View clinical trials related to Parkinson Disease.
Filter by:The purpose of this randomised and controlled study is to investigate the effects of walking training combined with respiratory muscle training on pulmonary function, respiratory muscle strength, and functional exercise capacity.
This qualitative study aims to identify the needs and recommendations of both patients and healthcare professionals in terms of rehabilitation technology, more specific three pre-defined user scenarios. These scenario were developed based on brainstorm sessions with healthcare professionals from the rehabilitation ward of UZ Brussel and AZ Sint-Maria Halle. The purpose of this study is to create an overview of recommendations that will be used to develop the smart devices in a later stage of the SAIRE project.
The objective is to investigate whether AMPS (Automated Mechanical Peripheral Stimulation) is effective in reduction of FOG measured via the FOG-AC (Freezing Of Gait Assessment Course) in people with Parkinson Disease and STN-DBS (Subthalamic Nucleus Deep Brain Stimulation) in a randomized, double-blind, sham-controlled, cross-over trial
This study is designed to evaluate the safety and treatment effects of fosgonimeton (ATH-1017) in subjects with Parkinson's Disease Dementia or Dementia with Lewy Bodies, with a randomized treatment duration of 26 weeks.
This is a 10-week randomized, controlled study to compare the safety and efficacy of two common fiber supplements, psyllium and wheat bran in terms of changes in body weight, nutrition status, and bowel function in patients with Parkinson's Disease who have constipation symptoms. After a 2-week run-in period, participants will be randomized to receive 10 grams daily of psyllium, coarse wheat bran, or maltodextrin (placebo) for 8 weeks. Nutritional and neurological evaluations will be conducted at the beginning and end of the 8-week intervention period.
The investigators aim at testing the efficacy of an app to measure sentence intelligibility in noise in speakers with Parkinson's disease and in healthy controls.
Parkinson disease (PD) is a common disorder in which reduced speed of movement results from inadequate brain production of the chemical dopamine. The most effective treatment for PD is the drug levo-dopa, which partially replaces brain dopamine. Despite decades of successful use, how levo-dopa improves speed of movement in PD is not understood. This observational study recruits participants who have been prescribed levo-dopa by their treating physicians. Before their first dose, immediately after their first dose and later, when their dose has been stabilized, they will engage with the research team to participate in a few simple experiments to measure speed, grip strength, tremor, and stability (on and off of treatment). The purpose of these experiments is to understand how levo-dopa treatment in Parkinson disease enhances movement speed. An important but not understood component of levo-dopa action, the Long Duration Response (LDR), lasts for days to weeks. A basic function of dopamine signaling in the brain is modulation of motivation - the coupling between effort and action values. These experiments will determine if the LDR is associated with relative normalization of motivation function in the brain. The motivation behavior of recently diagnosed PD participants will be examined before and after treatment with levo-dopa to determine if the magnitude of the LDR is correlated with improvements in motivation behavior.
A Study to evaluate the add-on efficacy and safety of opicapone 50 mg or an extra dose of L-DOPA 100 mg for the treatment of wearing-off in patients with PD.
Parkinson's disease (PD) is a progressive and disabling neurodegenerative disease, clinically characterized by motor and non-motor symptoms. The potential of the "Transcranial direct current stimulation" (tDCS) for symptomatic improvement in these patients has been demonstrated, but the factors associated with the best therapeutic response are not known. The electroencephalogram (EEG) is considered as a diagnostic and prognostic biomarker of PD, and has been used in recent studies associated with machine-learning methods to identify predictors of responses in neurological and psychiatric conditions. Using connectivity-based prediction and machine-learning, the investigators intend to identify and compare characteristics related to baseline resting EEG between PD responders and non-responders to tDCS treatment. The recruited participants will be randomized to treatment with active tDCS associated with dual-task motor therapy or motor therapy with visual cues. A resting-state electroencephalography (EEG) will be recorded prior to the start of the treatment. The investigators will determine clinical improvement labels used for machine learning classification, in baseline and posttreatment assessments and will use three different methods to categorize the data into two classes (low or high improvement): Support Vector Machine (SVM), Linear Discriminant Analysis (LDA) and Extreme Learning Machine (ELM). The functional label will be based on the Timed Up and Go Test recorded at baseline and posttreament of tDCS treatment.
The purpose of the study was to determine the effects of constraint induced movement therapy on hand and arm functions in Parkinson's disease patients. It was a randomized controlled trial, conducted in physical therapy department of University of Lahore Teaching Hospital, Mayo Hospital and Lahore General Hospital. 40, male and female Parkinson's disease patients aged between 50-80 years were randomly allocated into two equal groups. In experimental group patients were treated with constraint induced movement therapy and routine physical therapy and in control group patients were treated with routine physical therapy. Patients were treated for a total of 4 weeks, 6 hours in a day. Patients were assessed using Frenchay Arm Test (FAT). SPSS 25 was used to analyze the data.