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Updated: May 13, 2026

Whisker-signaled Eyeblink Classical Conditioning in Head-fixed Mice
Published on: March 30, 2016
The rostral medial prefrontal cortex regulates the expression of conditioned eyelid responses in behaving rabbits
Rocío Leal-Campanario1, José M Delgado-García, Agnès Gruart
1Division of Neurosciences, Pablo de Olavide University, E-41013 Seville, Spain.
Abstract:
We studied the contribution of the rostral mPFC (rmPFC) to the acquisition and performance of classical eyeblink conditioning in rabbits using a delay paradigm. The rmPFC was determined by its afferent projections from the medial half of the mediodorsal thalamic nucleus. The rmPFC neurons were identified by their antidromic activation from the mediodorsal nucleus and/or by their firing characteristics. The rmPFC neurons increased their firing during the first conditioning sessions, but decreased it when conditioned responses (CRs) reached asymptotic values. Therefore, no significant relationships could be established between neuronal firing rates and the percentage of CRs or the electromyographic (EMG) activity of the orbicularis oculi muscle during conditioning. Electrical train stimulation of the rmPFC produced a significant inhibition of air-puff-evoked blinks and reduced the generation of CRs compared with controls. Inhibition of the rmPFC by the local injection of lidocaine produced an increase in the amplitude of evoked reflex and conditioned eyeblinks and in the percentage of CRs. The rmPFC seems to be a potent inhibitor of reflex and conditioned eyeblinks, controlling the release of newly acquired eyelid responses until advanced stages of the acquisition process--i.e., until the need for the acquired response is fully confirmed. Therefore, the rmPFC seems to act as a "flip-flop" mechanism in controlling behavior.
Insights
The rostral mPFC (rmPFC) inhibits learned eyeblink responses during conditioning. This brain region acts as a "flip-flop" switch, controlling the expression of newly acquired eyelid responses.
Area of Science:
- Neuroscience
- Behavioral Neuroscience
Background:
- Classical eyeblink conditioning is a fundamental learning paradigm.
- The role of the medial prefrontal cortex (mPFC) in associative learning is not fully understood.
Purpose of the Study:
- To investigate the contribution of the rostral mPFC (rmPFC) to the acquisition and performance of classical eyeblink conditioning in rabbits.
Main Methods:
- Electrophysiological recordings of rmPFC neurons.
- Stimulation and inhibition (lidocaine injection) of the rmPFC.
- Analysis of conditioned responses (CRs) and electromyographic (EMG) activity.
Main Results:
- rmPFC neuronal firing increased during early conditioning but decreased as CRs reached asymptote.
- rmPFC stimulation inhibited air-puff-evoked blinks and reduced CRs.
- rmPFC inhibition increased the amplitude and percentage of CRs.
Conclusions:
- The rmPFC acts as a potent inhibitor of reflex and conditioned eyeblinks.
- It controls the release of newly acquired eyelid responses until their necessity is confirmed.
- The rmPFC functions as a "flip-flop" mechanism in behavioral control.

