scholarly article | Q13442814 |
P356 | DOI | 10.1017/S0029665116000227 |
P698 | PubMed publication ID | 27117840 |
P50 | author | Margriet S Westerterp-Plantenga | Q90224198 |
P2860 | cites work | Short sleep duration is associated with reduced leptin, elevated ghrelin, and increased body mass index | Q21144740 |
Insufficient Sleep Undermines Dietary Efforts to Reduce Adiposity | Q21558331 | ||
Impact of sleep debt on metabolic and endocrine function | Q23731787 | ||
Entrainment of the diurnal rhythm of plasma leptin to meal timing | Q24561500 | ||
Adverse metabolic and cardiovascular consequences of circadian misalignment | Q24656239 | ||
Children's sleep needs: is there sufficient evidence to recommend optimal sleep for children? | Q27011860 | ||
Acute effects on metabolism and appetite profile of one meal difference in the lower range of meal frequency | Q28112003 | ||
Sleep curtailment is accompanied by increased intake of calories from snacks | Q28387003 | ||
Metabolic effects of reducing rate of glucose ingestion by single bolus versus continuous sipping | Q68518003 | ||
Metabolic effects of continuous feeding | Q68537034 | ||
Effect of the pattern of food intake on human energy metabolism | Q70480416 | ||
Effect of meal frequency on blood glucose, insulin, and free fatty acids in NIDDM subjects | Q70535616 | ||
Meal-frequency effects on plasma hormone concentrations and cholesterol synthesis in humans | Q70740835 | ||
Habitual meal frequency in relation to resting and activity-induced energy expenditure in human subjects: the role of fat-free mass | Q73399927 | ||
Comparison of the effects of two weeks' intervention with different meal frequencies on glucose metabolism, insulin sensitivity and lipid levels in non-insulin-dependent diabetic patients | Q73672446 | ||
Regulation of average 24h human plasma leptin level; the influence of exercise and physiological changes in energy balance | Q74608294 | ||
Habitual meal frequency and energy intake regulation in partially temporally isolated men | Q77488380 | ||
Altered postprandial hormone and metabolic responses in a simulated shift work environment | Q77657347 | ||
Appetite and blood glucose profiles in humans after glycogen-depleting exercise | Q78253308 | ||
A circulating ghrelin mimetic attenuates light-induced phase delay of mice and light-induced Fos expression in the suprachiasmatic nucleus of rats | Q81085178 | ||
Consequence of omitting or adding a meal in man on body composition, food intake, and metabolism | Q83005539 | ||
A dose-response study of sleep loss and spontaneous sleep termination | Q49012941 | ||
Sleep duration and eating behaviors of college students | Q49018471 | ||
The effects of a restricted sleep regime on the composition of sleep and on performance | Q49073519 | ||
Circadian system heritability as assessed by wrist temperature: a twin study. | Q51040082 | ||
Beneficial metabolic effects of regular meal frequency on dietary thermogenesis, insulin sensitivity, and fasting lipid profiles in healthy obese women. | Q51523801 | ||
Effect of isoenergetic intake of three or nine meals on plasma lipoproteins and glucose metabolism. | Q51601722 | ||
Decreased thermic effect of food after an irregular compared with a regular meal pattern in healthy lean women | Q57420277 | ||
Effects of partial sleep deprivation on food consumption and food choice | Q60140812 | ||
Secretory granules of endocrine and chief cells of human stomach mucosa contain leptin | Q61316840 | ||
Sleep disorders and the development of insulin resistance and obesity | Q30431791 | ||
Age-related changes in slow wave sleep and REM sleep and relationship with growth hormone and cortisol levels in healthy men. | Q33913330 | ||
A preprandial rise in plasma ghrelin levels suggests a role in meal initiation in humans | Q34085069 | ||
Orexigenic action of peripheral ghrelin is mediated by neuropeptide Y and agouti-related protein | Q34298671 | ||
Acute sleep deprivation increases portion size and affects food choice in young men. | Q34328897 | ||
Role of sleep duration in the regulation of glucose metabolism and appetite | Q34479944 | ||
High-fat diet disrupts behavioral and molecular circadian rhythms in mice | Q34710085 | ||
A single night of sleep deprivation increases ghrelin levels and feelings of hunger in normal-weight healthy men. | Q34787461 | ||
Association of short and long sleep durations with insulin sensitivity in adolescents | Q34793037 | ||
Endocrinology of male puberty | Q34909826 | ||
Endocrinology of female puberty | Q34912391 | ||
Sleep architecture when sleeping at an unusual circadian time and associations with insulin sensitivity | Q34951798 | ||
Circadian rhythms, sleep, and metabolism | Q35015762 | ||
Ghrelin, an orexigenic signaling molecule from the gastrointestinal tract | Q35026109 | ||
Cross-sectional associations between measures of sleep and markers of glucose metabolism among subjects with and without diabetes: the Coronary Artery Risk Development in Young Adults (CARDIA) Sleep Study | Q35043822 | ||
Short sleep duration increases energy intakes but does not change energy expenditure in normal-weight individuals | Q35125324 | ||
Peripheral circadian oscillators in mammals: time and food | Q35163407 | ||
The fall in leptin concentration is a major determinant of the metabolic adaptation induced by caloric restriction independently of the changes in leptin circadian rhythms | Q35198494 | ||
Sleep architecture and glucose and insulin homeostasis in obese adolescents | Q35408090 | ||
Circadian Aspects of Postprandial Metabolism | Q35554777 | ||
The chronobiology, etiology and pathophysiology of obesity. | Q35597985 | ||
Resetting mechanism of central and peripheral circadian clocks in mammals | Q35760492 | ||
Associations of salivary cortisol levels with inflammatory markers: the Multi-Ethnic Study of Atherosclerosis | Q35981420 | ||
Physical activity, and not fat mass is a primary predictor of circadian parameters in young men. | Q35997323 | ||
Sleep duration and insulin resistance in healthy black and white adolescents | Q36238094 | ||
Short sleep duration, glucose dysregulation and hormonal regulation of appetite in men and women | Q36304792 | ||
The role of sleep duration in the regulation of energy balance: effects on energy intakes and expenditure | Q36477105 | ||
The association between sleep duration and weight gain in adults: a 6-year prospective study from the Quebec Family Study | Q36519078 | ||
Sleep and energy balance: Interactive homeostatic systems | Q36595654 | ||
Sleep and the metabolic syndrome | Q36645393 | ||
Sleep in mood disorders | Q36659587 | ||
Circadian clocks: setting time by food | Q36704013 | ||
The relationship between nutrition and circadian rhythms in mammals | Q36798750 | ||
Acute Sleep Restriction Reduces Insulin Sensitivity in Adolescent Boys | Q36891760 | ||
Sleep and circadian rhythms: key components in the regulation of energy metabolism | Q36914056 | ||
Circadian timing of REM sleep is coupled to an oscillator within the dorsomedial suprachiasmatic nucleus | Q37219957 | ||
The circadian basis of mood disorders: recent developments and treatment implications | Q37229047 | ||
Sleep and metabolism: shared circuits, new connections | Q37304452 | ||
Energy-responsive timekeeping | Q37369717 | ||
Dietary protein, weight loss, and weight maintenance | Q37463187 | ||
Role of biological rhythms in gastrointestinal health and disease | Q37607119 | ||
Gastrointestinal disorders among shift workers. | Q37681334 | ||
Shift work and metabolic syndrome, diabetes mellitus and ischaemic heart disease | Q37799166 | ||
Sleep disturbances and insulin resistance | Q37939268 | ||
The role of the circadian clock system in nutrition and metabolism. | Q38016990 | ||
Chronobiology, endocrinology, and energy- and food-reward homeostasis | Q38079596 | ||
The stomach is a source of leptin | Q38333780 | ||
Influence of partial sleep deprivation on energy balance and insulin sensitivity in healthy women | Q40139350 | ||
Nutrition principles and diabetes. A role for "lente carbohydrate"? | Q41043936 | ||
Circadian timing of food intake contributes to weight gain | Q41129706 | ||
Sympathetic activity and blood pressure in the sleep apnea syndrome | Q41650207 | ||
Leptin in the human stomach. | Q43085850 | ||
Impact of acute sleep restriction on cortisol and leptin levels in young women | Q43170677 | ||
Shift work and metabolic syndrome: respective impacts of job strain, physical activity, and dietary rhythms | Q43438618 | ||
High-fat feeding alters the clock synchronization to light | Q43831034 | ||
Effects of sleep fragmentation on appetite and related hormone concentrations over 24 h in healthy men. | Q44125696 | ||
Appetite regulation by ghrelin - a novel neuro-endocrine gastric peptide hormone in the gut-brain-axis | Q44586698 | ||
Concomitant changes in sleep duration and body weight and body composition during weight loss and 3-mo weight maintenance | Q44838470 | ||
Nibbling versus gorging: metabolic advantages of increased meal frequency | Q44893263 | ||
Regular meal frequency creates more appropriate insulin sensitivity and lipid profiles compared with irregular meal frequency in healthy lean women. | Q44954444 | ||
Association between sleep duration and overweight: the importance of parenting. | Q45972417 | ||
Simultaneous and continuous 24-hour plasma and cerebrospinal fluid leptin measurements: dissociation of concentrations in central and peripheral compartments. | Q45998669 | ||
Short-term treatment with bromocriptine improves impaired circadian growth hormone secretion in obese premenopausal women. | Q46535449 | ||
The association between pubertal status and sleep duration and quality among a nationally representative sample of U. S. adolescents | Q47266558 | ||
The effect of meal frequency and protein concentration on the composition of the weight lost by obese subjects | Q47285789 | ||
Sleep duration and body-weight development during puberty in a Dutch children cohort | Q47419051 | ||
Effect of a phase advance and phase delay of the 24-h cycle on energy metabolism, appetite, and related hormones | Q48226879 | ||
Sleeping habits predict the magnitude of fat loss in adults exposed to moderate caloric restriction | Q48230060 | ||
Ghrelin effects on the circadian system of mice. | Q48241733 | ||
Short-term sleep loss decreases physical activity under free-living conditions but does not increase food intake under time-deprived laboratory conditions in healthy men. | Q48251024 | ||
Effects of sleep fragmentation in healthy men on energy expenditure, substrate oxidation, physical activity, and exhaustion measured over 48 h in a respiratory chamber | Q48291265 | ||
Longer sleep duration associates with lower adiposity gain in adult short sleepers | Q48298848 | ||
The distribution and mechanism of action of ghrelin in the CNS demonstrates a novel hypothalamic circuit regulating energy homeostasis | Q48382703 | ||
Circadian misalignment in major depressive disorder | Q48397743 | ||
Shorter sleep duration is associated with increased risk for being overweight at ages 9 to 12 years | Q48452805 | ||
Partial sleep deprivation: impact on the architecture and quality of sleep | Q48454863 | ||
Circadian control of insulin secretion is independent of the temporal distribution of feeding | Q48497367 | ||
Daytime variations in glucose tolerance in people with impaired glucose tolerance | Q48499234 | ||
Sleep and sleep habits from childhood to young adulthood over a 10-year period | Q48655970 | ||
Repeated partial sleep deprivation progressively changes in EEG during sleep and wakefulness | Q48874878 | ||
P433 | issue | 4 | |
P921 | main subject | circadian rhythm | Q208353 |
P304 | page(s) | 431-439 | |
P577 | publication date | 2016-04-27 | |
P1433 | published in | Proceedings of the Nutrition Society | Q15817594 |
P1476 | title | Sleep, circadian rhythm and body weight: parallel developments | |
P478 | volume | 75 |
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