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| Sponsored by: |
National Institute of Neurological Disorders and Stroke (NINDS) |
|---|---|
| Information provided by: | National Institutes of Health Clinical Center (CC) |
| ClinicalTrials.gov Identifier: | NCT00001776 |
Purpose
Imaging studies of the brain have revealed the different areas involved in the processes of learning and reasoning. However, the specific role these regions play in these processes, or if stimulating these areas can improve these processes is unknown.
Researchers would like to use repetitive transcranial stimulation (rTMS) to better understand the roles of individual brain regions on the processes of learning and reasoning. Repetitive transcranial magnetic stimulation (rTMS) involves the placement of a cooled electromagnet with a figure-eight coil on the patient's scalp, and rapidly turning on and off the magnetic flux. This permits non-invasive, relatively localized stimulation of the surface of the brain (cerebral cortex). The effect of magnetic stimulation varies, depending upon the location, intensity and frequency of the magnetic pulses.
The purpose of this study is to use rTMS to help determine the roles of different brain regions in the development of implicit learning of motor sequences and analogic reasoning. In addition, researchers hope to evaluate if stimulation of these regions speeds up the process of learning or analogic reasoning.
| Condition | Intervention |
|---|---|
|
Cerebellar Disease Dementia Healthy Parkinson's Disease |
Device: Cadwell Rapid Rate Magnetic Stimulator |
| Study Type: | Observational |
| Official Title: | Can Stimulation of Frontal Cortical Regions Facilitate Performance on Tests of Procedural Implicit Learning and Analogical Reasoning? |
| Estimated Enrollment: | 122 |
| Study Start Date: | October 1997 |
| Estimated Study Completion Date: | December 2003 |
The human frontal cortex subserves a number of psychological processes including those necessary for adequate implicit learning of visuomotor sequences and analogical reasoning.
Implicit learning is a form of procedural learning indicated by behavioral improvement without awareness of a repeated stimulus structure that leads to improved performance. This type of learning has been associated with activation of the primary motor cortex (M1) in neuroimaging studies.
While neuroimaging studies contributed to identify this region, they do not provide information about its relative role in the process of implicit learning. Is activity in this region necessary for implicit learning to occur? Is it possible that "energizing" this region using subthreshold transcranial magnetic stimulation can accelerate the implicit phase of learning? The purpose of this protocol is to transiently stimulate focally M1 and dorsolateral prefrontal cortex during acquisition of implicit learning and evaluate the effects on reaction times and accuracy of performance. We plan to study a group of normal volunteers, and three groups of patients who demonstrate impaired visuomotor procedural learning tasks: those with Parkinson's disease, cerebellar disease, and focal frontal lesions. The result expected from this study is an advanced understanding of the role that the motor cortex and dorsolateral prefrontal cortex plays in implicit learning in health and disease. Additionally, we expect to be able to shorten the implicit phase of learning by rTMS particularly in the patient groups that exhibit abnormal procedural learning.
Eligibility| Genders Eligible for Study: | Both |
| Accepts Healthy Volunteers: | Yes |
INCLUSION CRITERIA
Right handed normal volunteers (18-65 years old).
Patients with Parkinson's disease off medication.
Patients with cerebellar deficits.
Patients with frontal lobe lesions.
Patients with frontal lobe dementia.
EXCLUSION CRITERIA
Subjects with personal or family history of seizures or other neurological disorders.
Pregnant women.
Volunteers or patients with severe coronary artery disease.
Metal in the cranium except mouth.
Intracardiac lines.
Increased intracranial pressure as evaluated by clinical means.
Cardiac pacemakers.
Intake of neuroleptics.
Contacts and Locations
More Information
| Study ID Numbers: | 980025, 98-N-0025 |
| Study First Received: | November 3, 1999 |
| Last Updated: | March 3, 2008 |
| ClinicalTrials.gov Identifier: | NCT00001776 History of Changes |
| Health Authority: | United States: Federal Government |
|
Magnetic Stimulation Plasticity SRTT Sequence Implicit Memory Explicit Memory |
Memory Parkinson's Disease Cerebellar Deficit Frontal Lobe Lesions Frontal Lobe Dementia Normal Volunteer |
|
Ganglion Cysts Basal Ganglia Diseases Central Nervous System Diseases Healthy Brain Diseases Neurodegenerative Diseases Cognition Disorders Delirium, Dementia, Amnestic, Cognitive Disorders |
Mental Disorders Parkinson Disease Movement Disorders Parkinsonian Disorders Dementia Cerebellar Diseases Delirium |
|
Delirium, Dementia, Amnestic, Cognitive Disorders Mental Disorders Movement Disorders Parkinson Disease Basal Ganglia Diseases Nervous System Diseases |
Central Nervous System Diseases Parkinsonian Disorders Neurodegenerative Diseases Brain Diseases Dementia Cerebellar Diseases |