Meal patterns across ten European countries – results from the European Prospective Investigation into Cancer and Nutrition (EPIC) calibration study
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E. Riboli | A. Tjønneland | E. Weiderpass | F. Ricceri | T. Key | A. Naska | A. Trichopoulou | H. Boeing | D. Palli | E. Sonestedt | W. Verschuren | V. Krogh | R. Tumino | N. Slimani | H. Ward | C. Lassale | P. Amiano | A. Olsen | A. Winkvist | M. Boutron‐Ruault | G. Fagherazzi | D. Aune | G. Masala | F. Mancini | T. Kühn | M. Brustad | M. Stepien | H. Freisling | J. Quirós | P. Orfanos | G. Skeie | V. Pala | M. Chirlaque | J. Huerta | L. Schwingshackl | A. Barricarte | M. Sánchez | I. Drake | D. Engeset | J. Quirós | M. Santucci de Magistris | P. Jakszyn | M. Rodríguez-Barranco | A. Perez-Cornago | J. Boer | U. Ericson | V. Katzke | M. Wennberg | M. Ocké | G. Buckland | A. Affret | E. Huseinovic | H. Forslund | M. Boutron-Ruault | Marga Ocké | Torill Jensen | R. Tumino | M. Magistris | Mk Park | AL Rostgaard-Hansen | T. Enget | CB Bonet | J. Dias | E. Riboli | Maria Wennberg | E. Ardanaz | Lukas Schwingshackl | Francesca Mancini | Anna Winkvist | Fanny Artaud
[1] A. Geelen,et al. Comparison of meal patterns across five European countries using standardized 24-h recall (GloboDiet) data from the EFCOVAL project , 2018, European Journal of Nutrition.
[2] J. Kaczmarek,et al. Time of day and eating behaviors are associated with the composition and function of the human gastrointestinal microbiota. , 2017, The American journal of clinical nutrition.
[3] Elizabeth B Klerman,et al. Later circadian timing of food intake is associated with increased body fat. , 2017, The American journal of clinical nutrition.
[4] F. Scheer,et al. Circadian Misalignment Increases C-Reactive Protein and Blood Pressure in Chronic Shift Workers , 2017, Journal of biological rhythms.
[5] J. Ard,et al. Meal Timing and Frequency: Implications for Cardiovascular Disease Prevention: A Scientific Statement From the American Heart Association. , 2017, Circulation.
[6] A. Timperio,et al. Temporal eating patterns: a latent class analysis approach , 2017, International Journal of Behavioral Nutrition and Physical Activity.
[7] A. Moran,et al. The Global Burden of Disease Study and the Preventable Burden of NCD. , 2016, Global heart.
[8] L. Karagounis,et al. Chrono-nutrition: a review of current evidence from observational studies on global trends in time-of-day of energy intake and its association with obesity , 2016, Proceedings of the Nutrition Society.
[9] L. Heilbronn,et al. Metabolic impacts of altering meal frequency and timing - Does when we eat matter? , 2016, Biochimie.
[10] Ashutosh Kumar Singh,et al. Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks, 1990–2015: a systematic analysis for the Global Burden of Disease Study 2015 , 2016, Lancet.
[11] Luca Busetto,et al. European Guidelines for Obesity Management in Adults , 2015, Obesity Facts.
[12] Dorothy D. Sears,et al. Frequency and Circadian Timing of Eating May Influence Biomarkers of Inflammation and Insulin Resistance Associated with Breast Cancer Risk , 2015, PloS one.
[13] Jeremiah Stamler,et al. The impact of eating frequency and time of intake on nutrient quality and Body Mass Index: the INTERMAP Study, a Population-Based Study. , 2015, Journal of the Academy of Nutrition and Dietetics.
[14] Anna Timperio,et al. Understanding meal patterns: definitions, methodology and impact on nutrient intake and diet quality , 2015, Nutrition Research Reviews.
[15] P. Chauvin,et al. Is There Still a French Eating Model? A Taxonomy of Eating Behaviors in Adults Living in the Paris Metropolitan Area in 2010 , 2015, PloS one.
[16] C. Berg,et al. The Influence of Portion Size and Timing of Meals on Weight Balance and Obesity , 2015, Current Obesity Reports.
[17] T. Lund,et al. Destructuration or continuity? The daily rhythm of eating in Denmark, Finland, Norway and Sweden in 1997 and 2012 , 2014, Appetite.
[18] F. Scheer,et al. Meal timing affects glucose tolerance, substrate oxidation and circadian-related variables: A randomized, crossover trial , 2014, International Journal of Obesity.
[19] G. Beccuti,et al. Consuming More of Daily Caloric Intake at Dinner Predisposes to Obesity. A 6-Year Population-Based Prospective Cohort Study , 2014, PloS one.
[20] M. Livingstone,et al. Eating frequency in relation to body mass index and waist circumference in British adults , 2014, International Journal of Obesity.
[21] F. Bellisle,et al. Meals and snacking, diet quality and energy balance , 2014, Physiology & Behavior.
[22] R. Mattes. Energy intake and obesity: Ingestive frequency outweighs portion size , 2014, Physiology & Behavior.
[23] S. McCarthy. Weekly patterns, diet quality and energy balance , 2014, Physiology & Behavior.
[24] M. Garaulet,et al. Timing of food intake and obesity: A novel association , 2014, Physiology & Behavior.
[25] D. Jakubowicz,et al. High Caloric intake at breakfast vs. dinner differentially influences weight loss of overweight and obese women , 2013, Obesity.
[26] M. Gerber,et al. Evaluating and adapting the Mediterranean diet for non-Mediterranean populations: a critical appraisal. , 2013, Nutrition reviews.
[27] E. Rimm,et al. Prospective Study of Breakfast Eating and Incident Coronary Heart Disease in a Cohort of Male US Health Professionals , 2013, Circulation.
[28] P. Chauvin,et al. Who still eats three meals a day? Findings from a quantitative survey in the Paris area , 2013, Appetite.
[29] F. Scheer,et al. Timing of food intake predicts weight loss effectiveness , 2013, International Journal of Obesity.
[30] R. Mattes,et al. Effects of fruit and vegetable, consumed in solid vs. beverage forms on acute and chronic appetitive responses in lean and obese adults , 2012, International Journal of Obesity.
[31] A. Chockalingam,et al. Meal frequency differentially alters postprandial triacylglycerol and insulin concentrations in obese women , 2012, Obesity.
[32] G. McCabe,et al. Beverage vs. Solid Fruits and Vegetables: Effects on Energy Intake and Body Weight , 2012, Obesity.
[33] M. Siegrist,et al. Snack frequency: associations with healthy and unhealthy food choices , 2012, Public Health Nutrition.
[34] F. Clavel-Chapelon,et al. Dietary reporting errors on 24 h recalls and dietary questionnaires are associated with BMI across six European countries as evaluated with recovery biomarkers for protein and potassium intake. , 2012, The British journal of nutrition.
[35] A. McTiernan,et al. Associations between snacking and weight loss and nutrient intake among postmenopausal overweight to obese women in a dietary weight-loss intervention. , 2011, Journal of the American Dietetic Association.
[36] An Pan,et al. Rotating Night Shift Work and Risk of Type 2 Diabetes: Two Prospective Cohort Studies in Women , 2011, PLoS medicine.
[37] Salvatore Panico,et al. Validity of a short questionnaire to assess physical activity in 10 European countries , 2011, European Journal of Epidemiology.
[38] M. Ocké,et al. Dutch National Food Consumption Survey 2007-2010 : Diet of children and adults aged 7 to 69 years , 2011 .
[39] Collin R. Payne,et al. “Is this a meal or snack?” Situational cues that drive perceptions , 2010, Appetite.
[40] F. Clavel-Chapelon,et al. Energy intake and sources of energy intake in the European Prospective Investigation into Cancer and Nutrition , 2009, European Journal of Clinical Nutrition.
[41] E. Riboli,et al. The evaluation of the diet/disease relation in the EPIC study: considerations for the calibration and the disease models. , 2008, International journal of epidemiology.
[42] N Slimani,et al. The EPIC nutrient database project (ENDB): a first attempt to standardize nutrient databases across the 10 European countries participating in the EPIC study , 2007, European Journal of Clinical Nutrition.
[43] C. Friedenreich,et al. Physical activity and risk of endometrial cancer: The European prospective investigation into cancer and nutrition , 2007, International journal of cancer.
[44] C. Pettinger,et al. Meal patterns and cooking practices in Southern France and Central England , 2006, Public Health Nutrition.
[45] H Pakkala,et al. Snacks as an element of energy intake and food consumption , 2006, European Journal of Clinical Nutrition.
[46] Mikael Fogelholm,et al. [Nordic nutrition recommendations]. , 2006, Ugeskrift for laeger.
[47] Jean M Kerver,et al. Meal and snack patterns are associated with dietary intake of energy and nutrients in US adults. , 2006, Journal of the American Dietetic Association.
[48] I. Mestdag. Disappearance of the traditional meal: Temporal, social and spatial destructuration , 2005, Appetite.
[49] L. Sjöström,et al. Snacking frequency in relation to energy intake and food choices in obese men and women compared to a reference population , 2005, International Journal of Obesity.
[50] Moira A. Taylor,et al. Beneficial metabolic effects of regular meal frequency on dietary thermogenesis, insulin sensitivity, and fasting lipid profiles in healthy obese women. , 2005, The American journal of clinical nutrition.
[51] F. Bellisle,et al. Impact of the daily meal pattern on energy balance 1 By France , 2004 .
[52] H. Meltzer,et al. Nordic Nutrition Recommendations 2004 – integrating nutrition and physical activity , 2004 .
[53] J. M. de Castro. The time of day of food intake influences overall intake in humans. , 2004, The Journal of nutrition.
[54] N. Slimani,et al. Comparison of telephone vs face-to-face interviews in the assessment of dietary intake by the 24 h recall EPIC SOFT program—the Norwegian calibration study , 2003, European Journal of Clinical Nutrition.
[55] F. Clavel-Chapelon,et al. European Prospective Investigation into Cancer and Nutrition (EPIC) calibration study: rationale, design and population characteristics , 2002, Public Health Nutrition.
[56] F. Clavel-Chapelon,et al. Physical activity of subjects aged 50–64 years involved in the European Prospective Investigation into Cancer and Nutrition (EPIC) , 2002, Public Health Nutrition.
[57] N E Day,et al. European Prospective Investigation into Cancer and Nutrition (EPIC): study populations and data collection , 2002, Public Health Nutrition.
[58] A. Ciampi,et al. Evaluation of under- and overreporting of energy intake in the 24-hour diet recalls in the European Prospective Investigation into Cancer and Nutrition (EPIC) , 2002, Public Health Nutrition.
[59] G. Strain,et al. Position of the American Dietetic Association: weight management. , 2002, Journal of the American Dietetic Association.
[60] J. D. Castro. Age-Related Changes in the Social, Psychological, and Temporal Influences on Food Intake in Free-Living, Healthy, Adult Humans , 2002 .
[61] K. Parkes. Shift work and age as interactive predictors of body mass index among offshore workers. , 2002, Scandinavian journal of work, environment & health.
[62] N. Day,et al. Frequency of eating and concentrations of serum cholesterol in the Norfolk population of the European prospective investigation into cancer (EPIC-Norfolk): cross sectional study , 2001, BMJ : British Medical Journal.
[63] AE Black,et al. Critical evaluation of energy intake using the Goldberg cut-off for energy intake:basal metabolic rate. A practical guide to its calculation, use and limitations , 2000, International Journal of Obesity.
[64] N Slimani,et al. Structure of the standardized computerized 24-h diet recall interview used as reference method in the 22 centers participating in the EPIC project. European Prospective Investigation into Cancer and Nutrition. , 1999, Computer methods and programs in biomedicine.
[65] D. Schlettwein-Gsell,et al. Meal Patterns in the SENECA Study of Nutrition and the Elderly in Europe: Assessment Method and Preliminary Results on the Role of the Midday Meal , 1999, Appetite.
[66] D. Schlettwein-Gsell,et al. Assessing Eating Patterns—an Emerging Research Topic in Nutritional Sciences: Introduction to the Symposium , 1999, Appetite.
[67] N Slimani,et al. Comparison of nutrients in the food composition tables available in the nine European countries participating in EPIC , 1999, European Journal of Clinical Nutrition.
[68] M. Chiva. Cultural aspects of meals and meal frequency , 1997, British Journal of Nutrition.
[69] J. D. Castro. Socio-cultural determinants of meal size and frequency , 1997, British Journal of Nutrition.
[70] E Riboli,et al. Adjustment for bias due to errors in exposure assessments in multicenter cohort studies on diet and cancer: a calibration approach. , 1994, The American journal of clinical nutrition.
[71] J. Edmé,et al. Circadian variation of diet-induced thermogenesis. , 1993, The American journal of clinical nutrition.
[72] Deeb Lc,et al. Description of survey towns and populations. Euronut SENECA investigators. , 1991 .
[73] S A Jebb,et al. Critical evaluation of energy intake data using fundamental principles of energy physiology: 1. Derivation of cut-off limits to identify under-recording. , 1991, European journal of clinical nutrition.
[74] C. D. Groot,et al. A study of the association between improved sanitation facilities and children's height in Lesotho. , 1991 .
[75] W. V. van Staveren,et al. Description of survey towns and populations. Euronut SENECA investigators. , 1991, European journal of clinical nutrition.
[76] T. Wolever,et al. Nibbling versus gorging: metabolic advantages of increased meal frequency. , 1989, The New England journal of medicine.
[77] Schofield Wn,et al. Predicting basal metabolic rate, new standards and review of previous work , 1985 .
[78] W. Schofield. Predicting basal metabolic rate, new standards and review of previous work. , 1985, Human nutrition. Clinical nutrition.
[79] Z. Hejl,et al. THE FREQUENCY OF MEALS. ITS RELATION TO OVERWEIGHT, HYPERCHOLESTEROLAEMIA, AND DECREASED GLUCOSE-TOLERANCE. , 1964, Lancet.
[80] A J RAINS,et al. A chemical and bacteriological study of gallstones. The presence of an actinomycete. , 1960, Lancet.