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衣物对紫外线辐射的防护:一种新的评估方法。

Clothing Protection from Ultraviolet Radiation: A New Method for Assessment.

机构信息

University of Otago, Wellington, New Zealand.

University of Auckland, Auckland, New Zealand.

出版信息

Photochem Photobiol. 2017 Nov;93(6):1513-1518. doi: 10.1111/php.12803. Epub 2017 Jul 25.

Abstract

Clothing modifies ultraviolet radiation (UVR) exposure from the sun and has an impact on skin cancer risk and the endogenous synthesis of vitamin D. There is no standardized method available for assessing body surface area (BSA) covered by clothing, which limits generalizability between study findings. We calculated the body cover provided by 38 clothing items using diagrams of BSA, adjusting the values to account for differences in BSA by age. Diagrams displaying each clothing item were developed and incorporated into a coverage assessment procedure (CAP). Five assessors used the CAP and Lund & Browder chart, an existing method for estimating BSA, to calculate the clothing coverage of an image sample of 100 schoolchildren. Values of clothing coverage, inter-rater reliability and assessment time were compared between CAP and Lund & Browder methods. Both methods had excellent inter-rater reliability (>0.90) and returned comparable results, although the CAP method was significantly faster in determining a person's clothing coverage. On balance, the CAP method appears to be a feasible method for calculating clothing coverage. Its use could improve comparability between sun-safety studies and aid in quantifying the health effects of UVR exposure.

摘要

衣物改变了来自太阳的紫外线辐射 (UVR) 暴露,从而影响皮肤癌风险和内源性维生素 D 的合成。目前尚无评估衣物覆盖身体表面积 (BSA) 的标准化方法,这限制了研究结果在不同人群之间的通用性。我们使用 BSA 图计算了 38 件衣物的身体覆盖面积,并对数值进行了调整,以考虑到年龄对 BSA 的差异。我们开发了显示每件衣物的图表,并将其纳入了覆盖面积评估程序 (CAP)。五位评估员使用 CAP 和 Lund & Browder 图表(一种用于估计 BSA 的现有方法)来计算 100 名学童图像样本的衣物覆盖面积。比较了 CAP 和 Lund & Browder 方法之间的衣物覆盖面积值、评估者间可靠性和评估时间。两种方法的评估者间可靠性均非常高(>0.90),且得到了可比的结果,尽管 CAP 方法在确定个人衣物覆盖面积方面明显更快。总体而言,CAP 方法似乎是一种可行的计算衣物覆盖面积的方法。它的使用可以提高防晒研究之间的可比性,并有助于量化 UVR 暴露对健康的影响。

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