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Sleep Architecture When Sleeping at an Unusual Circadian Time and Associations with Insulin Sensitivity

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TLDR
Circadian misalignment, both a phase advance and a phase delay, significantly changed sleep architecture and resulted in a shift in rem sleep, which was associated with dysregulation of the HPA-axis and reduced insulin sensitivity.
Abstract
Circadian misalignment affects total sleep time, but it may also affect sleep architecture. The objectives of this study were to examine intra-individual effects of circadian misalignment on sleep architecture and inter-individual relationships between sleep stages, cortisol levels and insulin sensitivity. Thirteen subjects (7 men, 6 women, age: 24.3±2.5 y; BMI: 23.6±1.7 kg/m2) stayed in a time blinded respiration chamber during three light-entrained circadian cycles (3x21h and 3x27h) resulting in a phase advance and a phase delay. Sleep was polysomnographically recorded. Blood and salivary samples were collected to determine glucose, insulin and cortisol concentrations. Intra-individually, a phase advance decreased rapid eye movement (REM) sleep and slow-wave sleep (SWS), increased time awake, decreased sleep and REM sleep latency compared to the 24h cycle. A phase delay increased REM sleep, decreased stage 2 sleep, increased time awake, decreased sleep and REM sleep latency compared to the 24h cycle. Moreover, circadian misalignment changed REM sleep distribution with a relatively shorter REM sleep during the second part of the night. Inter-individually, REM sleep was inversely associated with cortisol levels and HOMA-IR index. Circadian misalignment, both a phase advance and a phase delay, significantly changed sleep architecture and resulted in a shift in rem sleep. Inter-individually, shorter REM sleep during the second part of the night was associated with dysregulation of the HPA-axis and reduced insulin sensitivity. Trial Registration: International Clinical Trials Registry Platform NTR2926 http://apps.who.int/trialsearch/

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Circadian misalignment and health

TL;DR: The role of circadian misalignment as a risk factor for disease in the general population and in clinical populations, including circadian rhythm sleep disorders and psychiatric disorders is described.
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Circadian System and Glucose Metabolism: Implications for Physiology and Disease

TL;DR: An in-depth understanding of the mechanisms underlying glucose regulation by the circadian system and its disturbance may help in the development of therapeutic interventions against the deleterious health consequences of circadian disruption.
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The Impact of Sleep and Circadian Disturbance on Hormones and Metabolism

TL;DR: The regulation and metabolism of several hormones are influenced by interactions between the effects of sleep and the intrinsic circadian system; growth hormone, melatonin, cortisol, leptin, and ghrelin levels are highly correlated with sleep and circadian rhythmicity.
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The Association between Social Jetlag, the Metabolic Syndrome, and Type 2 Diabetes Mellitus in the General Population : the New Hoorn study

TL;DR: In this article, the association of social jetlag with metabolic syndrome and type 2 diabetes mellitus was examined in a large-scale study, and the association was shown to be associated with the metabolic consequences of jetlag.
Book ChapterDOI

Circadian Rhythms in Diet-Induced Obesity.

TL;DR: Changing the time of feeding alone can greatly affect body weight and shift work is associated with increased risk for obesity, diabetes and cardio-vascular diseases as a result of unusual eating time and disruption of circadian rhythm.
References
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Journal ArticleDOI

A Manual of Standardized Terminology, Techniques and Scoring System for Sleep Stages of Human Subjects.

TL;DR: Techniques of recording, scoring, and doubtful records are carefully considered, and Recommendations for abbreviations, types of pictorial representation, order of polygraphic tracings are suggested.
Book

Principles and Practice of Sleep Medicine

TL;DR: Part 1: Normal Sleep and Its Variations; Part 2: Abnormal Sleep.
Journal ArticleDOI

Adverse metabolic and cardiovascular consequences of circadian misalignment

TL;DR: The findings demonstrate the adverse cardiometabolic implications of circadian misalignment, as occurs acutely with jet lag and chronically with shift work, on metabolic, autonomic, and endocrine predictors of obesity, diabetes, and cardiovascular risk.
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