Cerebellar Cortex Lesions Prevent Acquisition of Conditioned Eyelid Responses
Open Access
- 15 December 1999
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 19 (24) , 10940-10947
- https://doi.org/10.1523/jneurosci.19-24-10940.1999
Abstract
We have used aspiration and electrolytic lesions to investigate the contributions of cerebellar cortex to the acquisition and expression of conditioned eyelid responses. We show that lesions of the anterior lobe of rabbit cerebellar cortex disrupt the timing of previously learned conditioned eyelid responses. These short-latency responses were used as an indication that the cerebellar cortex was sufficiently damaged and that the underlying pathways necessary for the expression of responses were sufficiently intact to support responses. Rabbits were subsequently trained for 15 daily sessions using a new conditioned stimulus. Whereas rabbits in which lesions had no significant effect on response timing showed rapid acquisition of appropriately timed eyelid responses to the new conditioned stimulus, animals with lesions that disrupt timing showed no significant increases in either amplitude or probability of responses. Histological analysis suggests that damage to the anterior lobe of the cerebellar cortex is necessary and sufficient to abolish timing and prevent acquisition. These data indicate that the cerebellar cortex is necessary for the acquisition of conditioned eyelid responses and are consistent with the hypotheses that (1) eyelid conditioning results in plasticity in both the anterior lobe of the cerebellar cortex and in the anterior interpositus nucleus and (2) induction of plasticity in the interpositus requires intact input from the cerebellar cortex.Keywords
This publication has 53 references indexed in Scilit:
- Roles of Cerebellar Cortex and Nuclei in Motor Learning: Contradictions or Clues?Neuron, 1997
- Reacquisition of eyeblink classical conditioning following large cerebellar cortical lesions in dutch belted rabbitsBehavioural Brain Research, 1994
- Acquisition of classically conditioned eyeblink response following bilateral lesions of flocculus and paraflocculusBehavioral and Neural Biology, 1994
- Neural Network Model of the Cerebellum: Temporal Discrimination and the Timing of Motor ResponsesNeural Computation, 1994
- Cerebellar flocculus hypothesisNature, 1993
- Motor learning in a recurrent network model based on the vestibulo–ocular reflexNature, 1992
- Acquisition of classical conditioning without cerebellar cortexBehavioural Brain Research, 1989
- Classical conditioning in rabbits using pontine nucleus stimulation as a conditioned stimulus and inferior olive stimulation as an unconditioned stimulusSynapse, 1989
- The effect of lesions of cerebellar cortex on retention of the classically conditioned eyeblink response when stimulation of the lateral reticular nucleus is used as the conditioned stimulusBehavioral and Neural Biology, 1988
- Discrete lesions of the cerebellar cortex abolish the classically conditioned nictitating membrane response of the rabbitBehavioural Brain Research, 1984