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孢子剂量测定法与太阳紫外线辐射光谱光度法之间的实验对应关系。

Experimental correspondence between spore dosimetry and spectral photometry of solar ultraviolet radiation.

作者信息

Munakata N, Morohoshi F, Hieda K, Suzuki K, Furusawa Y, Shimura H, Ito T

机构信息

Radiobiology Division, National Cancer Center Research Institute, Tokyo, Japan.

出版信息

Photochem Photobiol. 1996 Jan;63(1):74-8. doi: 10.1111/j.1751-1097.1996.tb02994.x.

Abstract

The biologically effective dose of solar UV radiation was estimated from the inactivation of UV-sensitive Bacillus subtilis spores. Two types of independent measurements were carried out concurrently at the Aerological Observatory in Tsukuba: one was the direct measurement of colony-forming survival that provided the inactivation dose per minute (ID/min) and the other was the measurement of the spectral irradiance by a Brewer spectrophotometer. To obtain the effective spectrum, the irradiance for each 1 nm wavelenght interval from 290 to 400 nm was multiplied with the efficiency for inactivation derived from the inactivation action spectrum of identically prepared spore samples. Integration of the effective spectrum provided the estimate for ID/min. The observed values of ID/min were closely concordant with the calculated values for the data obtained in four afternoons in 1993. The average ratio (+/- SD) between them was 1.24 (+/- 0.16) for 14 data points showing high inactivation rates (> 0.05 ID/min). Considering difficulties in the absolute dosimetry of UV radiation, the concordance was satisfactory and improved credibility of the two types of monitoring systems of biologically effective dose of solar UV radiation.

摘要

太阳紫外线辐射的生物有效剂量是根据对紫外线敏感的枯草芽孢杆菌孢子的失活情况估算得出的。在筑波的气象观测站同时进行了两种独立测量:一种是对菌落形成存活率的直接测量,可得出每分钟的失活剂量(ID/分钟),另一种是使用布鲁尔分光光度计测量光谱辐照度。为了获得有效光谱,将290至400纳米每1纳米波长间隔的辐照度乘以从相同制备的孢子样品失活作用光谱得出的失活效率。有效光谱的积分得出ID/分钟的估算值。1993年四个下午获得的数据中,ID/分钟的观测值与计算值密切相符。对于14个显示高失活率(>0.05 ID/分钟)的数据点,它们之间的平均比值(±标准差)为1.24(±0.16)。考虑到紫外线辐射绝对剂量测定的困难,这种相符程度令人满意,提高了太阳紫外线辐射生物有效剂量两种监测系统的可信度。

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