View clinical trials related to Parkinson Disease.
Filter by:The aim is to study a specific group of PD patients, carriers of mutations in the glucocerebrosidase (GBA) gene, which is the most common genetic risk factor for PD and is a harbinger of aggressive cognitive and motor decline. Approximately 12-17% of PD patients undergoing DBS are GBA mutation carriers. GBA mutation carriers with PD have a specific phenotype characterized by more significant motor dysfunction and reduced short-term visual memory function compared with their non-GBA counterparts. Thus as GBA mutation carriers have a "signature" phenotype, the investigators hypothesize that these GBA mutation carriers have a unique "signature" of oscillatory activity that can be distinguished from non-mutation carriers during motor activation and during cognitive tasks. Identification of this "signature" will provide critical information that is required to: 1) understand the underlying neurophysiological mechanisms responsible for the aggressive disease course of GBA associated PD, and 2) further develop customized adaptive DBS systems.
The aim of the study is to investigate the change of lower and upper extremity skills with dual task in Parkinson's disease patients and to determine the differences between Parkinson's disease patients with different stages of disease and the healthy controls regarding the change of lower and upper extremity skills with dual task.
This pilot study aims to evaluate the feasibility of Managing Fatigue: The Individual Program (MFIP) in people living with Parkinson's disease. The Managing Fatigue Program, a six-week, self-management energy conservation course, focuses on strategies that help people with fatigue to make changes to save and use their energy to accomplish their daily activities. Several studies have adapted and evaluated different delivery formats of the program in conditions similar to Parkinson's disease, demonstrating that the Managing Fatigue Program is effective in reducing fatigue impact, depression, sleep problems, and improving quality of life, participation and self-efficacy. While this program has been tested in people living with many chronic conditions there has been only limited inclusion of people living with PD. This feasibility study, using a mixed-methods approach, nested in a pilot randomized control design, will evaluate the feasibility of the Individual Managing Fatigue Program from the perspectives of people with Parkinson's disease, and prepare for a full-scale randomized controlled trial (RCT). In this study, Managing Fatigue: The Individual Program (MFIP) will be delivered using videoconferencing. This feasibility study will use a mixed-methods approach, nested in a pilot two-armed randomized controlled design. Using a concurrent mixed-method design, we will collect two types of data (qualitative and quantitative) simultaneously, expanding our understanding of the feasibility of the program. Data will be collected using feasibility questionnaires developed by the research team, standard outcome measures, and group discussions. Multiple recruitment strategies will be used to recruit a convenience sample of 50 participants (25 in each group) from across the province of Nova Scotia, Canada. Eligible participants will be randomly assigned to either the control or experimental group using sealed envelopes. The study outcome measures will be administered three times during the study; pre-test, post-test after 6 weeks, and at three-month follow-up. The results of this study will determine whether it is feasible to do a full-scale RCT in the future. If the known beneficial effects of the Managing Fatigue program extend to the PD population, this research will be the evidence needed to support the integration of this novel solution into the care of people with PD.
The study will evaluate the impact of exercise training program followed by long-walking onon supervised and unsupervised gait assessment in Parkinson´s disease and control subjects.
We hypothesise that a real-time quaking induced conversion assay for the detection of pathological alpha-synuclein (α -syn RTQuIC) can be used to differentiate between cases of idiopathic REM-sleep behaviour disorder (RBD) and RBD that is symptomatic of prodromal α-synucleinopathies.
The aim of the study is to optimise the hand dexterity exercising program in virtual reality (VR) for patients with multiple sclerosis and Parkinson's disease. Little research has been published on this topic, but the preliminary results are promising. Different levels of difficulty of a VR game will be tested. The patients will be assessed using neuropsychological tests of executive functions, visuospatial abilities, mental speed, flexibility and motor speed. Functional ability, coordination and cognitive abilities will also be assessed.
Clinical study to demonstrate an at least equivalent performance of a new PET molecular Imaging radiopharmaceutical named [18F] LBT-999 in brain imaging compared to the SPECT reference method named [123I]-FP-CIT to establish the differential diagnosis between Parkinson's Disease and Essential Tremor.
This study evaluates the bioavailability and bioequivalence between two active pharmaceutical ingredient (API) sources of opicapone (OPC) at two different dosage strengths (50 mg and 25 mg) after single and multiple dose administration under fasting conditions in healthy volunteers and assess soluble catechol O methyltransferase (S-COMT) activity in 2 API sources of OPC at two different dosage strengths (50 mg and 25 mg) after single and multiple dose administration under fasting conditions in healthy volunteers
This study includes 35 PD patients who underwent submandibular gland needle biopsy. 25 neurologically healthy patients of the local otolaryngological clinic, in whom submandibular gland needle biopsy was performed due to a clinical indication, serve as controls.
Parkinson's disease has only pharmacological (essentially dopaminergic) and surgical treatment (essentially high-frequency deep brain stimulation), that are symptomatically effective. none of them is curative, and has the ability to slow down the disease and to protect dopaminergic neurons from death by neurodegeneration. Experimental results, based on preclinical studies, suggest that brain illumination in the Near-InfraRed (NIR) range is likely to slow down this neurodegenerative process. Thus, a medical device system (called Ev-NIRT) has been developed for 670 nm intracerebral illumination of the substantia nigra pars compacta (SNpc), and is planned to be tested for the treatment of Parkinson's disease. In this pilot study the investigators will evaluate the feasibility and tolerance of surgery and brain illumination thanks to the Ev-NIRT medical device, in a group of 7 de novo Parkinson's patients implanted with the innovative medical device. Patients will be monitored for 4 years.