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Utilizing Monte Carlo simulations in estimation of occupational eye lens dose based on whole body dosemeter in interventional cardiology and radiology

机译:利用蒙特卡罗模拟在介入心脏病学中全身称呼表的估算中的职业眼镜剂量估算

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摘要

Medical staff performing interventional procedures in cardiology and radiology is considered to be a professional group exposed to high doses of ionizing radiation. With new epidemiological evidences and recently reduced eye lens dose limit, dose assessment to the lens of the eye, in the interventional cardiology, has become one of the most challenging research topics. This paper presents results of the eye lens dose assessment in interventional cardiology obtained by means of the computational dosimetry. Since placing and wearing the dedicated eye lens dosimeter is encumbering for the staff, Monte Carlo simulation provides an accurate and efficient method for obtaining an indication of doses to the eye lenses. Eye lens doses were estimated for three typical beam projections (PA, LAO, and RAO) and tube voltages ranging from 80 kV to 110 kV, with different protective equipment setups, for the first operator position. Simulations were carried out using MCNPX code. Results revealed that a whole body dosimeter worn at the thyroid center position gives the best estimate of the eye lens dose with a spread from 11 % to 18 % for the left eye. Corresponding average conversion coefficient from whole body to the eye lens dose is estimated to be 0.18. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. III43009]
机译:执行在心脏病学和放射介入手术的医务人员被认为是暴露于高剂量的电离辐射的专业组。随着新的流行病学证据,最近减少眼睛晶状体剂量限值,剂量评估到眼睛的晶状体,在介入心脏病学,已成为最具挑战性的研究课题之一。本文介绍了眼睛晶状体的结果由计算剂量的方法获得介入心脏病学剂量评估。由于放置和穿着专用眼透镜剂量计拖累为员工,蒙特卡罗模拟提供了用于获得剂量的指示眼透镜的精确和有效的方法。眼透镜剂量估计三种典型的束投影(PA,LAO,和RAO)和管电压为80千伏到110千伏,具有不同的保护设备的设置,所述第一操作者的位置。模拟进行了使用MCNPX代码。结果表明,佩戴在甲状腺中心位置的全身剂量计给出眼睛晶状体剂量从11%的扩展到18%用于左眼的最佳估计。对应从整个身体的平均转换系数对眼睛晶状体的剂量估计为0.18。 [塞尔维亚教育部项目,科技发展,授予否。 III43009]

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