View clinical trials related to Movement Disorders.
Filter by:Background: - New studies in human genetics have revealed information about genetic connections to memory and motor behavior. Researchers are interested in investigating the role of genetics in motor learning, in conjunction with related studies taking place in the Human Motor Control Section of the National Institute of Neurological Diseases and Stroke (NINDS). Participants in motor learning studies conducted at NINDS will be asked to provide blood samples for further evaluation. Objectives: - To create a repository of blood samples from patients and healthy subjects who are participating in NINDS motor learning studies. Eligibility: - Individuals between 18 and 100 years of age who are or will be participating in motor learning research studies at the National Institutes of Health. Design: - Blood draws for genetic testing will usually be done on the same day as the motor learning study. Participants will provide one blood sample for research. - No treatment will be provided under this study....
Background: - Many people can learn to use feedback about brain activity to modify that activity, but is it not known if people with Tourette syndrome can modify their brain activity. - Researchers have evidence that certain areas of the brain are involved in causing tics in people with Tourette syndrome. If people with Tourette syndrome can use feedback about brain activity to modify activity in those parts of the brain, they may be able to modify their brain activity to help control the tics. Objectives: - To determine if people with and without Tourette syndrome can learn to use thought to control brain activity. - To test whether people who have Tourette syndrome can learn to control brain activities, possibly helping to control tics. Eligibility: - Healthy volunteers ages 18 and older who are right-handed and are willing to not consume caffeine or alcohol for 24 hours before the study visit. - Patients with Tourette syndrome who have tics that can be observed and studied. - All participants must be able to undergo magnetic resonance imaging (MRI) scans. Design: - Healthy volunteers (two visits to the NIH Clinical Center over a 2- to 4-week period; visit may last up to 3 hours): - Screening visit, including physical examination and medical history, and a magnetic resonance imaging (MRI) scan if the individual has not had one performed at the National Institutes of Health in the past year. - Study visit: Functional MRI (fMRI) scan to allow researchers to see if volunteers can learn to control their brain activity during a scan. Volunteers will be asked to complete tasks as directed during the fMRI scan. - Patients with Tourette syndrome (three or four outpatient visits over a 4- to 6-week period; each visit may last up to 4 hours): - Screening visit, including physical examination and medical history, and an MRI scan if the individual has not had one performed at the National Institutes of Health in the past year. - Evaluation visit to ask questions about Tourette symptoms and to have patients complete questionnaires about their tics and their mental health. - Study visit: fMRI scan to allow researchers to see if patients can learn to control their brain activity during a scan. Patients will be asked to complete tasks as directed during the fMRI scan. - Final visit: Researchers will ask questions about tic symptoms, have patients complete questionnaires, and perform a brief exam. Afterward, patients will have an fMRI scan similar to the previous one. - All participants will be paid a small amount of money in compensation for their participation in the study.
Purpose of the study: The purpose of this study is to investigate the Wii remote game control device for use in the study of Movement Disorders. The term "Movement Disorders" refers to a group of abnormal medical conditions characterized by involuntary body movements. Current treatment of these disorders is primarily geared to improve symptoms. Rating scales are usually used to grade response to treatment. These rating scales require special training, take a lot of time, and often present with great variability. Thus, the development of a simple device to perform efficacy measurements offers a great advantage over current methods and is less costly.
This study is designed to evaluate the effectiveness of preladenant in the prevention (Part 1) or treatment (Part 2) of antipsychotic induced akathisia in participants with acute psychosis using the Barnes Akathisia Scale.