光子学报, 2015, 44 (4): 0417003, 网络出版: 2015-04-28   

LED背光显示器对不同年龄人视网膜照度、节律效应和蓝光危害的影响

Effect of Retina Illuminance, Circadian Rhythm and Blue Light Hazard of LED Backlight Display on the Human of Different Ages
作者单位
1 常州工学院 光电工程学院, 江苏 常州 213002
2 常州现代光电技术研究院, 江苏 常州 213002
3 常州市光电子材料与器件重点实验室, 江苏 常州 213002
摘要
研究了视网膜照度、节律效应和蓝光危害随年龄的变化规律.采用光谱仪测量了4款常见发光二极管背光显示器显示白色和蓝色时的归一化光谱分布, 然后结合不同年龄人眼的晶状体透射谱, 计算了视网膜照度因子、节律因子和蓝光危害能效因子, 得到三者与年龄的变化规律.研究表明: 对于同一发光二极管背光显示器, 视网膜照度因子、节律因子和蓝光危害能效因子均随年龄的增加而显著减小; 同一人眼的视网膜照度因子随显示器类型的变化较小; 对于年轻人, 不同类型显示器的蓝光危害能效因子和节律因子差异明显, 特别是显示蓝色时, 但是, 对于老年人, 不同类型显示器的蓝光危害能效因子和节律因子差异较小.
Abstract
The changes of retinal illuminace, circadian rhythm and blue light hazard with age were studied. The normalized spectral distributions of four common displays with white and blue background were measured with the spectrometer. The retinal illuminance factor, blue light hazard factor and circadian factor were calculated based on the lens spectral transmission of different ages. The relationships between these three factors and age were obtained. It is shown that the above three factors decrease rapidly as the age increases for the same light emitting diode backlight display. The retinal illuminance factor changes little with the type of display for human of the same age. For the younger, The blue light hazard factor and the circadian factor vary greatly with the displays, especially for the blue background. However, for the older, the variations of blue light hazard factor and the circadian factor are small for different displays.
参考文献

[1] PETER R B. The impact of light in buildings on human health[J]. Indoor and Built Environment, 2010, 19(1): 8-20.

[2] 申崇渝, 徐征, 赵谡玲,等. LED 蓝光泄露安全性研究[J]. 光谱学与光谱分析, 2014,34(2): 316-321.

    SHEN Chong-yu, XU Zheng, ZHAO Su-ling. Study on the safety of blue light leak of LED[J]. Spectroscopy and Spectral Analysis, 2014, 34(2): 316-321.

[3] BERSON D M, DUNNF A T, TAKAO M. Phototransduction by retinal ganglion cells that set the circadian clock[J]. Science, 2002, 295(5557): 1070-1073.

[4] CAJOCHEN C, MNNCH M, KOBIALKA S, et al. High sensitivity of human melatonin, alertness, thermoregulation and heart rate to short wavelength light[J]. Journal of Clinical Endocrinology& Metabolism, 2005, 90(3): 1311-1316.

[5] 黄海静, 严永红. 光生物效应与教室照明实验探讨[J].灯与照明, 2008,32(4): 1-3.

    HUANG Hai-jing,YAN Yong-hong. The experiment on photobio- modulation of classroom lighting[J]. Light & Lighting, 2008, 32(4): 1-3.

[6] 柴颖斌,孙耀杰,林燕丹. 低照度彩光对人眼非视觉生物效应的影响[J].照明工程学报, 2012,23(6): 19-21, 77.

    CAI Ying-bing, SUN Yao-jie, LIN Yan-dan. Non-visual biological effects of different color light under low illuminace conditions[J]. China Illuminating Engineering Journal, 2012, 23(6): 19-21,77.

[7] 居家奇. 照明光生物效应的光谱响应数字化模型研究[D].上海: 复旦大学,2011,56-57.

    JU Jia-qi. Research on digitalized model of spectral response for biological effects of lighting[D]. Shanghai: Fudan university, 2011, 56-57.

[8] BRAINARD G C, HANIFIN J P, GREESON J M, et al. Action spectrum for melatonin regulation in humans: evidence for a novel circadian photoreceptor[J]. Journal of Neuroscience, 2001, 21(16): 6405- 6412.

[9] 宋丽妍, 李俊凯, 牟同升.以发光二极管为背光源的平板显示对人体非视觉的影响[J].光子学报, 2013,42(7): 768-771.

    SONG Li-yan, LI Jing-kai, MOU Tong-sheng. Non-Visual effects of flat panel display with light emitting diode backlight on human[J]. Acta Photonica Sinica, 2013, 42(7): 768-771.

[10] ANDREI V A, ALEXANDER L Z, MIKHAIL N M. Concerning biological equivalent of radiation of light emitting diode and lamp light sources with correlated color temperature from 1800K up to 10000K[J]. Light & Engineering, 2012, 20(3): 9-14.

[11] 国家质检总局, 国家标委会. GB/T 20145-2006 灯和灯系统的光生物安全性[S].北京: 中国标准出版社, 2006年3月.

    State Administration of Quality Supervision, Inspection and Quarantine, National Standardization Committee. GB/T 20145-2006 The biological safety of light and lighting system[S]. Beijing: China Standard Press 2006,3.

[12] 李倩,黄艳,蔡春锋.照明产品的光生物安全探讨及测试技术新进展[J]. 照明工程学报, 2013,24(S1): 111-114.

    LI Qian, HUANG Yan, CAI Chun-feng. Investigation on the photobiological safety assessment of lighting products[J]. China Illuminating Engineering Journal, 2013, 24(S1): 111-114.

[13] 饶丰,杨武. 大功率LED蓝光危害随点灯条件的变化[J].科学技术与工程, 2013,13(23): 154-157.

    RAO Feng, YANG Wu. Change of blue light hazard of high power LEDs with lighting condition[J]. Science Technology and Engineering, 2013, 13(23): 154-157.

[14] BLOCK J. The IESNA Lighting Handbook[M]. 9th Edition. New York: IESNA (Illuminating Engineers Society of North America), 2000, 184.

[15] KESSEL L, JESPER H L, KRISTINA H, et al. Age-related changes in the transmission properties of the human lens and their relevance to circadian entrainment[J]. Journal of Cataract Refractive Surgery, 2010, 36(2): 308-312.

[16] ARTGAS J M, FELIPE A, NAVEA A, et al. Spectral transmission of the human crystalline lens in adult and elderly persons: color and total transmission of visible light[J]. Investigative Ophthalmology & Visual Science, 2012, 53(7): 4076-4084.

[17] 饶丰 徐安成 朱锡芳. 基于相对光谱差异的非接触式LED结温测量方法[J]. 光子学报,2014,43(9): 09120003.

    RAO Feng, XU An-cheng, ZHU Xi-fang. A non-contact method for determining junction temperature of LED based on the relative spectral difference[J]. Acta Photonica Sinica, 2014, 43(9): 09120003.

[18] 张玉芳,马剑.老年人适宜阅读照明条件的研究[J].中国老年学杂志,2007, 12(27): 2231-2234.

    ZHAN Yu-fang, MA Jian. The experiment and research of reading lighting environment for the elderly[J]. Chinese Journal of Gerontology, 2007, 12(27): 2231-2234.

饶丰, 朱锡芳, 徐安成, 褚静, 张燕. LED背光显示器对不同年龄人视网膜照度、节律效应和蓝光危害的影响[J]. 光子学报, 2015, 44(4): 0417003. RAO Feng, ZHU Xi-fang, XU An-cheng, CHU Jing, ZHANG Yan. Effect of Retina Illuminance, Circadian Rhythm and Blue Light Hazard of LED Backlight Display on the Human of Different Ages[J]. ACTA PHOTONICA SINICA, 2015, 44(4): 0417003.

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