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Publication : Inhibitory Basal Ganglia Inputs Induce Excitatory Motor Signals in the Thalamus.

First Author  Kim J Year  2017
Journal  Neuron Volume  95
Issue  5 Pages  1181-1196.e8
PubMed ID  28858620 Mgi Jnum  J:256124
Mgi Id  MGI:6109493 Doi  10.1016/j.neuron.2017.08.028
Citation  Kim J, et al. (2017) Inhibitory Basal Ganglia Inputs Induce Excitatory Motor Signals in the Thalamus. Neuron 95(5):1181-1196.e8
abstractText  Basal ganglia (BG) circuits orchestrate complex motor behaviors predominantly via inhibitory synaptic outputs. Although these inhibitory BG outputs are known to reduce the excitability of postsynaptic target neurons, precisely how this change impairs motor performance remains poorly understood. Here, we show that optogenetic photostimulation of inhibitory BG inputs from the globus pallidus induces a surge of action potentials in the ventrolateral thalamic (VL) neurons and muscle contractions during the post-inhibitory period. Reduction of the neuronal population with this post-inhibitory rebound firing by knockout of T-type Ca(2+) channels or photoinhibition abolishes multiple motor responses induced by the inhibitory BG input. In a low dopamine state, the number of VL neurons showing post-inhibitory firing increases, while reducing the number of active VL neurons via photoinhibition of BG input, effectively prevents Parkinson disease (PD)-like motor symptoms. Thus, BG inhibitory input generates excitatory motor signals in the thalamus and, in excess, promotes PD-like motor abnormalities. VIDEO ABSTRACT.
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