Litcius/Paper detail

A Model with Dopamine Depletion in Basal Ganglia and Cerebellum Predicts Changes in Thalamocortical Beta Oscillations

Benedetta Gambosi, Francesco Jamal Sheiban, Marco Biasizzo, Alberto Antonietti, Egidio D’Angelo, Alberto Mazzoni, Alessandra Pedrocchi

2024International Journal of Neural Systems12 citationsDOIOpen Access PDF

Abstract

Parkinsonism is presented as a motor syndrome characterized by rigidity, tremors, and bradykinesia, with Parkinson's disease (PD) being the predominant cause. The discovery that those motor symptoms result from the death of dopaminergic cells in the substantia nigra led to focus most of parkinsonism research on the basal ganglia (BG). However, recent findings point to an active involvement of the cerebellum in this motor syndrome. Here, we have developed a multiscale computational model of the rodent brain's BG-cerebellar network. Simulations showed that a direct effect of dopamine depletion on the cerebellum must be taken into account to reproduce the alterations of neural activity in parkinsonism, particularly the increased beta oscillations widely reported in PD patients. Moreover, dopamine depletion indirectly impacted spike-time-dependent plasticity at the parallel fiber-Purkinje cell synapses, degrading associative motor learning as observed in parkinsonism. Overall, these results suggest a relevant involvement of cerebellum in parkinsonism associative motor symptoms.

Topics & Concepts

Basal gangliaDopamineBETA (programming language)NeuroscienceCerebellumThalamusPhysicsPsychologyCentral nervous systemComputer scienceProgramming languageNeurological disorders and treatmentsNeuroscience and Neuropharmacology ResearchNeural dynamics and brain function