View clinical trials related to Parkinson Disease.
Filter by:This study will be evaluating the safety and efficacy of insulin and glutathione in subjects with Parkinson's Disease compared to placebo.
Parkinson's disease affects 1 in 100 people over the age of 60. Parkinson's disease (PD) is a progressive disease of the nervous system that affects movement, produced by the destruction of dopaminergic neurons found in a region of the brain called the basal ganglia Over time, different strategies have been developed to treat and slow the progress of the disease, including pharmacological, rehabilitative and even surgical treatments. Transcranial direct current stimulation (tDCS) is a brain stimulation technique that delivers a low-intensity electrical current to the scalp, usually between 1 and 2 mA over approximately 5 to 30 minutes. The tDCS technique is used with the aim of enhancing a specific brain activity through the neuromodulation of neuronal excitability. In pathologies such as PD, these therapies have been shown to induce immediate after-effects in the brain that translate into reduced gait freezing and improvements in executive function and mobility. In addition, the combined effects of tDCS and physical therapy on the walking ability of PD patients have been studied, where it was shown that anodic tDCS and physiotherapy could be used as a combination treatment to improve patients' gait speed. Another potential therapeutic tool in the treatment of PD consists of the use of sound stimulation with beat frequencies similar to the step. Specifically, this technology is characterized by presenting two tones of different frequencies for each ear in order to influence the mood and mental performance of the listener. This protocol is proposed in order to evaluate the effect of tDCS combined with auditory and binaural stimulus strategies during gait therapy in patients with Parkinson's disease.
The clinical trial aims to evaluate the safety and effectiveness of bilateral subthalamic nucleus (STN) and Globus Pallidus internus (GPi) deep brain stimulation (DBS) with the AlphaDBS IPG System when programmed in adaptive versus conventional stimulating modes. It includes an initial open-label, crossover phase and a long term follow-up phase, during which the patient is free to switch between stimulating modes.
This is a Phase 2b study investigating the efficacy and safety of pirepemat as adjunct therapy on falls frequency in patients with Parkinson disease. Pirepemat is taken for 84 days.
Parkinson's Disease (PD) is a progressive neurological condition that affects movement, balance and cognition, resulting in loss of independence and compromised quality of life over the course of the condition. Research suggests that those detrimental outcomes can be reduced through physical activity (PA) and exercise, especially when those are started early. Educating people with Parkinson's (PwP) on the role of PA and exercise in PD progression can boost PA engagement by increasing enablers such as exercise self-efficacy and removing barriers such as misinformation about exercise and exercise outcomes. Working closely with PwP and healthcare professionals, a physical health education programme was co-designed to address the needs and preferences of PwP around exercise and PA education. The process was supervised by the patient and Public Involvement group attended by PwP, academics, researchers and clinicians working with PwP. The study will utilise an assessor blinded randomised controlled design to investigate the acceptability and feasibility of delivering an online physical health education programme for PwP who are newly diagnosed. Thirty PwP, diagnosed in the last 12-months, will be randomly allocated into two groups: 1) the intervention group in which participants will receive online education modules and will be invited to attend virtual group sessions with a specialist neuro-physiotherapist; 2) the control group which will follow the usual care pathway and participants will receive Parkinson's UK booklets. The aim of the study is to explore an alternative approach to standard care regarding patient education in PD and evaluate the feasibility and acceptability of a co-designed education intervention for newly diagnosed PwP delivered online. Feasibility data will be collected during the study and acceptability data will be assessed via a questionnaire at the end. Outcomes including PA levels, exercise knowledge, exercise efficacy, and participation will be assessed at baseline, post-intervention and at 6 months.
The purpose of this study is to clinically validate new measures of the Personal KinetiGraph® (PKG®).
The purpose of this study is to evaluate the efficacy of an online platform that allows neurologists and therapists to exchange therapy recommendations, communicate assessments and plan physical therapy, occupational therapy as well as speech and swallowing therapy for their patients.
The aim of this study is to implement home-based monitoring (HBM) using remote-capture wearable devices and patient reported outcomes (PROs) in a rather homogeneous subgroup of advanced Parkinson's Disease (PD) patients, suffering from significant motor fluctuations (MF) and Levodopa-induced dyskinesia (LID), over a two-week period. The investigators aim to provide a more comprehensive picture of patient symptoms, severity, and fluctuations and compare these data to interview-derived clinical data.
It has been shown that patients with Parkinson's disease (PD) have impaired kinaesthesia and haptic perception of the upper limbs. In PD patients, these impairments might be involved in the development of hypometria or bradykinesia and may play a role in postural deficits, thereby significantly contributing to the overall disability level. Dedicated conventional or robot-assisted training might improve sensory-motor function in PD patients. In order to provide efficient robot-assisted therapy, robotic devices have to be able to tailor the therapy difficulty to the individual impairment profile of each patient. For difficulty adaptation in robot-assisted therapy, it is important to assess the impairment profiles with the same robotic platform that would be used for therapy, therefore minimizing costs or potential errors coming from the use of different devices. However, up to now, little emphasis has been placed on providing sensory-motor robot-assisted therapy for the upper limbs to persons with PD based on their individual level of impairment. The aim of this study is therefore to evaluate if the assessments of sensory-motor hand function implemented on a robotic device for hand rehabilitation, i.e. the ReHapticKnob, are suitable to measure the impairments of kinaesthesia and haptic perception observed in subjects with Parkinson's disease. If the assessments implemented in the ReHapticKnob are sensitive enough to detect a difference between the sensory-motor function of PD patients and healthy subjects, the device might in the future be used to assess improvements before and after sensory-motor therapy. This is a necessary step before the investigators can use these assessments to tailor the difficulty level of the therapy performed with the ReHapticKnob and to investigate the benefits and impact of such a therapy on the kinaesthetic and haptic impairments of persons with PD.
The study aims to compare the effects of treadmill gait training in a gamified virtual reality environment with tDCS versus treadmill gait training in a gamified virtual reality environment versus treadmill training in people with Parkinson's Disease.