is essential that personnel who are in the presence of an optical radiation source, whether operator, patient or researcher, know precisely the risks inherent in the exposure of the human body to radiation. In order to reduce the risk of biological damage, beyond the provisions of the law on safety regulations, the precise information and accurate preparation of personnel are the main guarantee for the correct use of these sources. In all the application fields, the possibility of a biological damage cannot be completely eliminated, assuming the connotation of occupational risks. In order to understand the risks and operate their effective mitigation, the basic knowledge of the fundamental concepts at the basis of laser-matter interaction will be presented and discussed, with a focus on the physical parameters needed to efficiently estimate and mitigate the related occupational risks, in both a laboratory and clinical context.
光辐射源,尤其是激光,在医学领域的应用越来越广泛。无论是操作人员、患者还是研究人员,处于光辐射源环境中的人员必须确切了解人体暴露于辐射中所固有的风险。为了降低生物损伤风险,除了安全法规法律规定外,准确的信息和人员的充分准备是正确使用这些光源的主要保障。在所有应用领域,假设存在职业风险的情况下,生物损伤的可能性无法完全消除。为了了解风险并有效减轻风险,将介绍和讨论激光与物质相互作用基本概念的基础知识,重点关注在实验室和临床环境中有效评估和减轻相关职业风险所需的物理参数。