
Tremor is a key symptom of Parkinson's disease (PD), stemming from complex neuronal oscillations. The study explores PD tremor generation using a comprehensive finger-dimmer-switch (FDS) model, focusing on transitions from healthy states to PD and tremor phases. A computational model of 700 neurons in basal ganglia-thalamo-cortical (BTC) and cerebello-thalamo-cortical (CTC) networks was created. Modulating dopaminergic synaptic connections simulated the transition to PD, while adjusting projections between the thalamic reticular nucleus and ventrolateral nuclei facilitated tremor states. Findings reveal that enhancing thalamic self-inhibition via dopaminergic modulation reduces tremor amplitude, suggesting new therapeutic strategies for tremors in dopamine-resistant patients.
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