1. Influence of various temporal recoding on pavlovian eyeblink conditioning in the cerebellum
- Author
-
Sang-Yoon Kim and Woochang Lim
- Subjects
Cerebellum ,Cognitive Neuroscience ,FOS: Physical sciences ,Cerebellar nucleus ,Inhibitory postsynaptic potential ,Eyelid closure ,050105 experimental psychology ,03 medical and health sciences ,0302 clinical medicine ,medicine ,0501 psychology and cognitive sciences ,Physics - Biological Physics ,Physics ,Degree (graph theory) ,Chemistry ,05 social sciences ,Conditioned response ,Classical conditioning ,medicine.anatomical_structure ,Eyeblink conditioning ,Biological Physics (physics.bio-ph) ,Quantitative Biology - Neurons and Cognition ,FOS: Biological sciences ,Synaptic plasticity ,Neurons and Cognition (q-bio.NC) ,Neuron ,Neuroscience ,030217 neurology & neurosurgery ,Research Article - Abstract
We consider the Pavlovian eyeblink conditioning (EBC) via repeated presentation of paired conditioned stimulus (tone) and unconditioned stimulus (airpuff). The influence of various temporal recoding of granule cells on the EBC is investigated in a cerebellar network where the connection probability $p_c$ from Golgi to granule cells is changed. In an optimal case of $p_c^*~(=0.029)$, individual granule cells show various well- and ill-matched firing patterns relative to the unconditioned stimulus. Then, these variously-recoded signals are fed into the Purkinje cells (PCs) through parallel-fibers (PFs). In the case of well-matched PF-PC synapses, their synaptic weights are strongly depressed through strong long-term depression (LTD). On the other hand, practically no LTD occurs for the ill-matched PF-PC synapses. This type of "effective" depression at the PF-PC synapses coordinates firings of PCs effectively, which then make effective inhibitory coordination on cerebellar nucleus neuron [which elicits conditioned response (CR; eyeblink)]. When the learning trial passes a threshold, acquisition of CR begins. In this case, the timing degree ${\cal T}_d$ of CR becomes good due to presence of the ill-matched firing group which plays a role of protection barrier for the timing. With further increase in the trial, strength $\cal S$ of CR (corresponding to the amplitude of eyelid closure) increases due to strong LTD in the well-matched firing group. Thus, with increasing the learning trial, the (overall) learning efficiency degree ${\cal L}_e$ (taking into consideration both timing and strength of CR) for the CR is increased, and eventually it becomes saturated. By changing $p_c$ from $p_c^*$, we also investigate the influence of various temporal recoding on the EBC. It is thus found that, the more various in temporal recoding, the more effective in learning for the Pavlovian EBC., Comment: arXiv admin note: substantial text overlap with arXiv:2003.11325
- Published
- 2021