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Sources and measurement of ultraviolet radiation.

机译:紫外线辐射的来源和测量。

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Ultraviolet (UV) radiation is part of the electromagnetic spectrum. The biological effects of UV radiation vary enormously with wavelength and for this reason the UV spectrum is further subdivided into three regions: UVA, UVB, and UVC. Quantities of UV radiation are expressed using radiometric terminology. A particularly important term in clinical photobiology is the standard erythema dose (SED), which is a measure of the erythemal effectiveness of a UV exposure. UV radiation is produced either by heating a body to an incandescent temperature, as is the case with solar UV, or by passing an electric current through a gas, usually vaporized mercury. The latter process is the mechanism whereby UV radiation is produced artificially. Both the quality (spectrum) and quantity (intensity) of terrestrial UV radiation vary with factors including the elevation of the sun above the horizon and absorption and scattering by molecules in the atmosphere, notably ozone, and by clouds. For many experimental studies in photobiology it is simply not practicable to use natural sunlight and so artificial sources of UV radiation designed to simulate the UV component of sunlight are employed; these are based on either optically filtered xenon arc lamps or fluorescent lamps. The complete way to characterize an UV source is by spectroradiometry, although for most practical purposes a detector optically filtered to respond to a limited portion of the UV spectrum normally suffices.
机译:紫外线(UV)辐射是电磁光谱的一部分。 UV辐射的生物学效应随波长而变化很大,因此,UV光谱进一步细分为三个区域:UVA,UVB和UVC。 UV辐射的数量使用辐射术语表示。在临床光生物学中,一个特别重要的术语是标准红斑剂量(SED),它是测量UV暴露的红斑效果的量度。紫外线辐射是通过将人体加热到白炽温度(如太阳紫外线)或通过使电流流经通常蒸发的汞的气体而产生的。后一过程是人为产生紫外线辐射的机理。地面紫外线辐射的质量(频谱)和数量(强度)都随以下因素而变化:太阳升起至地平线以上,以及大气中的分子(尤其是臭氧)和云的吸收和散射。对于光生物学的许多实验研究来说,使用自然阳光根本不可行,因此,采用了模拟紫外线的人造紫外线辐射源来模拟阳光。这些是基于光学过滤的氙弧灯或荧光灯。表征紫外线源的完整方法是通过分光光度法进行测量,尽管对于大多数实际目的而言,光学过滤检测器以对紫外线光谱的有限部分做出响应通常是足够的。

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