Differential Effects of Cerebellar Inactivation on Eyeblink Conditioned Excitation and Inhibition
Open Access
- 26 January 2005
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 25 (4) , 889-895
- https://doi.org/10.1523/jneurosci.4534-04.2005
Abstract
The neural mechanisms underlying excitatory and inhibitory eyeblink conditioning were compared using muscimol inactivation of the cerebellum. In experiment 1, rats were given saline or muscimol infusions into the anterior interpositus nucleus ipsilateral to the conditioned eye before each of four daily excitatory conditioning sessions. Postinfusion testing continued for four more excitatory conditioning sessions. All rats were given a final test session after muscimol infusions. The muscimol infusions inactivated the cerebellar nuclei, lateral anterior lobe, crus I, rostral crus II, and lobule HVI ipsilateral to the conditioned eye. Acquisition of excitatory conditioning was completely prevented by muscimol inactivation. In experiment 2, there were four experimental phases. Phase 1 consisted of excitatory conditioning. In phase 2, rats were given saline or muscimol infusions before conditioned inhibition training. Phase 3 consisted of continued conditioned inhibition training with no drug infusions. In phase 4, all rats received a retardation test in which the inhibitory stimulus was paired with the unconditioned stimulus. Muscimol infusions blocked the expression of conditioned responses during phase 2. However, robust conditioned inhibition was evident in phases 3 and 4. The findings indicate that conditioned excitation and inhibition depend on different mechanisms.Keywords
This publication has 35 references indexed in Scilit:
- Developmental changes in eyeblink conditioning and simple spike activity in the cerebellar cortexDevelopmental Psychobiology, 2003
- Cerebellar LTD and Learning-Dependent Timing of Conditioned Eyelid ResponsesScience, 2003
- Neuronal correlates of conditioned inhibition of the eyeblink response in the anterior interpositus nucleus.Behavioral Neuroscience, 2002
- Role of cerebellum in adaptive modification of reflex blinks.Learning & Memory, 1997
- Reversible inactivation of the cerebellar interpositus nucleus completely prevents acquisition of the classically conditioned eye-blink response.Learning & Memory, 1997
- Bilateral cerebellar lesions disrupt conditioned eyelid responses in unrestrained rats.Behavioral Neuroscience, 1988
- Disrupted conditioned inhibition of the rabbit nictitating membrane response following mesencephalic lesions☆Physiology & Behavior, 1980
- Conditioned inhibition of the nictitating membrane response in decorticate rabbitsBehavioural Brain Research, 1980
- A model for Pavlovian learning: Variations in the effectiveness of conditioned but not of unconditioned stimuli.Psychological Review, 1980
- A midbrain–brain stem circuit for conditioned inhibition of the nictitating membrane response in the rabbit (Oryctolagus cuniculus).Journal of Comparative and Physiological Psychology, 1977