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Elevated Plus Maze Test Combined with Video Tracking Software to Investigate the Anxiolytic Effect of Exogenous Ketogenic Supplements
Published on: January 7, 2019
A ketogenic diet does not impair rat behavior or long-term potentiation
Liu Lin Thio1, Nicholas Rensing, Susan Maloney
1Department of Neurology, Washington University School of Medicine, St. Louis, Missouri 63110, USA. thiol@neuro.wustl.edu
Epilepsia
|February 6, 2010
Summary
The ketogenic diet (KD) did not affect behavior or synaptic plasticity in rats. This study found no significant differences in performance on cognitive tests or in electrophysiological measures between rats on a KD and those on a standard diet.
Area of Science:
- Neuroscience
- Dietary Science
- Behavioral Science
Background:
- The impact of the ketogenic diet (KD) on cognitive function and behavior remains incompletely understood.
- Investigating the effects of KD on the brain is crucial for understanding its potential therapeutic applications and side effects.
Purpose of the Study:
- To investigate the effects of a ketogenic diet (KD) on behavioral performance and synaptic plasticity in a rat model.
- To determine if KD alters locomotor activity, conditioned fear responses, or in vivo synaptic function.
Main Methods:
- Postnatal day 21 rats were fed either a standard diet (SD), ketogenic diet (KD), or calorie-restricted diet (CR) for 2–3 weeks.
- Behavioral assessments included locomotor activity and a conditioned fear test.
- Electrophysiological evaluations in vivo examined paired-pulse modulation (PPM) and long-term potentiation (LTP) in the medial perforant path.
Main Results:
- Rats fed the KD exhibited behavioral performance comparable to those fed the SD.
- Electrophysiological assays showed no significant differences in synaptic function (PPM and LTP) between KD-fed and SD-fed rats.
- Calorie restriction (CR) was used to control for potential confounding effects of altered weight gain in KD-fed rats.
Conclusions:
- The ketogenic diet (KD) does not appear to alter behavioral performance in rats.
- Synaptic plasticity in the medial perforant path remains unaffected by the KD.
- These findings suggest that the KD, under the conditions tested, does not negatively impact behavior or fundamental synaptic mechanisms relevant to cognition.

