View clinical trials related to Parkinson Disease.
Filter by:The goal of this project is to identify objective, sensitive, and convenient measures for assessing early signs of Parkinson's disease in an at-risk population at home. We will do so by using a wireless sensor and analyzing the radio signals that bounce off patients' bodies, while patients go about their normal life without needing to wear sensors, answer questionnaires, or actively perform any tests.
The present multicenter, randomized, double-blind, placebo-controlled clinical trial will investigate whether the prolonged administration of high-dose oral Ambroxol over 52 weeks is safe, tolerable, able to change Glucocerebrosidase enzyme activity and alpha-synuclein levels in the central nervous system and, ultimately, to reduce the progression of cognitive decline and motor disability in 60 individuals with Parkinson's disease with mutations of the glucocerebrosidase gene (GBA1; OMIM 606463). Participants will undergo clinical, biomarker blood and cerebrospinal fluid analysis, neuropsychological, neuroimaging assessment throughout the course of the study.
People with PD have lower cardiopulmonary function than their age matched peers. This decline can further impair a person's ability to participate in exercise and daily activities. Furthermore, the limitations in cardiopulmonary function can have a severe impact on mortality. There is evidence indicating the positive changes IMT can have on cardiopulmonary function in people with PD. Through intensive daily exercise people with PD have shown improvements in maximum inspiratory pressure and maximum expiratory pressure though detraining does occur when the intervention is not continued. The purpose of the proposed study is to determine if improvements in expiratory muscle strength can be maintained with a maintenance inspiratory muscle training program. The hypothesis is that there will be a significant change from baseline at the three and six month follow ups.
The purpose of this project is to increase our understanding of the early state and temporal evolution of neuroplastic changes in the cortex and subthalamic nucleus (STN) of people with PD, and the relationship of these changes to the emergence and expression of PD motor and non-motor signs. Neurophysiological biomarkers derived from this work may be important for the early detection and prediction of progression of disease. They can also provide the means to assess the efficacy of interventions designed to prevent or slow disease progression.
The objective of this protocol is to obtain on Parkinson's disease more accessible therapeutic targets than deep brain stimulation (HFS-STN), the neurosurgical treatment for this pathology. This study will pave the way for new forms of adaptive processing for the HFS-STN. It could become functionally coupled to a minimalist EEG centred on the motor cortex and to software for decoding, live or slightly delayed, classes of movements performed. On the one hand, this device could be used as a sensor of the quality of the information transmitted by the cortical network, thus allowing the selection of the optimal parameters of the HFS-STN on the basis of the movement decoding score. On the other hand, this device could lead to adapting the HFS-STN treatment over time by regularly calculating the recognition scores of the different movements performed and comparing them to the initial scores.
The overall goal of this protocol is to: Evaluate [18F]UCB-2897 as an α-synuclein targeted radiopharmaceutical. The primary objective is: • Confirm a specific α -synuclein signal with [18F]UCB-2897 in participants with PD and/or MSA relative to healthy volunteers Secondary and exploratory objectives are: - Determine the safety and tolerability of microdose [18F]UCB-2897 - Evaluate preliminary dosimetry of [18F]UCB-2897 Additional exploratory objectives are: - Determine the pharmacokinetics / metabolism of [18F]UCB-2897 - Determine the optimal imaging protocol for [18F]UCB-2897
The present multicenter randomized study investigates whether the management of patients with parkinsonism by a nurse specialist (case-manager) can significantly improve patients' quality of life over 12 months, compared to control patients managed with the standard-of-care process. Participants will be evaluated with clinical scales testing quality of life, motor and non-motor symptoms, and the number of unscheduled hospital access throughout the course of the study.
The purpose of the ROAM-DBS study is to compare the time needed to achieve a 1 point improvement Patient's Global Impression of change (PGIC) relative to the subject's status at the end of the ADROIT initial programming visit in subjects who receive programming updates via in-clinic sessions and subjects who additionally have the option of receiving programming updates via Virtual Clinic sessions. The study intends to demonstrate shorter times to achieve benefit in the Virtual Clinic cohort.
Parkinson's disease (PD) impacts different types of neural oscillations in the brain, including beta (13-30Hz) and gamma oscillations (30-80Hz), which contributes to PD's cardinal symptoms of resting tremor, rigidity, bradykinesia (slowness of movement), and gait instability. The investigators' lab has developed a non-invasive method of increasing gamma power in the brain using Gamma Entrainment Using Sensory Stimulation (GENUS) through light, sound, and tactile stimulation devices. For this study, 40 participants with mild Parkinson's disease will be recruited, and the investigators will assess their brain waves with electroencephalogram (EEG) before, during, and after light, sound, and tactile stimulation to determine the safety, feasibility, and optimization of GENUS as a potential therapy in the PD population.
The Luxembourg Parkinson's Study is an ongoing longitudinal nationwide monocentric observational study. It collects extensive clinical, molecular, genetic, and digital device-based longitudinal data, as well as foreseen post-mortem diagnostic validation (Hipp et al., 2018). The cohort consists of more than 1,600 participants from Luxembourg and the Greater Region, comprising patients with typical PD or atypical parkinsonism - irrespective of disease stage, age, cognitive status, comorbidities, or linguistic background - followed-up annually and age- and sex-matched healthy control subjects followed-up every 4 years. To provide a large, longitudinally followed, and deeply phenotyped set of patients and controls for clinical and fundamental research on PD, the investigators have implemented an open-source digital platform that has been partly harmonized with other international PD cohort studies. This effort is flanked by comprehensive biosampling efforts assuring high quality and sustained availability of body liquids and tissue biopsies (including blood, urine, stool, saliva, hair, skin biopsy and cerebrospinal fluid). All data and samples are stored, curated, and integrated into state-of-the-art data and biobank facilities.