Speed limits: the effects of industrial food processing and food texture on daily energy intake and eating behaviour in healthy adults
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[1] E. Temme,et al. Evaluation of foods, drinks and diets in the Netherlands according to the degree of processing for nutritional quality, environmental impact and food costs , 2022, BMC Public Health.
[2] C. Forde,et al. Texture-based differences in eating rate influence energy intake for minimally processed and ultra-processed meals , 2022, The American journal of clinical nutrition.
[3] A. Astrup,et al. A Multidisciplinary Perspective of Ultra-Processed Foods and Associated Food Processing Technologies: A View of the Sustainable Road Ahead , 2021, Nutrients.
[4] K. Hall,et al. Eliminate or reformulate ultra-processed foods? Biological mechanisms matter. , 2021, Cell metabolism.
[5] Jennifer L. Pomeranz,et al. Trends in Consumption of Ultraprocessed Foods Among US Youths Aged 2-19 Years, 1999-2018. , 2021, JAMA.
[6] K. de Graaf,et al. Effects of Oro-Sensory Exposure on Satiation and Underlying Neurophysiological Mechanisms—What Do We Know So Far? , 2021, Nutrients.
[7] M. Martínez-González,et al. Ultra-processed foods and type-2 diabetes risk in the SUN project: A prospective cohort study. , 2021, Clinical nutrition.
[8] K. de Graaf,et al. Sensory and physical characteristics of foods that impact food intake without affecting acceptability: Systematic review and meta‐analyses , 2021, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[9] M. Touvier,et al. Consumption of Ultra-Processed Food and Its Association with Sociodemographic Characteristics and Diet Quality in a Representative Sample of French Adults , 2021, Nutrients.
[10] R. Levy,et al. Ultra-processed food consumption and obesity in the Australian adult population , 2020, Nutrition & Diabetes.
[11] C. Forde,et al. Application of food texture to moderate oral processing behaviors and energy intake , 2020 .
[12] Kong Y. Chen,et al. Ultra-Processed Diets Cause Excess Calorie Intake and Weight Gain: An Inpatient Randomized Controlled Trial of Ad Libitum Food Intake. , 2020, Cell metabolism.
[13] H. Shahinfar,et al. Ultra-processed food and the risk of overweight and obesity: a systematic review and meta-analysis of observational studies , 2020, International Journal of Obesity.
[14] B. Rolls,et al. Properties of Ultraprocessed Foods That Can Drive Excess Intake , 2020 .
[15] K. de Graaf,et al. Ultra-Processing or Oral Processing? A Role for Energy Density and Eating Rate in Moderating Energy Intake from Processed Foods , 2020, Current developments in nutrition.
[16] Kong Y. Chen,et al. Ultra-Processed Diets Cause Excess Calorie Intake and Weight Gain: An Inpatient Randomized Controlled Trial of Ad Libitum Food Intake. , 2019, Cell metabolism.
[17] J. Hollis. The effect of mastication on food intake, satiety and body weight , 2018, Physiology & Behavior.
[18] A. Sarkar,et al. Influence of oral processing on appetite and food intake – A systematic review and meta-analysis , 2018, Appetite.
[19] J. Poti,et al. Ultra-processed Food Intake and Obesity: What Really Matters for Health—Processing or Nutrient Content? , 2017, Current Obesity Reports.
[20] M. Stieger,et al. Comparison of oro-sensory exposure duration and intensity manipulations on satiation , 2017, Physiology & Behavior.
[21] A. Fardet. Minimally processed foods are more satiating and less hyperglycemic than ultra-processed foods: a preliminary study with 98 ready-to-eat foods. , 2016, Food & function.
[22] E. Hemmingsson,et al. Trends in consumption of ultra-processed foods and obesity in Sweden between 1960 and 2010 , 2015, Public Health Nutrition.
[23] E. Bannerman,et al. A randomised trial of the impact of energy density and texture of a meal on food and energy intake, satiation, satiety, appetite and palatability responses in healthy adults. , 2014, Clinical nutrition.
[24] F. Rutters,et al. A systematic review and meta-analysis examining the effect of eating rate on energy intake and hunger. , 2014, The American journal of clinical nutrition.
[25] N. Martin,et al. Slow Food: Sustained Impact of Harder Foods on the Reduction in Energy Intake over the Course of the Day , 2014, PloS one.
[26] C. Ritz,et al. Back-transformation of treatment differences—an approximate method , 2014, European Journal of Clinical Nutrition.
[27] Helgi B. Schiöth,et al. Effect of oral processing behaviour on food intake and satiety , 2013 .
[28] B. Popkin,et al. Ultra‐processed products are becoming dominant in the global food system , 2013, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[29] N. Martin,et al. Texture and savoury taste influences on food intake in a realistic hot lunch time meal , 2013, Appetite.
[30] R. D. de Wijk,et al. Both longer oral sensory exposure to and higher intensity of saltiness decrease ad libitum food intake in healthy normal-weight men. , 2011, The Journal of nutrition.
[31] M. Mars,et al. The effect of texture differences on satiation in 3 pairs of solid foods , 2010, Appetite.
[32] P. Smeets,et al. Sip size of orangeade: effects on intake and sensory-specific satiation , 2009, British Journal of Nutrition.
[33] B. Rolls. The relationship between dietary energy density and energy intake , 2008, Physiology & Behavior.
[34] R. Mattes,et al. Liquid versus solid carbohydrate: effects on food intake and body weight , 2000, International Journal of Obesity.
[35] F. C. Baselt. Nutritional Evaluation of Food Processing , 1961 .
[36] OUP accepted manuscript , 2022, The American Journal of Clinical Nutrition.
[37] M. Westerterp-Plantenga,et al. The effect of viscosity on ad libitum food intake , 2008, International Journal of Obesity.
[38] T. V. Strien. Nederlandse Vragenlijst voor eetgedrag (NVE). Handleiding [Dutch Eating Behaviour Questionnaire. Manual] , 2005 .