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This study will determine how the brain learns a new motor task when the subject practices the task and watches others perform it (action observation) at the same time.
Healthy normal volunteers between 18 and 55 years of age may be eligible for this study. Candidates are screened with a medical history, general and neurological exam, and a brain MRI if one has not been done within 12 months of entering the study. Participants undergo one or both of the following experiments:
Effect of Transcranial Magnetic Stimulation on Motor Training and Action Observation
Subjects participate in at least 12 4-hour test sessions, separated by at least 1 day. Each session includes the following:
Effect of Pharmacological Agents on Motor Training and Action Observation
Subjects participate in no more than 12 5-hour test sessions, separated by at least 2 days. In the course of the 12 sessions, subjects receive each of three medications - dextromethorphan, scopolamine and rivastigmine - three times and a placebo (pill with no active ingredient) three times. During each session, subjects have TMS measurements, behavioral measurements and electromyography as described in experiment 1.
Full description
Motor training (MT) elicits formation of motor memories in the human primary motor cortex. Observing another individual perform motor training (Action Observation, AO) also results in formation of motor memories in M1. AO enhances motor training effects (MT+AO) on the formation of motor memories. Possible underlying mechanisms include long-term potentiation (LTP), a process influenced by N-methyl-D-aspartate (NMDA) receptor activation, gamma-aminobutyric acid (GABA), norepinephrine (NE), dopamine and acetylcholine (Ach), taking place at the confluence of inputs from PMv over the primary motor cortex (M1).
The purpose of this protocol is to gain insight into the mechanisms underlying motor memory formation by MT+AO. We plan to perform two different types of experiments: In experiment 1, we will modulate activity in PMv using TMS to investigate the role of this cortical area on motor memory formation induced by MT+AO. In experiment 2, we will test the effects of single doses of (a) the NMDA receptor antagonist dextromethorphan, (b) the muscarinic receptor antagonist scopolamine, both known to disrupt LTP, and (c) the cholinesterase inhibitor rivastigmine, which enhances LTP.
The primary outcome measure of motor memory formation will be the percentage of TMS-evoked movements that fall within the training target zone (TTZ) before and after MT+AO. The secondary outcome measure will be the percentage of TMS-evoked movements that fall within TTZ before and after MT alone and AO alone.
Expected results are (1) upregulation of activity in PMv using 0.1 Hz TMS will enhance motor memory formation induced by MT+AO more than sham TMS and downregulation of PMv using 0.9 Hz TMS and (2) dextromethorphan and scopolamine will decrease but rivastigmine will increase motor memory formation induced by MT+AO with placebo. This study may provide useful information on the mechanisms underlying the beneficial effects of action observation on neuroplasticity.
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INCLUSION CRITERIA:
EXCLUSION CRITERIA:
Subjects are not eligible for this experiment if they:
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Data sourced from clinicaltrials.gov
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