Effect of varying the intensity and train frequency of forelimb and cerebellar mossy fiber conditioned stimuli on the latency of conditioned eye-blink responses in decerebrate ferrets.
Open Access
- 1 May 1997
- journal article
- Published by Cold Spring Harbor Laboratory in Learning & Memory
- Vol. 4 (1) , 105-115
- https://doi.org/10.1101/lm.4.1.105
Abstract
To study the role of the mossy fiber afferents to the cerebellum in classical eye-blink conditioning, in particular the timing of the conditioned responses, we compared the effects of varying a peripheral conditioned stimulus with the effects of corresponding variations of direct stimulation of the mossy fibers. In one set of experiments, decerebrate ferrets were trained in a Pavlovian eye-blink conditioning paradigm with electrical forelimb train stimulation as conditioned stimulus and electrical periorbital stimulation as the unconditioned stimulus. When stable conditioning had been achieved, the effect of increasing the intensity or frequency of the forelimb stimulation was tested. By increasing the intensity from 1 to 2 mA, or the train frequency from 50 to 100 Hz, an immediate decrease was induced in both the onset latency and the latency to peak of the conditioned response. If the conditioned stimulus intensity/frequency was maintained at the higher level, the response latencies gradually returned to preshift values. In a second set of experiments, the forelimb stimulation was replaced by direct train stimulation of the middle cerebellar peduncle as conditioned stimulus. Varying the frequency of the stimulus train between 50 and 100 Hz had effects that were almost identical to those obtained when using a forelimb conditioned stimulus. The functional meaning of the latency effect is discussed. It is also suggested that the results support the view that the conditioned stimulus is transmitted through the mossy fibers and that the mechanism for timing the conditioned response is situated in the cerebellum.Keywords
This publication has 25 references indexed in Scilit:
- A theory of cerebellar functionPublished by Elsevier ,2002
- Hippocampectomy disrupts the topography of the rat eyeblink response during acquisition and extinction of classical conditioningBrain Research, 1992
- Learning-dependent timing of Pavlovian eyelid responses: Differential conditioning using multiple interstimulus intervals.Behavioral Neuroscience, 1992
- Real-time factors in the rabbit’s nictitating membrane response to pulsed and serial conditioned stimuliLearning & Behavior, 1991
- Classical nictitating membrane conditioning in rabbits with varying interstimulus intervals and direct activation of cerebellar mossy fibers as the CSBehavioural Brain Research, 1990
- Neural dynamics of adaptive timing and temporal discrimination during associative learningNeural Networks, 1989
- Classical conditioning in rabbits using pontine nucleus stimulation as a conditioned stimulus and inferior olive stimulation as an unconditioned stimulusSynapse, 1989
- Classical eyeblink conditioning in the bilaterally hemispherectomized catExperimental Neurology, 1974
- Effect of CS-US interval shift on classical conditioning of the nictitating membrane in the rabbit.Journal of Comparative and Physiological Psychology, 1967
- Effects of increasing the interstimulus interval during classical conditioning of the albino rabbit.Journal of Comparative and Physiological Psychology, 1965