Abstract

Light exerts a wide range of effects on mammalian physiology and behavior. As well as synchronizing circadian rhythms to the external environment, light has been shown to modulate autonomic and neuroendocrine responses as well as regulating sleep and influencing cognitive processes such as attention, arousal, and performance. The last two decades have seen major advances in our understanding of the retinal photoreceptors that mediate these non-image forming responses to light, as well as the neural pathways and molecular mechanisms by which circadian rhythms are generated and entrained to the external light/dark (LD) cycle. By contrast, our understanding of the mechanisms by which lighting influences cognitive processes is more equivocal. The effects of light on different cognitive processes are complex. As well as the direct effects of light on alertness, indirect effects may also occur due to disrupted circadian entrainment. Despite the widespread use of disrupted LD cycles to study the role circadian rhythms on cognition, the different experimental protocols used have subtly different effects on circadian function which are not always comparable. Moreover, these protocols will also disrupt sleep and alter physiological arousal, both of which are known to modulate cognition. Studies have used different assays that are dependent on different cognitive and sensory processes, which may also contribute to their variable findings. Here, we propose that studies addressing the effects of different lighting conditions on cognitive processes must also account for their effects on circadian rhythms, sleep, and arousal if we are to fully understand the physiological basis of these responses.

Highlights

  • Light exerts profound effects on physiology and behavior, including entraining circadian rhythms as well as having direct effects on body temperature, melatonin, cortisol, and the cortical electroencephalogram (EEG) [1,2,3,4]

  • Extended periods of abnormal light exposure can result in circadian disruption, which has been implicated in changes in metabolism, Light and Cognition sleep, and cognition as well as increasing the risk of metabolic and cardiovascular disease [6]

  • We summarize the effects of circadian disruption on cognition in the context of these different mechanisms, with a particular focus on how abnormal light exposure may influence cognitive function

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Summary

INTRODUCTION

Light exerts profound effects on physiology and behavior, including entraining circadian rhythms as well as having direct effects on body temperature, melatonin, cortisol, and the cortical electroencephalogram (EEG) [1,2,3,4]. These effects of light are of particular concern in the modern 24/7 society as inappropriate light exposure affects an increasing proportion of the populace. We summarize the effects of circadian disruption on cognition in the context of these different mechanisms, with a particular focus on how abnormal light exposure may influence cognitive function

CIRCADIAN RHYTHMS
The Molecular Circadian Clock
Light Input to the Circadian Clock
Clock Outputs and Peripheral Clocks
Homeostatic and Circadian Regulation of Sleep
Direct Effects of Light on Sleep
Circadian Regulation of Cognitive Processes
Direct Effects of Light on Cognitive Processes
Sleep and Cognitive Processes
Effects of Arousal on Cognitive Processes
CIRCADIAN DISRUPTION
Constant Light
Disruptive Phase Shiftb
Jet Lag
Dim Light at Night
Disruptive Phase Shift
Findings
FUTURE PERSPECTIVES

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