焦玲,张文艺,丁艳秋,张良安,星正治.日射量的估算及其对牙釉质电子自旋共振剂量学的影响[J].中华放射医学与防护杂志,2009,29(3):306-308
日射量的估算及其对牙釉质电子自旋共振剂量学的影响
Estimation of solar radiation and its effects on tooth enamel electron spin resonance dosimetry
投稿时间:2008-07-15  
DOI:10.3760/cma.j.issn.0254-5098.2009.03.023
中文关键词:  太阳光照度  日射量  牙釉质  电子自旋共振  剂量学
英文关键词:Solar illuminance  Solar radiation  Tooth enamel  Electron spin resonance  Dosimetry
基金项目:
作者单位E-mail
焦玲 300192 天津, 中国医学科学院中国协和医科大学放射医学研究所 ljiao.irm@163.com 
张文艺 300192 天津, 中国医学科学院中国协和医科大学放射医学研究所  
丁艳秋 300192 天津, 中国医学科学院中国协和医科大学放射医学研究所  
张良安 300192 天津, 中国医学科学院中国协和医科大学放射医学研究所  
星正治 广岛大学原爆放射线医科学研究所  
摘要点击次数: 2928
全文下载次数: 2147
中文摘要:
      目的 探讨日射量的估算方法及太阳光辐射对牙釉质电子自旋共振(ESR)剂量学的影响。方法 用机械方法获得11个牙釉质样品。用照度计测量太阳光的照度,通过比较日本气象厅在广岛市测得的瞬时日射量和相同时刻所测得的照度,计算出转换系数,然后估算出照射在牙釉质样品的累积日射量。用6060Co γ射线和太阳光分别照射牙釉质样品,使用ESR波谱仪测量不同辐射后牙釉质样品的ESR信号。结果 照度与瞬时日射量的转换系数为(8.67±0.22) W·m-2klx。照射在牙釉质样品上的累积日射量为(580±16) MJm2。太阳光辐射也引起γ射线照射产生的剂量学信号,而且随累积日射量而线性增强,太阳光辐射还产生一个紧邻本底的信号,当累积日射量大于某一值时,该信号趋于饱和状态。结论 用剂量学信号对所受辐射剂量进行评价,本研究中每MJm2的太阳光辐射的影响相当于(7.7±1.4) mGy的γ射线辐射。紧邻本底的ESR信号可作为太阳光辐射的标志峰,有助于判断所收集的样品是否受到太阳光辐射,从而提高小剂量重建的准确度。
英文摘要:
      Objective To investigate solar radiation and its effects on human tooth enamel electron spin resonance (ESR) dosimetry. Methods 11 tooth enamel samples were prepared by mechanical method.The intensity of solar illuminance was measured with a light meter, the measured illuminance was converted to insolation using a coefficient. Summation of solar radiation was evaluated.Enamel samples were exposed to 6060Co γ rays followed by sunlight on sunny days, and ESR spectra were scanned after different exposure. Results The conversion coefficient for measured illuminance to insolation was (8.67±0.22) W·m-2klx. The integrated solar radiation to the samples was (580±16) MJm2. Solar exposure also caused dosimetric signal. The perpendicular component of dosimetric signal increased linearly with the amount of solar radiation, another signal close to background tended to saturation. Conclusions The average effect of the solar radiation on the signal was estimated by dose equivalent γ ray irradiation as (7.7±1.4) mGy·MJm2. Signal near to background may be used to recognize the effect of solar radiation on the enamel, and estimate external dose accurately.
HTML  查看全文  查看/发表评论  下载PDF阅读器
关闭