Evening exposure to a light-emitting diodes (LED)-backlit computer screen affects circadian physiology and cognitive performance

被引:458
作者
Cajochen, Christian [1 ]
Frey, Sylvia [1 ]
Anders, Doreen [1 ]
Spaeti, Jakub [1 ]
Bues, Matthias [3 ]
Pross, Achim [3 ]
Mager, Ralph [2 ]
Wirz-Justice, Anna [1 ]
Stefani, Oliver [3 ]
机构
[1] Univ Basel, Hosp Psychiat, Ctr Chronobiol, CH-4012 Basel, Switzerland
[2] Univ Basel, Hosp Psychiat, Ctr Appl Technol Neurosci, CH-4012 Basel, Switzerland
[3] Univ Stuttgart IAT, Fraunhofer IAO, Competence Team Visual Technol, Stuttgart, Germany
关键词
nonvisual effects of light; spectral analysis; shift work; melatonin; alertness; SHORT-WAVELENGTH LIGHT; MELATONIN REGULATION; HIGH-SENSITIVITY; ACTION SPECTRUM; BRIGHT LIGHT; HEART-RATE; SLEEP; HUMANS; NIGHT; PHOTORECEPTOR;
D O I
10.1152/japplphysiol.00165.2011
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Cajochen C, Frey S, Anders D, Spati J, Bues M, Pross A, Mager R, Wirz-Justice A, Stefani O. Evening exposure to a light-emitting diodes (LED)-backlit computer screen affects circadian physiology and cognitive performance. J Appl Physiol 110: 1432-1438, 2011. First published March 17, 2011; doi: 10.1152/japplphysiol.00165.2011.-Many people spend an increasing amount of time in front of computer screens equipped with light-emitting diodes (LED) with a short wavelength (blue range). Thus we investigated the repercussions on melatonin (a marker of the circadian clock), alertness, and cognitive performance levels in 13 young male volunteers under controlled laboratory conditions in a balanced crossover design. A 5-h evening exposure to a white LED-backlit screen with more than twice as much 464 nm light emission {irradiance of 0,241 Watt/(steradian X m(2)) [W/(sr X m(2))], 2.1 X 10(13) photons/(cm(2) X s), in the wavelength range of 454 and 474 nm} than a white non-LED-backlit screen [ irradiance of 0,099 W/(sr X m(2)), 0.7 X 10(13) photons/(cm(2) X s), in the wavelength range of 454 and 474 nm] elicited a significant suppression of the evening rise in endogenous melatonin and subjective as well as objective sleepiness, as indexed by a reduced incidence of slow eye movements and EEG low-frequency activity (1-7 Hz) in frontal brain regions. Concomitantly, sustained attention, as determined by the GO/NOGO task; working memory/attention, as assessed by "explicit timing"; and declarative memory performance in a word-learning paradigm were significantly enhanced in the LED-backlit screen compared with the non-LED condition. Screen quality and visual comfort were rated the same in both screen conditions, whereas the non-LED screen tended to be considered brighter. Our data indicate that the spectral profile of light emitted by computer screens impacts on circadian physiology, alertness, and cognitive performance levels. The challenge will be to design a computer screen with a spectral profile that can be individually programmed to add timed, essential light information to the circadian system in humans.
引用
收藏
页码:1432 / 1438
页数:7
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