Dystonia Clinical Trials
15 studies are recruiting for dystonia in the United States right now. Each one is listed on ClinicalTrials.gov, the public registry the research teams themselves file with. TrialBoost is not a doctor, a research site, or a study sponsor: the research team decides who takes part.
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Studies now recruiting
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A Study to Evaluate the Efficacy, Safety, and Tolerability of VIM0423 in Individuals With Isolated Dystonia
Stride Dystonia is a randomized, double-blind, placebo-controlled study to evaluate the efficacy, safety, and tolerability of VIM0423 in individuals with isolated dystonia. The main objectives of this clinical trial are to determine the following: * Does VIM0423 therapy improve dystonia symptoms co…
- Stage
- Phase 2
- Ages
- 18 to 70
- Site
- Vima Site #033, Birmingham, Alabama
- Locations
- 38 in total
- Run by
- Vima Therapeutics
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Quantifying Motor Network Dynamics to Predict and Enhance Outcomes in Pediatric Dystonia
The goal of this study is to understand the development and progression of childhood dystonia, a movement disorder, in children. The main questions it aims to answer are: How does the activity of the neural network evolve in children with dystonia in the context of motor development? What are the e…
- Stage
- Not phased
- Ages
- 6 to 21
- Site
- Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio
- Run by
- Children's Hospital Medical Center, Cincinnati
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Deep Brain Stimulation (DBS) Retrospective Outcomes Study
The primary objective of this study is to characterize real-world clinical outcomes of Deep Brain Stimulation (DBS) using retrospective review of de-identified patient records.
- Stage
- Not phased
- Ages
- Any age
- Site
- St. Joseph's Hospital & Medical Center, Phoenix, Arizona
- Locations
- 20 in total
- Run by
- Boston Scientific Corporation
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Deep Brain Stimulation Surgery for Movement Disorders
Background: - Deep brain stimulation (DBS) is an approved surgery for certain movement disorders, like Parkinson's disease, that do not respond well to other treatments. DBS uses a battery-powered device called a neurostimulator (like a pacemaker) that is placed under the skin in the chest. It is u…
- Stage
- Not phased
- Ages
- 18 to 99
- Site
- National Institutes of Health Clinical Center, Bethesda, Maryland
- Run by
- National Institute of Neurological Disorders and Stroke (NINDS)
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Physiological Brain Atlas Development
The NIH grant has funded the development of a physiological brain atlas registry that will allow us to significantly improve the data collectioin and use of physiological data into a normalized brain volume. This initially was used to improve DBS implants for Parkinson's Disease, Dystonia, Essentia…
- Stage
- Not phased
- Ages
- 6 to 90
- Site
- Vanderbilt Univeristy, Nashville, Tennessee
- Run by
- Vanderbilt University Medical Center
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Pharmacogenomic Contributions to Trihexyphenidyl Biotransformation and Response in Children With Dystonic Cerebral Palsy
This study looks at how a medicine called trihexyphenidyl works in children with dystonic cerebral palsy. The study aims to understand how trihexyphenidyl is broken down and used in the body of pediatric patients and whether this is impacted by a person's genetics. Information from this study will …
- Stage
- Phase 1
- Ages
- 5 to 17
- Site
- Children's Mercy Hospital Kansas City, Kansas City, Missouri
- Run by
- Children's Mercy Hospital Kansas City
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Cortical-Basal Ganglia Speech Networks
In this research study the researchers want to learn more about brain activity related to speech perception and production.
- Stage
- Not phased
- Ages
- 18 to 85
- Site
- Massachusetts General Hospital, Boston, Massachusetts
- Run by
- Massachusetts General Hospital
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A Multicenter Pediatric Deep Brain Stimulation Registry
There is limited data on outcomes for children who have undergone deep brain stimulation (DBS) for movement disorders, and individual centers performing this surgery often lack sufficient cases to power research studies adequately. This study aims to develop a multicenter pediatric DBS registry tha…
- Stage
- Not phased
- Ages
- 0 to 18
- Site
- Boston Children's Hospital, Boston, Massachusetts
- Run by
- Boston Children's Hospital
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Sleep-specific DBS Therapy in Parkinson's Disease
Sleep-wake disturbances are a major factor associated with reduced quality of life of individuals with Parkinson's disease (PD), a progressive neurological disorder affecting millions of people in the U.S and worldwide. The brain mechanisms underlying these sleep disorders, and the effects of thera…
- Stage
- Not phased
- Ages
- 21 and older
- Site
- University Of Minnesota, Minneapolis, Minnesota
- Run by
- University of Minnesota
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Abbott DBS Post-Market Study of Outcomes for Indications Over Time
The purpose of this international study is to evaluate long-term safety and effectiveness of Abbott deep brain stimulation (DBS) systems for all indications, including Parkinson's disease, essential tremor or other disabling tremor and dystonia.
- Stage
- Not phased
- Ages
- Any age
- Site
- University of South Florida - Department of Neurology, Tampa, Florida
- Locations
- 48 in total
- Run by
- Abbott Medical Devices
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Deep Brain Stimulation in Laryngeal Dystonia and Voice Tremor
The goals of this project are 1) to determine the incidence of neurological voice disorders in patients with dystonia and essential tremor undergoing deep brain stimulation (DBS), 2) investigate the neuroimaging and intracranial neurophysiology correlates of voice dysfunction in these subjects, and…
- Stage
- Not phased
- Ages
- 18 to 80
- Site
- Massachusetts General Hospital, University of California San Francisco, University of Utah, Boston, Massachusetts
- Run by
- Massachusetts Eye and Ear Infirmary
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Clinical Validation of DystoniaNet Deep Learning Platform for Diagnosis of Isolated Dystonia
This research involves retrospective and prospective studies for clinical validation of a DystoniaNet deep learning platform for the diagnosis of isolated dystonia.
- Stage
- Not phased
- Ages
- Any age
- Site
- Massachusetts Eye and Ear Infirmary, Boston, Massachusetts
- Run by
- Massachusetts Eye and Ear Infirmary
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Effects of Exercise on Dystonia Pathophysiology
The purpose of this research study is to investigate how the brain and motor behavior changes in individuals with dystonia in response to exercise training.
- Stage
- Not phased
- Ages
- 30 to 85
- Site
- University of Florida, Gainesville, Florida
- Run by
- University of Florida
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Dystonia Genotype-Phenotype Correlation
The purpose of this study is to (1) investigate the effect of known dystonia-causing mutations on brain structure and function, to (2) identify structural brain changes that differ between clinical phenotypes of dystonia, and to (3) collect DNA, detailed family history, and clinical phenotypes from…
- Stage
- Not phased
- Ages
- 11 and older
- Site
- University of Texas Southwestern Medical Center, Dallas, Texas
- Run by
- University of Texas Southwestern Medical Center
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Clinical Outcomes for Deep Brain Stimulation
The object of this study is to longitudinally collect clinical outcomes of patients receiving deep brain stimulation for movement disorders with the objective of making retrospective comparisons and tracking of risks, benefits, and complications.
- Stage
- Not phased
- Ages
- Any age
- Site
- Washington University in St Louis, St Louis, Missouri
- Run by
- Washington University School of Medicine
How to read this page. Every study here comes from ClinicalTrials.gov, the public registry that research teams are required to file with. We have summarised each one in plain language and shown where it is running. We have not changed what any study says it is doing.
What TrialBoost is. We help people find research that might suit them, and, if they ask us to, we pass their details to the research team running it. We are not a doctor, a research site, or a study sponsor, and we do not decide who takes part in anything. Joining costs nothing and you can change your mind at any point.
Paid placement. Some studies pay us when someone asks to be connected to them. Those are labelled Sponsored wherever they appear, and they only appear when they match what you were actually looking for.