Key result
Dysfunction in the reward and executive control networks contributes to heightened sensitivity to food rewards and eating disinhibition in individuals with overweight and obesity.
Why the study?
Seeking neural evidence underlying overweight and obesity by revealing functional alterations in brain networks can help elucidate their causes and effects.
This review summarizes functional brain network alterations in overweight/obesity, proposing a reward-inhibition dual-system model to explain eating disinhibition.
Neural alterations in reward and executive networks in obesity merit targeted study; leaves open clinical translation of these insights.
Overweight (OW) and obesity (OB) have become prevalent issues in the global public health arena. Serving as a prominent risk factor for various chronic diseases, overweight/obesity not only poses serious threats to people's physical and mental health but also imposes significant medical and economic burdens on society as a whole. In recent years, there has been a growing focus on basic scientific research dedicated to seeking the neural evidence underlying overweight/obesity, aiming to elucidate its causes and effects by revealing functional alterations in brain networks. Among them, dysfunction in the reward network (RN) and executive control network (ECN) during both resting state and task conditions is considered pivotal in neuroscience research on overweight/obesity. Their aberrations contribute to explaining why persons with overweight/obesity exhibit heightened sensitivity to food rewards and eating disinhibition. This review centers on the reward and executive control network by analyzing and organizing the resting-state and task-based fMRI studies of functional brain network alterations in overweight/obesity. Building upon this foundation, the authors further summarize a reward-inhibition dual-system model, with a view to establishing a theoretical framework for future exploration in this field.
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Guo et al. (2024) conducted a review in Overweight and obesity. Functional brain network alterations (reward and executive control network) was evaluated. Dysfunction in the reward and executive control networks contributes to heightened sensitivity to food rewards and eating disinhibition in individuals with overweight and obesity.
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