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Published on: March 30, 2016
Experiential modification of the trigeminal reflex blink circuit
Céline Dauvergne1, Craig Evinger
1Department of Neurobiology and Behavior, State University of New York at Stony Brook, Stony Brook, New York 11794-5230, USA.
Summary
The trigeminal reflex blink circuit exhibits plasticity, with nerve stimuli interactions influencing blink responses. This plasticity, analogous to synaptic rules, may underlie conditions like hemifacial spasm.
Area of Science:
- Neuroscience
- Neurophysiology
Background:
- The trigeminal nerve plays a crucial role in facial sensation and reflexes, including the blink reflex.
- Understanding the plasticity of the trigeminal reflex blink circuit is essential for deciphering normal function and pathological conditions.
Purpose of the Study:
- To characterize the organization and plasticity of the trigeminal reflex blink circuit in alert rats.
- To investigate if the blink circuit follows rules similar to synaptic plasticity, such as spike-timing-dependent plasticity.
Main Methods:
- Blink-evoking supraorbital (SO) and infraorbital (IO) nerve stimuli were applied to alert rats.
- Interactions between SO and IO stimulation were analyzed, including simultaneous, asynchronous, and synchronous pairings with varying intervals.
- The effects of these pairings on blink responses and input strength to the blink circuit were quantified.
Main Results:
- Stimulation of one trigeminal nerve branch modulated subsequent blinks evoked by the other, showing both inhibition and facilitation.
- The degree of facilitation depended on the relative strengths of the IO and SO stimuli.
- Pairing patterns mimicking synaptic plasticity rules were observed, where input timing relative to circuit activity determined input strengthening or weakening.
Conclusions:
- The trigeminal reflex blink circuit demonstrates input-output plasticity analogous to synaptic plasticity.
- Blink-evoking stimuli act as "presynaptic inputs" and blink circuit activity as "postsynaptic spikes."
- These plasticity mechanisms may contribute to maladaptive reorganization of trigeminal inputs in neurological disorders like hemifacial spasm.
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