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Comparison of weight-loss diets with different compositions of fat, protein, and carbohydrates | New England Journal of Medicine | 2009 | 1.4K |
A Randomized, Controlled Trial of 3.0 mg of Liraglutide in Weight Management | New England Journal of Medicine | 2015 | 950 |
The brain, appetite, and obesity | Annual Review of Psychology | 2008 | 467 |
Metabolic and hedonic drives in the neural control of appetite: who is the boss? | Current Opinion in Neurobiology | 2011 | 333 |
Identification of adropin as a secreted factor linking dietary macronutrient intake with energy homeostasis and lipid metabolism | Cell Metabolism | 2008 | 248 |
The vagus nerve, food intake and obesity | Regulatory Peptides | 2008 | 221 |
Central and peripheral regulation of food intake and physical activity: pathways and genes | Obesity | 2008 | 217 |
Vagal and hormonal gut-brain communication: from satiation to satisfaction | Neurogastroenterology and Motility | 2008 | 211 |
Joint international consensus statement for ending stigma of obesity | Nature Medicine | 2020 | 210 |
Homeostatic and non-homeostatic pathways involved in the control of food intake and energy balance | Obesity | 2006 | 200 |
Orexin signaling in the ventral tegmental area is required for high-fat appetite induced by opioid stimulation of the nucleus accumbens | Journal of Neuroscience | 2007 | 196 |
Interactions between the "cognitive" and "metabolic" brain in the control of food intake | Physiology and Behavior | 2007 | 195 |
Appetite control and energy balance regulation in the modern world: reward-driven brain overrides repletion signals | International Journal of Obesity | 2009 | 187 |
The neurobiology of food intake in an obesogenic environment | Proceedings of the Nutrition Society | 2012 | 175 |
Blaming the Brain for Obesity: Integration of Hedonic and Homeostatic Mechanisms | Gastroenterology | 2017 | 173 |
The lateral hypothalamus as integrator of metabolic and environmental needs: from electrical self-stimulation to opto-genetics | Physiology and Behavior | 2011 | 164 |
Food reward, hyperphagia, and obesity | American Journal of Physiology - Regulatory Integrative and Comparative Physiology | 2011 | 161 |
Chromium picolinate supplementation attenuates body weight gain and increases insulin sensitivity in subjects with type 2 diabetes | Diabetes Care | 2006 | 146 |
Brain stem melanocortinergic modulation of meal size and identification of hypothalamic POMC projections | American Journal of Physiology - Regulatory Integrative and Comparative Physiology | 2005 | 143 |
Meal patterns, satiety, and food choice in a rat model of Roux-en-Y gastric bypass surgery | American Journal of Physiology - Regulatory Integrative and Comparative Physiology | 2009 | 139 |
Animal models of type 2 diabetes: clinical presentation and pathophysiological relevance to the human condition | ILAR Journal | 2006 | 124 |
Increased sorbitol pathway activity generates oxidative stress in tissue sites for diabetic complications | Antioxidants and Redox Signaling | 2005 | 122 |
Roux-en-Y gastric bypass surgery changes food reward in rats | International Journal of Obesity | 2011 | 114 |
Roux-en-Y gastric bypass surgery increases number but not density of CCK-, GLP-1-, 5-HT-, and neurotensin-expressing enteroendocrine cells in rats | Neurogastroenterology and Motility | 2013 | 110 |