Phase delaying the human circadian clock with blue-enriched polychromatic light
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Non-visual effects of light on melatonin, alertness and cognitive performance: can blue-enriched light keep us alert?The effect of lens aging and cataract surgery on circadian rhythmSpectral responses of the human circadian system depend on the irradiance and duration of exposure to light.Human phase response curves to three days of daily melatonin: 0.5 mg versus 3.0 mgCircadian rhythm phase shifts and endogenous free-running circadian period differ between African-Americans and European-AmericansHow to get a bigger dose of bright lightCan small shifts in circadian phase affect performance?Phase delaying the human circadian clock with a single light pulse and moderate delay of the sleep/dark episode: no influence of iris colorHuman phase response curve to intermittent blue light using a commercially available deviceCircadian rhythms of European and African-Americans after a large delay of sleep as in jet lag and night workMelatonin in the afternoons of a gradually advancing sleep schedule enhances the circadian rhythm phase advanceEffect of Light and Melatonin and Other Melatonin Receptor Agonists on Human Circadian PhysiologyShift work: health, performance and safety problems, traditional countermeasures, and innovative management strategies to reduce circadian misalignmentRacial differences in the human endogenous circadian periodLow-intensity blue-enriched white light (750 lux) and standard bright light (10,000 lux) are equally effective in treating SAD. A randomized controlled studyChronic artificial blue-enriched white light is an effective countermeasure to delayed circadian phase and neurobehavioral decrements.Tailored lighting intervention improves measures of sleep, depression, and agitation in persons with Alzheimer's disease and related dementia living in long-term care facilities.Effects of saliva collection using cotton swabs on melatonin enzyme immunoassay.Increased sensitivity to light-induced melatonin suppression in premenstrual dysphoric disorder.Light-induced changes of the circadian clock of humans: increasing duration is more effective than increasing light intensityEffectiveness of evening phototherapy for insomnia is reduced by bright daytime light exposureClinical Practice Guideline for the Treatment of Intrinsic Circadian Rhythm Sleep-Wake Disorders: Advanced Sleep-Wake Phase Disorder (ASWPD), Delayed Sleep-Wake Phase Disorder (DSWPD), Non-24-Hour Sleep-Wake Rhythm Disorder (N24SWD), and Irregular SShort wavelength light administered just prior to waking: a pilot studyEffects of Color Temperature and Brightness on Electroencephalogram Alpha Activity in a Polychromatic Light-emitting Diode.The effect of extended wake on postural control in young adults.Thermoregulatory effect in humans of suppressed endogenous melatonin by pre-sleep bright-light exposure in a cold environment.Human phase response curve to a single 6.5 h pulse of short-wavelength light.Spectral modulation attenuates molecular, endocrine, and neurobehavioral disruption induced by nocturnal light exposure.Examining the Behavioural Sleep-Wake Rhythm in Adults with Autism Spectrum Disorder and No Comorbid Intellectual Disability.Short-wavelength enrichment of polychromatic light enhances human melatonin suppression potency.Crosstalk between environmental light and internal time in humans.The impact of bright artificial white and 'blue-enriched' light on sleep and circadian phase during the polar winter.Suppression of salivary melatonin secretion under 100-Hz flickering and non-flickering blue lightThe Medical Subject Headings® thesaurus remains inaccurate and incomplete for electronic indexing and retrieval of chronobiologic references
P2860
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P2860
Phase delaying the human circadian clock with blue-enriched polychromatic light
description
2009 nî lūn-bûn
@nan
2009 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2009 թվականի մայիսին հրատարակված գիտական հոդված
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2009年の論文
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2009年学术文章
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2009年学术文章
@zh-cn
2009年学术文章
@zh-hans
2009年学术文章
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2009年学术文章
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2009年學術文章
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name
Phase delaying the human circadian clock with blue-enriched polychromatic light
@ast
Phase delaying the human circadian clock with blue-enriched polychromatic light
@en
Phase delaying the human circadian clock with blue-enriched polychromatic light
@nl
type
label
Phase delaying the human circadian clock with blue-enriched polychromatic light
@ast
Phase delaying the human circadian clock with blue-enriched polychromatic light
@en
Phase delaying the human circadian clock with blue-enriched polychromatic light
@nl
prefLabel
Phase delaying the human circadian clock with blue-enriched polychromatic light
@ast
Phase delaying the human circadian clock with blue-enriched polychromatic light
@en
Phase delaying the human circadian clock with blue-enriched polychromatic light
@nl
P2860
P3181
P1476
Phase delaying the human circadian clock with blue-enriched polychromatic light
@en
P2093
Mark R Smith
P2860
P304
P3181
P356
10.1080/07420520902927742
P407
P577
2009-05-01T00:00:00Z