View clinical trials related to Parkinson Disease.
Filter by:microRNAs (miRNAs) regulate fundamental cell processes. Dysregulation of miRNA expression and function is reported in various diseases including cancer, metabolic disorders as well as neurological disorders. Circulating miRNAs have been proposed to mirror physiological and pathological conditions suggesting their use as biomarkers for various diseases. The study will focus on a case-control study cohort (N=1000) of subjects recruited at the IRCCS Neuromed for which a deep clinical characterization and genome-wide sequencing data are available. This study will enable to identify novel circulating biomarkers for Parkinson's disease (PD). Further, the project will give new insights on the involvement of miRNAs in the etiology of PD and in the understanding of the genetics of the disease thus opening avenues for novel therapeutic strategies.
Inflammation plays a central role in Parkinson's disease. The use of anti-inflammatory drugs was found to reduce the risk of PD . Niacin may play an important role in reducing inflammation in PD. The investigators also found that individuals with PD have a chronic niacin deficiency . The purposes of this study are to (1) examine the blood, urine and spinal fluid of persons with Parkinson's to look for evidence of inflammation and; (2) whether 6 months of vitamin B3 supplements may reduce the inflammation and/or improve symptoms.
This arm is a positron emission tomography (PET) biomechanistic GABA-A receptor target engagement study that includes detailed clinical and motor assessments before and after the i.v. administration of 1 mg flumazenil or placebo in Parkinson disease subjects. Each subject will receive 1mg flumazenil or placebo at two visits.
This single-center, randomized, quadruple-blinded, double-crossover comparative efficacy trial will study the effects of unilateral 50% voltage reduction in axial motor dysfunction for patients with Parkinson's disease that develop treatment-resistant postural stability gait dysfunction after bilateral subthalamic nucleus deep brain stimulation surgery.
People with central nervous system disorders such as spinal cord injury, stroke, cerebral palsy, Parkinson's disease, multiple sclerosis, etc… often have impaired lower extremity function that limits activities of daily life and independence. Different body-weight support systems have been developed to facilitate the rehabilitation process by compensating for the user's residual abilities. However, studies on weight-supported gait training on a treadmill have failed to show superiority over conventional rehabilitation programs for spinal cord injury and stroke. A recent study by the group around Grégoire Courtine showed that body-weight support systems that provide assistance only in the vertical direction disrupt the production of gait and balance, suggesting that current practices may even be detrimental for relearning to walk. For the past year, the Clinique Romande de Réadaptation (CRR) worked together with the G-Lab at EPFL and G-Therapeutics on a new robot platform specifically developed to provide adjustable trunk support along four independent degrees of freedom (LEAP). The investigators were able to draw on their long-term experience, which consists of different body weight support training systems for stroke and spinal cord injury. This knowledge, combined with the input of our therapists and physicians and the specific requirements for people with neurological/musculoskeletal disorders, has resulted in a design that can provide adjustable bodyweight support during over-ground locomotion, treadmill, stairs training, standing up and sitting down and for support during the training of activities of daily living. The scope of this study is to examine how well the robot can be used for rehabilitation therapy in everyday clinical practice. This includes, among other things, technical aspects such as the handling of the hardware, the adaptability of the robot to the patient, and the safety during operation (such as the fall prevention). Various patient-specific aspects will also be evaluated e.g. comfort, positioning, or motivation of the patient. This study also aims to evaluate the software with the various support modes, operating options, and the user interface of the LEAP.
The purpose of this research study is to investigate how the brain and motor behavior changes Parkinson's Disease (PD) over time in response to Exenatide. In previous clinical trials, PD patients have experienced symptomatic improvement on Exenatide and literature suggests it may help slow the progression of Parkinson's. Both will be evaluated in this study.
The arm of this study evaluates possible GABA-A receptor target engagement effects of the FDA-approved medication, transdermal flumazenil (added 4/2020, replaced clarithromycin), in the setting of Parkinson's disease. Half of the subjects will receive transdermal flumazenil for 7-10 days, and half will receive a placebo. [11C]Flumazenil GABA-A receptor PET imaging will be used to assess target engagement effects. Note [11C]Flumazenil GABA-A receptor PET was not performed as part of the transdermal flumazenil study because of a Covid pandemic research amendment.
The main objective of the study is to evaluate the effect of lixisenatide (20 μg/d), versus placebo, administered as add-on therapy with the usual antiparkinsonian treatment, on the progression of motor disability in patients with early PD in order to assess its potential "disease-modifying" effect.
This study evaluates SPECT image data acquired from Spectrum Dynamics' multi-purpose CZT SPECT-CT camera. All subjects will undergo routine clinical Anger SPECT imaging and an additional SPECT acquisition on the CZT SPECT camera. Additionally some subjects will undergo CT on the CZT SPECT-CT camera. The quality of images from each device will be compared.
Neurologic Music Therapy (NMT) sensorimotor techniques are increasingly used to improve spatio-temporal gait parameters and postural stability in the course of Parkinson's Disease and following stroke. Nonetheless, the neurophysiological underpinnings of NMT-mediated gait recovery is still poorly understood. The aim of the study was to investigate the central mechanisms of connectivity related to the application of Rhythmic Auditory Stimulation (RAS) in PD gait rehabilitation. The investigators will enroll 30 patients with PD. They will be randomized into two groups: (A) gait training with Music; (B) conventional treadmill gait training. The experimental group will perform training by means of GT3 (Biodex), where the patient is able to walk (on a treadmill) following specific musical beets and rhythms. The control group will perform only gait treadmill training. Subjects will attend 3 sessions a week for at least 4 weeks. Each session will last 45-min.