Modulation of premotor cortex excitability mitigates the behavioral and electrophysiological abnormalities in a Parkinson's Disease Mouse Model
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Our study provides insight into the mechanisms underlying motor impairment in Parkinson's disease (PD) and the therapeutic effect of deep brain stimulation (DBS). By elucidating the role of hyperpolarization-activated cyclic nucleotide-gated (HCN) channels in modulating the hyperexcitability of M2 neurons, we identify potential targets for future PD treatment strategies. Understanding the excessive excitability and suppressive motor control through M2-STN synapses in PD mouse models contributes to our knowledge of circuit-level dynamics underlying DBS effects. These findings have significant implications for improving motor symptoms and advancing the development of more precise and effective interventions for PD patients.<br>
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2025-01-28



