View clinical trials related to Parkinson Disease.
Filter by:The purpose of this study is to determine the safety, tolerability and blood levels of orally administered anle138b as well as the effect of food and early signs of efficacy in patients with mild to moderate Parkinson´s disease.
This is a 10-week randomized, controlled study to investigate the effect of a Mediterranean diet intervention on gastrointestinal function in Parkinson's disease. After a 2-week run-in period, participants will be instructed to receive standard of care for constipation or receive standard of care + follow a Mediterranean diet for 8 weeks and answer daily and weekly questionnaires. Nutritional and neurological evaluations and stool samples will be collected at 0, 4 and 8 weeks.
Our project is based on the fundamental hypothesis that epidural spinal cord stimulation (SCS) improves Freezing of gait (FOG) in patients with Parkinson's disease. In eight patients implantation of electrodes for SCS at the epidural thoracic level will be performed under general anaesthesia. Evaluation of gait and motor symptoms will be performed with and without stimulation, after a 3-month period for each of the stimulation conditions.This is a pilot, single centre, prospective, randomized, double blinded, cross-over study.
The aim of this study is to assess the safety and the potential efficacy of personalized Local Field Potential (LFP)-based adaptive Deep Brain Stimulation (aDBS), using the implantable pulse generator (IPG) of the "AlphaDBS" System, in Parkinson's Disease patients, chronically implanted in subthalamic nucleus (STN) for DBS, at the time of IPG replacement.
The investigators aim to learn more about symptoms suggestive of a neurodegenerative process.
The central hypothesis is that home health nurses can improve access and provide high quality care when guided by a sophisticated platform that integrates bioinformatics, patient-specific computational modeling, and continuous symptom measurement.
This is an 8 week observational study to evaluate the feasibility of using remote monitoring technologies in future studies of PD. The study will 2 clinical evaluations (one initial, one final), and an 8-week monitoring period including 4 virtual visits where participants will use a combination of digital devices (Emerald touchless sensor system with associated ankle accelerometer, iPhone, Apple Watch, iPad, Fitbit Aria, FitBit Versa, Withings Blood Pressure Monitor Connect, and/or Withings Sleep Mat) during their daily lives.
This is a single-center phase I clinical study aiming to improve gait functions in patients with Parkinson's disease (PD) by using adaptive neurostimulation to the pallidum. The investigators will use a bidirectional deep brain stimulation device with sensing and stimulation capabilities to 1) decode the physiological signatures of gait and gait adaptation by recording neural activities from the motor cortical areas and the globus pallidus during natural walking and a gait adaptation task, and 2) develop an adaptive deep brain stimulation (DBS) paradigm to selectively stimulate the pallidum during different phases of the gait cycle and measure improvements in gait parameters. This is the first exploration of network dynamics of gait in PD using chronically implanted cortical and subcortical electrodes. In addition to providing insights into a fundamental process, the proposed therapy will deliver personalized neurostimulation based on individual physiological biomarkers to enhance locomotor skills in patients with PD. Ten patients with idiopathic Parkinson's disease undergoing evaluation for DBS implantation will be enrolled in this single treatment arm study.
People with Parkinson's disease use compensatory strategies to overcome typical gait disturbances. These strategies rely on attentional mechanisms, however people with Parkinson disease suffer of decline in cognitive function. Therefore, the current study aims at exploring brain engagement and focus of attention process during walking with these compensatory strategies, in people with Parkinson disease. Such exploration would assist in understanding the feasibility of the compensatory strategies in daily lives of people with Parkinson's disease.
Single site observational study focused on elucidating the genes and biochemical pathways involved in causing Parkinson disease.