Ambient ultraviolet radiation and skin cancer incidence.

Photo-dermatology Pub Date : 1988-08-01
B L Diffey, E F Meanwell, M J Loftus
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Abstract

Environmental ultraviolet radiation (UVR) was monitored for one year at Durham (latitude 55 degrees N) using a stationary, horizontal sensor, and a sensor rotating in a vertical plane designed to simulate the random motion of subjects outdoors. From these data it was possible to calculate the personal solar UVR representative of populations living at different geographical locations and experiencing varying patterns of cloud cover. The conclusion was that present monitoring programmes that record ambient solar UVR in a horizontal plane at different locations as input data to studies on the epidemiology of skin cancer are appropriate for obtaining a relative estimate of the population exposure in locations with different climatic conditions, providing, of course, that the outdoor exposure habits of different populations are comparable.

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环境紫外线辐射与皮肤癌发病率。
在达勒姆(北纬55度),使用一个固定的水平传感器和一个垂直平面旋转的传感器监测环境紫外线辐射(UVR)一年,该传感器旨在模拟受试者在户外的随机运动。根据这些数据,可以计算出生活在不同地理位置和经历不同云层模式的人口的个人太阳紫外线辐射代表。结论是,目前的监测方案是在不同地点的水平面上记录环境太阳紫外线辐射,作为皮肤癌流行病学研究的输入数据,这对于在不同气候条件下获得人口暴露的相对估计是合适的,当然,前提是不同人群的户外暴露习惯具有可比性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Basic principles of photobiology Effect of ultraviolet radiation on Ia expression by keratinocytes. Photocarcinogenesis is retarded by a partly photodegraded solution of para-aminobenzoic acid. Local increase in interleukin-1-like activity following UVB irradiation of human skin in vivo. Cis-urocanic acid stereospecifically modulates human monocyte IL-1 production and surface HLA-DR antigen expression, T-cell IL-2 production and CD4/CD8 ratio.
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