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  Higher-Order Inputs Involved in Appetite Control

Azevedo, E. P., Ivan, V. J., Friedman, J. M., & Stern, S. A. (2022). Higher-Order Inputs Involved in Appetite Control. Biological Psychiatry, (10), 869-878. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/34593204.

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Genre: Journal Article
Alternative Title : Biological Psychiatry

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 Creators:
Azevedo, Estefania P., Author
Ivan, Violet J., Author
Friedman, Jeffrey M., Author
Stern, Sarah A.1, Author
Affiliations:
1Max Planck Florida Institute for Neuroscience, Max Planck Society, One Max Planck Way, Jupiter FL 33458, USA, ou_1950288              

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Free keywords: Humans, Brain, Appetite, Cortex, Eating disorders, Hypothalamus, Obesity, Subcortical areas, Feeding and Eating Disorders
 Abstract: The understanding of the neural control of appetite sheds light on the pathogenesis of eating disorders such as anorexia nervosa and obesity. Both diseases are a result of maladaptive eating behaviors (overeating or undereating) and are associated with life-threatening health problems. The fine regulation of appetite involves genetic, physiological, and environmental factors, which are detected and integrated in the brain by specific neuronal populations. For centuries, the hypothalamus has been the center of attention in the scientific community as a key regulator of appetite. The hypothalamus receives and sends axonal projections to several other brain regions that are important for the integration of sensory and emotional information. These connections ensure that appropriate behavioral decisions are made depending on the individual's emotional state and environment. Thus, the mechanisms by which higher-order brain regions integrate exteroceptive information to coordinate feeding is of great importance. In this review, we will focus on the functional and anatomical projections connecting the hypothalamus to the limbic system and higher-order brain centers in the cortex. We will also address the mechanisms by which specific neuronal populations located in higher-order centers regulate appetite and how maladaptive eating behaviors might arise from altered connections among cortical and subcortical areas with the hypothalamus.

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 Dates: 2022
 Publication Status: Issued
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Title: Biological Psychiatry
  Alternative Title : Biol Psychiatry
Source Genre: Journal
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Pages: - Volume / Issue: (10) Sequence Number: - Start / End Page: 869 - 878 Identifier: ISBN: 1873-2402