View clinical trials related to Parkinson Disease.
Filter by:This study will help us better understand how the brain works in people with Parkinson's disease (PD). PD is a brain disease that gets worse over time, and affects over 10 million people world-wide. A common treatment for PD is Deep Brain Stimulation (DBS). To improve DBS therapy for PD, we need a deeper understanding of how the different parts of the brain work together in PD, and how this relates to movement and thinking problems that people with PD experience. We may be able to use the results of this study to improve DBS treatments in the future.
This protocol will leverage the novel (on-label, FDA-approved) local field potential measuring capability of the Medtronic Percept™ PC DBS system to study the effects of globus pallidus internus and globus pallidus externus (GPi, GPe) DBS on: the wash-out and wash-in dynamics of motor behavior and local field potentials (LFPs) and correlations between fluctuations in gait and LFPs during activities of daily living (recorded over 4 weeks). These experiments will elucidate the relationships between GP LFPs oscillations, lower limb function, postural control and gait performance.
The investigators will run an at-home usability study of a newly developed home exercise device (FitMi PD) for individuals with Parkinson's disease. FitMi PD uses embedded sensors that can track and record the user's direction and degree of movement while performing exercises described on a computer.
The importance of physical activity for individuals with movement disorders, including Parkinson disease and Essential tremor, has been established. Barriers including patient engagement continue to limit effectiveness. Golf requires skills found challenging to individuals with movement disorders. This study seeks to assess the feasibility and effectiveness of an outpatient-based rehabilitation program incorporating golf skills and activities on functional measures and quality of life.
This study will investigate the impact of three common exercise modalities, cardiovascular, resistance, and multimodal (i.e., a combination of the previous two) training, on sleep quality and architecture in persons with Parkinson's disease (PD). Furthermore, the project will investigate whether the potential positive exercise-induced changes in sleep are associated with improvements in different quality of life (QoL)-related aspects. Participants will perform either cardiovascular training (CT), resistance training (RT), multimodal training (MT), or will be allocated to a control condition (i.e., waiting list - CON) for 12 weeks. Training will be performed three times/week. The assessments will be conducted at baseline, post-intervention, and follow-up (i.e. 8 weeks after the intervention) by assessors blinded to the participants' group allocation.
This is a 17-week double-blind, placebo-controlled, randomized, flexible-dosing, parallel-group, multicenter study designed to evaluate the efficacy and safety of suvecaltamide for the treatment of moderate to severe residual tremor in adult participants with Parkinson's disease (PD). The target population represents participants who have tremor that is not adequately controlled by PD medications and that interferes with their activities of daily living (ADL) and/or with their performance of tasks.
The Balloon Analogue Risk Task [BART] is an experimental task modelizing risky behaviors. In Parkinson disease, the correlation between BART and modifications of cerebral activity in ventral striatum has been shown. BART thus seems to be particularly adapted for modelization of HYPERdopaminergic behavioral disorders [TYPER] into Parkinsonian patients. Previously, a version of the BART performed with EEG has been specifically developped by the Centre d'Investigation Clinique of Besançon University Hospital, in collaboration with the Clinical and integrative neurosciences laboratory. Preliminary data suggest that the analysis of evoked potentials including Feedback-related Negativity [FRN], P300 wave, and Reward Positivity [RewP], could help assessing the motivational and attentional attributes of decision making and the delayed treatment of any reward. The hypothesis of the study that the EEG version of the BART could help predicting the risk to develop TYPER into Parkinsonian patients treated by dopaminergic in routine care.
This study is a nonrandomized, pilot study of an interdisciplinary, patient-centric model of health care delivery in a "boot camp" style structured clinic for people diagnosed with Parkinson's disease (PwPD). 20 participants will attend a three session EMPOWER PD clinic and a two month follow up interview. The primary objective is to assess feasibility and acceptability of the newly developed clinic intervention as well as individual perception of experience and barriers.
The study is a multi-center, observational study to evaluate the feasibility of α-synuclein-related biomarkers and imaging data in the disease diagnosis and prognosis evaluation in Synucleinopathies and healthy subjects.
Study Rationale: No accurate tests currently exist to diagnose Parkinson's disease (PD) and the conditions which mimic it (atypical parkinsonism) at a very early stage. Similarly there are no accurate ways to track how these diseases progress in a very precise manner. Recording eye movements and pupils may be a very sensitive way of doing this and may contain important information about a patient's diagnosis and their cognitive and motor function. Hypothesis: We hypothesize that measuring eye movements and pupil changes while people watch short video clips will differentiate PD and atypical parkinsonism at an early stage. We hypothesize that eye movements and pupil changes will be able to track how a person's disease changes over time and could even predict their disease course from the start. Before we can do this, we need to be able to accurately differentiate between PD and atypical parkinsonism and see how eye movements vary among people with the same disease. Study Design: We will ask a large number of people with PD and atypical parkinsonism to watch very brief video clips while we record eye movements and pupil responses. This is like changing the television channel every few seconds and observing what happens to a person's eyes as they search the new clip. We will compare these results between different disease groups and correlate them with clinical features of PD and atypical parkinsonism. Impact on Diagnosis/Treatment of Parkinson's disease: This may have enormous impact in the assessment of people with PD. It may become an important diagnostic tool, a prognostic marker at the early stage of disease, as well as providing the ability to track disease progression in clinical trials. Next Steps for Development: Once we can demonstrate that eye tracking can differentiate these conditions, we will follow a large number of patients to see how their eye movements and pupils change over time with their disease. If this is a reliable way to track disease it could be used to measure disease progression in these conditions and response to treatment.