Rodent Eating Behavior

Rodent eating behavior encompasses the sensory, motivational, and physiological processes that guide when, what, and how rodents consume food, making it a useful model for understanding feeding and energy balance. In the brain, homeostatic signals such as hunger and satiety interact with reward pathways, while taste, smell, learned associations, and environmental cues shape food seeking and meal patterns. Neuroscience studies measure these behaviors alongside neural activity, hormone signaling, and circuit manipulation to identify mechanisms underlying appetite and metabolism. This work informs research on obesity, eating disorders, metabolic disease, and the neural basis of motivated behavior.

Rodent Eating Behavior - Related Videos

Research

JoVE Journal - Behavior

Fat Preference: A Novel Model of Eating Behavior in Rats

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Cited by 9 •

2014

Dietary fat content influences both energy intake and body fat composition in mammals. By examining rats’ preference for high fat food in a series of choice experiments, it is possible to test genetic differences and pharmacological interventions on their preference for high fat food.

Research

JoVE Journal - Behavior
Free Sample

Control of Eating Behavior Using a Novel Feedback System

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Cited by 22 •

2018

Subjects eat food from a plate placed on a scale connected to a computer that records the weight loss of the plate during the meal. Feedback on the computer screen allows the subject to adapt her/his eating behavior to reference curves thus normalizing body weight.

A Low Cost Setup for Behavioral Audiometry in Rodents

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Cited by 17 •

2012

A fast and inexpensive method for the behavioral determination of hearing parameters like hearing thresholds, hearing impairments or phantom perceptions (subjective tinnitus) is described. It uses pre-pulse inhibition of the acoustic startle response and can be easily implemented in a personal computer using a programmable AD/DA-converter and a piezo sensor.

The Double-H Maze: A Robust Behavioral Test for Learning and Memory in Rodents

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Cited by 7 •

2015

The goal of this protocol is to investigate spatial cognition in rodents. The double-H water maze is a novel test, which is particularly useful to elucidate the different components of learning, consolidation and memory, as well as the interplay of memory systems.

A System for Tracking the Dynamics of Social Preference Behavior in Small Rodents

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Cited by 33 •

2019

Described here is a novel automated experimental system that offers an alternative to the three-chamber test and also solves several caveats. This system supplies multiple behavioral parameters that enable rigorous analysis of small rodent behavioral dynamics during the social preference and social novelty preference tests.

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