Non-visual effects of light: How to use light to promote circadian entrainment and elicit alertness MG Figueiro, R Nagare, LLA Price Lighting Research & Technology 50 (1), 38-62, 2018 | 186 | 2018 |
Does the iPad Night Shift mode reduce melatonin suppression? R Nagare, B Plitnick, MG Figueiro Lighting Research & Technology 51 (3), 373-383, 2019 | 92 | 2019 |
Effect of exposure duration and light spectra on nighttime melatonin suppression in adolescents and adults R Nagare, B Plitnick, MG Figueiro Lighting Research & Technology 51 (4), 530-543, 2019 | 84 | 2019 |
Modeling circadian phototransduction: Quantitative predictions of psychophysical data MS Rea, R Nagare, MG Figueiro Frontiers in neuroscience 15, 615322, 2021 | 73 | 2021 |
Nocturnal melatonin suppression by adolescents and adults for different levels, spectra, and durations of light exposure R Nagare, MS Rea, B Plitnick, MG Figueiro Journal of biological rhythms 34 (2), 178-194, 2019 | 60 | 2019 |
Access to daylight at home improves circadian alignment, sleep, and mental health in healthy adults: A crossover study R Nagare, M Woo, P MacNaughton, B Plitnick, B Tinianov, M Figueiro International journal of environmental research and public health 18 (19), 9980, 2021 | 55 | 2021 |
Modeling circadian phototransduction: retinal neurophysiology and neuroanatomy MS Rea, R Nagare, MG Figueiro Frontiers in Neuroscience 14, 615305, 2021 | 47 | 2021 |
Effect of white light devoid of “cyan” spectrum radiation on nighttime melatonin suppression over a 1-h exposure duration R Nagare, MS Rea, B Plitnick, MG Figueiro Journal of biological rhythms 34 (2), 195-204, 2019 | 42 | 2019 |
Predictions of melatonin suppression during the early biological night and their implications for residential light exposures prior to sleeping MS Rea, R Nagare, MG Figueiro Scientific reports 10 (1), 14114, 2020 | 26 | 2020 |
Nighttime application of UV-C to control cucumber powdery mildew JS Patel, LC Radetsky, R Nagare, MS Rea Plant Health Progress 21 (1), 40-46, 2020 | 18 | 2020 |
Relative light sensitivities of four retinal hemi-fields for suppressing the synthesis of melatonin at night MS Rea, R Nagare, MG Figueiro Neurobiology of Sleep and Circadian Rhythms 10, 100066, 2021 | 12 | 2021 |
Robust light–dark patterns and reduced amyloid load in an Alzheimer’s disease transgenic mouse model R Nagare, B Possidente, S Lagalwar, MG Figueiro Scientific Reports 10 (1), 11436, 2020 | 12 | 2020 |
Spatial sensitivity of human circadian response: Melatonin suppression from on-axis and off-axis light exposures R Nagare, MS Rea, MG Figueiro Neurobiology of Sleep and Circadian Rhythms 11, 100071, 2021 | 8 | 2021 |
The circadian stimulus-oscillator model: Improvements to Kronauer’s model of the human circadian pacemaker MS Rea, R Nagare, A Bierman, MG Figueiro Frontiers in Neuroscience 16, 965525, 2022 | 6 | 2022 |
Corrigendum: modeling circadian phototransduction: quantitative predictions of psychophysical data MS Rea, R Nagare, MG Figueiro Frontiers in Neuroscience 16, 849800, 2022 | 6 | 2022 |
Supporting visual and non-visual lighting design without increasing discomfort glare or lighting power density MG Figueiro, JD Bullough, A Thayer, R Nagare, MS Rea Lighting Research & Technology 57 (1), 5-27, 2025 | 4 | 2025 |
The effect of the spectral content of a glare source and its background on discomfort glare R Nagare | 1 | 2017 |
Days to re-entrainment following the spring and autumn changes in local clock time: beyond simple heuristics MS Rea, R Nagare, JD Bullough, MG Figueiro Frontiers in Photonics 5, 1386703, 2024 | | 2024 |
Influence of Background Spectral Distribution on Perceptions of Discomfort Glare RM Nagare, JD Bullough SAE International Journal of Advances and Current Practices in Mobility 2 …, 2020 | | 2020 |
Reply to Prayag and Gronfier R Nagare, MS Rea, B Plitnick, MG Figueiro Journal of Biological Rhythms 34 (5), 564-565, 2019 | | 2019 |