Food and Diet

Why You Can’t Stop Thinking About Food

Why You Can’t Stop Thinking About Food

1. Morton GJ, Meek TH, Schwartz MW. Neurobiology of food intake in health and disease. Nature Reviews Neuroscience, 15, 367–378. doi: 10.1038/nrn3745

2. Volkow ND, Wang GJ, Baler RD. Reward, dopamine and the control of food intake: implications for obesity. Trends in Cognitive Sciences, 15(1), 37–46. doi: 10.1016/j.tics.2010.11.001

3. Appelhans BM, Whited MC, Schneider KL, Pagoto SL. Time to abandon the notion of personal choice in dietary counseling for obesity? J Am Diet Assoc. 2011 Aug;111(8): 1130–1136. doi: 10.1016/j.jada.2011.05.014. PMID: 21802557; PMCID: PMC3148487.

4. Ulug, E., Acikgoz Pinar, A., & Yildiz, B. O. (2025). Impact of ultra-processed foods on hedonic and homeostatic appetite regulation: A systematic review. Appetite, 213, 108139. https://doi.org/10.1016/j.appet.2025.108139

5. Chao, A. M., Jastreboff, A. M., White, M. A., Grilo, C. M., & Sinha, R. (2017). Stress, cortisol, and other appetite-related hormones: Prospective prediction of 6-month changes in food cravings and weight. Obesity, 25(4), 713–720. https://doi.org/10.1002/oby.21790

6. Taheri, S., Lin, L., Austin, D., Young, T., & Mignot, E. (2004). Short sleep duration is associated with reduced leptin, elevated ghrelin, and increased body mass index. PLoS Medicine, 1(3), e62.

7. Liu, P. Y. (2024). Rhythms in cortisol mediate sleep and circadian impacts on health. Sleep, 47(9), zsae151. https://doi.org/10.1093/sleep/zsae151

8. Weng, X., Wen, K., Guo, J., Zhang, P., Zhang, Y., Cao, Q., Han, Q., & Xu, F. (2025). The impact of sleep deprivation on the functional connectivity of visual-related brain regions. Sleep Medicine, 125, 155–167. https://doi.org/10.1016/j.sleep.2024.11.026

9. Kanoski, S. E., & Boutelle, K. N. (2022). Food cue reactivity: Neurobiological and behavioral underpinnings. Reviews in Endocrine and Metabolic Disorders, 23, 683–696.

10. Skvortsova, A., Veldhuijzen, D. S., Kloosterman, I. E. M., Pacheco-López, G., & Evers, A. W. M. (2021). Food anticipatory hormonal responses: A systematic review of animal and human studies. Neuroscience & Biobehavioral Reviews, 126, 447–464. https://doi.org/10.1016/j.neubiorev.2021.03.030

11. Moynihan, A. B., van Tilburg, W. A. P., Igou, E. R., Wisman, A., Donnelly, A. E., & Mulcaire, J. B. (2015). Eaten up by boredom: consuming food to escape awareness of the bored self. Frontiers in Psychology, 6, 369.

12. Schubert, M. M., Sabapathy, S., Leveritt, M., & Desbrow, B. (2014). Acute exercise and hormones related to appetite regulation: A meta-analysis. Sports Medicine, 44(3), 387–403. https://doi.org/10.1007/s40279-013-0120-3

13. Ando, S., Fujimoto, T., Sudo, M., et al. (2024). The neuromodulatory role of dopamine in improved reaction time by acute cardiovascular exercise. The Journal of Physiology, 602(3): 461-484. DOI: 10.1113/JP285173

14. Benini, L., Castellani, G., Brighenti, F., Heaton, K. W., Brentegani, M. T., Casiraghi, M. C., Sembenini, C., Pellegrini, N., Fioretta, A., & Minniti, G. (1995). Gastric emptying of a solid meal is accelerated by the removal of dietary fibre naturally present in food. Gut, 36(6), 825–830. https://doi.org/10.1136/gut.36.6.825

15. Krauss, R. M., Eckel, R. H., Howard, B., Appel, L. J., Daniels, S. R., Deckelbaum, R. J., Erdman, J. W., Kris-Etherton, P., Goldberg, I. J., Kotchen, T. A., Lichtenstein, A. H., Mitch, W. E., Mullis, R., Robinson, K., Wylie-Rosett, J., St. Jeor, S., Suttie, J., Tribble, D. L., & Bazzarre, T. L. (2000). AHA Dietary Guidelines Revision 2000: A statement for healthcare professionals from the Nutrition Committee of the American Heart Association. Circulation, 102(18), 2284–2299. https://doi.org/10.1161/01.CIR.102.18.2284

16. Ghazzawi, H. A., & Mustafa, S. (2019). Effect of high-protein breakfast meal on within-day appetite hormones: Peptide YY, glucagon-like peptide-1 in adults. Clinical Nutrition Experimental, 28, 111–122. https://doi.org/10.1016/j.yclnex.2019.09.002

17. Park, Y. M., Heden, T. D., Liu, Y., Nyhoff, L. M., Thyfault, J. P., Leidy, H. J., & Kanaley, J. A. (2015). A high-protein breakfast induces greater insulin and glucose-dependent insulinotropic peptide responses to a subsequent lunch meal in individuals with type 2 diabetes. Journal of Nutrition, 145(3), 452–458.

18. Pavlov, I. P. (1927). Conditioned Reflexes: An Investigation of the Physiological Activity of the Cerebral Cortex. Oxford University Press.

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