View clinical trials related to Parkinson Disease.
Filter by:- Background : Deep brain stimulation of SubThalamic Nucleus (STN-DBS) is an effective treatment for a large variety of movement disorders. However, the efficacy of STN-DBS relies on unclear mechanisms. - Purpose: In this study, using optical imaging, the investigators will evaluate the cortical hemodynamic changes induced by STN-DBS of parkinsonian patients during motor task and delay discounting task. the investigators will perform an optical imaging study using Near-InfraRed Spectroscopy (NIRS) in a parkinsonian patient after STN-DBS. The investigators will measure bilateral local cortical hemodynamic changes under "On" and "Off" stimulation conditions and during a motor task (left hand movement) and delay discounting task Relative concentration changes of oxy-Hb, deoxy-Hb, and total Hb will be continuously analyze. - Primary outcome: Study of local cortical hemodynamic change (oxy-Hb, deoxy-Hb, and total Hb) under " on " and " off " stimulation during a motor task.
The study will look into the changes of Deep Brain Stimulation (DBS) measured impedances in patients of Parkinson disease (PD) as a function of their functional state (lying, sitting and walking) and dopaminergic medication intake (levodopa or dopamine agonists). The goal is to use DBS measured impedance as a surrogate of the functional and medication states of PD patients.
Parkinson's disease (PD) is a neurodegenerative brain disorder that impairs the ability to perform functions such as grooming, dressing, cooking, and other activities of daily living. PD affected between 4.1 and 4.6 million people worldwide in 2005, and it is projected that up to 9.3 million people will be affected by 2030. Although current pharmacological therapies provide beneficial effects on motor symptoms of the disease (tremor, rigidity, and bradykinesia), intolerable disability eventually develops in most patients. A disease-modifying therapy that slows disease progression is a major unmet medical need in PD. Numerous agents have neuroprotective effects in pre-clinical laboratory models, but none have been shown to have indisputable disease-modifying effects in clinical trials for patients with PD. The purpose of this research study is to investigate how the brain and motor behavior changes in PD over time in response to rasagiline which is a monoamine oxidase-B(MAO-B) inhibitor. The drug rasagiline will be tested in this study as the MAO-B inhibitor. Rasagiline has been prescribed for many years to treat symptomatic Parkinson's disease. It is FDA approved for the treatment of Parkinson's disease but has not been shown to slow disease progression. The outcome and impact of this study will provide the first evaluation of MAO-B inhibitors at slowing the progression of the nigrostriatal pathway using advanced Magnetic Resonance Imaging (MRI) and functional Magnetic Resonance Imaging (fMRI) methods in PD.
Participants are randomly allocated to one of two treatment groups. In one group, participants are given capsules of simvastatin to take orally (by mouth) for 24 months. In the other group, participants are given placebo (dummy) capsules to take orally for 24 months. At the start of the study, when they receive their medication, participants complete a number of questionnaires and motor (movement) tests (a walking test and a finger tapping test). Participants in both groups also attend a further 6 clinic visits after 1, 6, 12, 18 and 24 and 26 months, where they are asked about their health and any medication they are taking, as well as repeating the questionnaires and motor tests. For 4 of the clinic visits, the participants will be asked to attend in the 'OFF medication' state (having omitted their usual PD medication) so that the researchers can get a true picture of their disease without it being masked by their normal medication.
Introduction: Parkinson's disease (PD) is a progressive neurodegenerative disorder of dopaminergic neurons that can cause some mobility limitations and it has association with quality of life (QOL) in patients with PD. Virtual reality (VR) has been used to treat of these patients Objective: Evaluate the functional capacity and QOL of individuals with PD using VR with X-Box Kinect®. Methods: Were selected 20 individuals classified as stages 1-3, aged 50-75 years. They were divided by lot into two groups (control and experimental) with ten patients in each. The group (CG) treated with exercises (conventional therapy) during five-week, with two sessions per week lasting 60 minutes, while the experimental group (EG) spent half the time with conventional physical therapy and other half of time in virtual rehabilitation (VR). Subjects were evaluated before and after treatment using the following scales: Unified Parkinson's Disease Rating Scale and Parkinson's Disease Questionnaire .
Pre-QuantiPark is a pilot study to evaluate the reliability and responsiveness of ActiMyo measured activity in PD patients. The purpose of the study is to provide validation of the ActiMyo, an innovative home-recording device enabling use in clinical trials and as an innovative tool for PD patient care.
The investigators will investigate the effects of an 8-week resistant starch (RS) supplementation (5 g twice a day) in patients with Parkinson Disease and matched controls on: 1. symptoms of constipation (assessed by clinical scores); 2. fecal short chain fatty acid concentrations (measured by chromatography); 3. gut microbiota composition.
This study investigates the central mechanisms of Overactive Bladder (OAB) in Patients with Parkinson's Disease (PD). The plan is to enroll 10 adults with Parkinson's disease and Overactive bladder (PD + OAB) and 10 adults with Parkinson's disease only (PD). Both groups will undergo fMRI (functional MRI).
The purpose of this study is to determine the effect of three single oral doses of nebicapone (50 mg, 100 mg and 200 mg) on the levodopa pharmacokinetics when administered in combination with a single-dose of controlled release levodopa 100 mg/benserazide 25 mg (Madopar® HBS 125).
The purpose of this study is to determine whether DA-9701(Motilitone) is effective and safe for the treatment on health-related quality of life in Parkinson's disease (PD) patients with gastrointestinal symptoms.