Modelling the spectral sensitivity of the human circadian system
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MS Rea | MG Figueiro | A Bierman | R Hamner | M. Rea | A. Bierman | M. Figueiro | R. Hamner
[1] Gunther Wyszecki,et al. Color Science: Concepts and Methods, Quantitative Data and Formulae, 2nd Edition , 2000 .
[2] Mark S. Rea,et al. Retinal mechanisms determine the subadditive response to polychromatic light by the human circadian system , 2008, Neuroscience Letters.
[3] D. Berson,et al. Phototransduction by Retinal Ganglion Cells That Set the Circadian Clock , 2002, Science.
[4] J. Pokorny,et al. Melanopsin-expressing ganglion cells in primate retina signal colour and irradiance and project to the LGN , 2005, Nature.
[5] MS Rea,et al. Toward a model of outdoor lighting scene brightness , 2011 .
[6] M. Biel,et al. Melanopsin and rod–cone photoreceptive systems account for all major accessory visual functions in mice , 2003, Nature.
[7] Kazutomo Yunokuchi,et al. Contribution of human melanopsin retinal ganglion cells to steady-state pupil responses , 2010, Proceedings of the Royal Society B: Biological Sciences.
[8] A. Wirz-Justice,et al. High sensitivity of human melatonin, alertness, thermoregulation, and heart rate to short wavelength light. , 2005, The Journal of clinical endocrinology and metabolism.
[9] John D. Bullough,et al. A model of phototransduction by the human circadian system , 2005, Brain Research Reviews.
[10] C. Eastman,et al. A Compromise Phase Position for Permanent Night Shift Workers: Circadian Phase after Two Night Shifts with Scheduled Sleep and Light/Dark Exposure , 2006, Chronobiology international.
[11] Mark S Rea,et al. Implications of controlled short-wavelength light exposure for sleep in older adults , 2011, BMC Research Notes.
[12] M. Mirmiran,et al. Indirect bright light improves circadian rest-activity rhythm disturbances in demented patients , 1997, Biological Psychiatry.
[13] J. Kornhuber,et al. Blue light improves cognitive performance , 2007, Journal of Neural Transmission.
[14] D. Skene,et al. An action spectrum for melatonin suppression: evidence for a novel non‐rod, non‐cone photoreceptor system in humans , 2001, The Journal of physiology.
[15] R. Reiter,et al. Obesity and metabolic syndrome: Association with chronodisruption, sleep deprivation, and melatonin suppression , 2012, Annals of medicine.
[16] D M Snodderly,et al. The macular pigment. I. Absorbance spectra, localization, and discrimination from other yellow pigments in primate retinas. , 1984, Investigative ophthalmology & visual science.
[17] Victoria Revell,et al. A “Melanopic” Spectral Efficiency Function Predicts the Sensitivity of Melanopsin Photoreceptors to Polychromatic Lights , 2011, Journal of biological rhythms.
[18] John D. Bullough,et al. Phototransduction for human melatonin suppression , 2002, Journal of pineal research.
[19] J. Pokorny,et al. Spectral sensitivity of the foveal cone photopigments between 400 and 500 nm , 1975, Vision Research.
[20] John D. Bullough,et al. A new approach to understanding the impact of circadian disruption on human health , 2008, Journal of circadian rhythms.
[21] H. Wright,et al. EFFECT OF LIGHT WAVELENGTH ON SUPPRESSION AND PHASE DELAY OF THE MELATONIN RHYTHM , 2001, Chronobiology international.
[22] Iain M McIntyre,et al. Human Melatonin Suppression by Light is Intensity Dependent , 1989, Journal of pineal research.
[23] John D. Bullough,et al. Circadian light , 2010, Journal of circadian rhythms.
[24] K. Yau,et al. Melanopsin-Containing Retinal Ganglion Cells: Architecture, Projections, and Intrinsic Photosensitivity , 2002, Science.
[25] Christian Cajochen,et al. A Phase Response Curve to Single Bright Light Pulses in Human Subjects , 2003, The Journal of physiology.
[26] G. Brainard,et al. Action Spectrum for Melatonin Regulation in Humans: Evidence for a Novel Circadian Photoreceptor , 2001, The Journal of Neuroscience.
[27] C. Eastman,et al. A compromise circadian phase position for permanent night work improves mood, fatigue, and performance. , 2009, Sleep.
[28] J. D. Mollon,et al. Rayleigh matches and unique green , 1995, Vision Research.
[29] G. E. Pickard,et al. Melanopsin retinal ganglion cells receive bipolar and amacrine cell synapses , 2003, The Journal of comparative neurology.
[30] David Sliney,et al. Sensitivity of the Human Circadian System to Short-Wavelength (420-nm) Light , 2008, Journal of biological rhythms.
[31] R. Foster,et al. Sleep and circadian rhythm disruption in psychiatric and neurodegenerative disease , 2010, Nature Reviews Neuroscience.