Cardio-autonomic control and wellbeing due to oscillating color light exposure (original) (raw)

The inner clock—Blue light sets the human rhythm

Christian Lappe

Journal of Biophotonics, 2019

View PDFchevron_right

Daytime Exposure to Blue Light Alters Cardiovascular Circadian Rhythms, Electrolyte Excretion and Melatonin Production

Анна Брык, Mikhail Blagonravov

Pathopysiology, 2022

View PDFchevron_right

High Sensitivity of Human Melatonin, Alertness, Thermoregulation, and Heart Rate to Short Wavelength Light

Kurt Kräuchi

The Journal of Clinical Endocrinology & Metabolism, 2005

View PDFchevron_right

The Influence of Light Wavelength on Human HPA Axis Rhythms: A Systematic Review

Sheila Crewther

Life

View PDFchevron_right

Suppression of vagal cardiac modulation by blue light in healthy subjects

Junichiro Hayano

Journal of physiological anthropology, 2016

View PDFchevron_right

The Effects of Red and Blue Lights on Circadian Variations in Cortisol, Alpha Amylase, and Melatonin

Mariana Figueiro

International Journal of Endocrinology, 2010

View PDFchevron_right

Enhancement of autonomic and psychomotor arousal by exposures to blue wavelength light: importance of both absolute and relative contents of melanopic component

Junichiro Hayano

Journal of physiological anthropology, 2017

View PDFchevron_right

A train of blue light pulses delivered through closed eyelids suppresses melatonin and phase shifts the human circadian system

Mariana Figueiro

Nature and Science of Sleep, 2013

View PDFchevron_right

Spectral modulation attenuates molecular, endocrine, and neurobehavioral disruption induced by nocturnal light exposure

Colin Shapiro

AJP: Endocrinology and Metabolism, 2011

View PDFchevron_right

Sensitivity of the Human Circadian System to Short-Wavelength (420-Nm) Light

Gena Glickman, Jeffrey Greeson

Journal of Biological …, 2008

View PDFchevron_right

Difference in autonomic nervous effect of blue light depending on the angle of incidence on the eye

Junichiro Hayano

2020

View PDFchevron_right

Chapter 3 Blue light suppresses human sleepiness

Serge Daan, Marijke Gordijn

View PDFchevron_right

Chronic artificial blue-enriched white light is an effective countermeasure to delayed circadian phase and neurobehavioral decrements

Luc Schlangen

PloS one, 2014

View PDFchevron_right

Changes in the colour of light cue circadian activity

Jay Neitz

Animal Behaviour, 2012

View PDFchevron_right

Physiological and Psychological Response to Colored Light

Larry Honig

2009

View PDFchevron_right

Spectral sensitivity of the circadian system

John D. Bullough

View PDFchevron_right

Short Wavelength Enrichment of Polychromatic Light Enhances Human Melatonin Suppression Potency

Alan Kubey, Melissa Ayers

Journal of pineal research, 2015

View PDFchevron_right

The Influence of Colored Light on Heart Rate Variability and Human Discomfort

Luigi Bregant

2021

View PDFchevron_right

BIOLOGICAL RHYTHMS: Enhanced: Tweaking the Human Circadian Clock with Light

Michael Terman

Science, 1998

View PDFchevron_right

Global rise of potential health hazards caused by blue light-induced circadian disruption in modern aging societies

Paul Bernstein

NPJ aging and mechanisms of disease, 2017

View PDFchevron_right

Impact of Colored Light on Cardiorespiratory Coordination

Dirk Cysarz

Evidence-Based Complementary and Alternative Medicine, 2013

View PDFchevron_right

Effects of Red and Blue Light on the Cardiac Autonomic Nervous System

Wilfried Pohl

Journal of Integrative Cardiology Open Access, 2020

View PDFchevron_right

Blue-enriched office light competes with natural light as a zeitgeber

Till Roenneberg, Céline Vetter

Scandinavian Journal of Work, Environment & Health, 2011

View PDFchevron_right

A Review of Human Physiological Responses to Light: Implications for the Development of Integrative Lighting Solutions

Gena Glickman

LEUKOS

View PDFchevron_right