View clinical trials related to Parkinson Disease.
Filter by:The study's objective is to determine the feasibility of low-load resistance training with blood flow restriction in people who have advanced Parkinson's disease and impaired mobility using a mixed-methods convergent parallel design in a single cohort. The study's long-term goal is to develop clinically feasible exercise interventions that are effective at improving mobility, participation, and quality of life for people with advanced Parkinson's disease.
This study is a double-blind comparative study examining the curative effect and mechanism of the transcutaneous auricular vagus nerve stimulation treatment on non-motor symptoms of Parkinson's disease patients. The investigators hypothesize that treatment using transcutaneous auricular vagus nerve stimulation will improve the non-motor symptoms, such as improving sleep, and improve cortical activity simultaneously in Parkinson's disease patients.
Comparison of two rehabilitation protocols in patients with Parkinson's disease and, therefore, identification of innovative rehabilitation protocols of proven and validated efficacy, through which it is possible to achieve: - Improved joint function and gait pattern - Reduction of the risk of falling or reduction of energy expenditure during physiological gait Evaluation of the increase in maximal effort tolerance · Improved cognitive performances Evaluation of the impact on the quality of life of the patient and family members Identification of morpho-functional markers predictive of clinical and rehabilitative out-come through neuroimaging study.
This project aims to improve how people with Parkinson's Disease (PD) walk. The global aim is to identify obstacles and solutions for people with PD for adopting technology to track and improve their gait to make them better and safer walkers. To meet this aim members of Parkinson Quebec will be surveyed about their technology readiness, physical, cognitive, and psychological health, and rehabilitation access. The survey should not take more than 20 minutes to complete on the web. Subsequently, a random sample of 100 survey participants will be offered a wearable device, the Heel2ToeTM sensor, designed to improve gait quality. This device emits a beep when a proper step is taken. This external cue reinforces the adoption of an adequate gait. In addition to the device, participants will be offered 5 sessions of telemonitoring to help them use the device optimally. Monitoring of use and outcomes will be over 3 months and the sensor is theirs to keep.
A cross-sectional study (part 1) aims to investigate the influence of fatigue on the MI ability in PD compared to healthy controls. A randomized controlled trial (part 2) aims to compare the effect of fNIRS-based NFB-MI on balance and gait performance versus MI only in people with PD.
The aim of the study is to compare the effects of 2 different dosages and modalities of motor-cognitive rehabilitation in Parkinson's disease with postural instability and gait disorders (PD-PIGD) on clinical features, neuroimaging and blood-based biomarkers at short-term (2 months) and long-term (7 months) follow-up. Fifty subjects with PD-PIGD will be randomized in 2 training groups: DUAL-TASK+AOT-MI and the DUAL-TASK groups. The DUAL-TASK+AOT-MI group will perform a dual-task gait/balance training consisting of action observation training (AOT) and motor imagery (MI) combined with practicing the observed-imagined exercises; DUAL-TASK group will perform the same exercises combined with watching landscape videos. The training will last 6 weeks, 3 times/week, 1 hour per session. Before and after training (W6), all the patients will undergo neurological, gait/balance, cognitive/behavioral, magnetic resonance imaging (MRI) and serum biomarkers evaluations. Neurological, gait/balance, cognitive/behavioral assessments and serum biomarkers will be also repeated at the 14-week follow-up (W14) to assess maintenance of results. Patients of both DUAL-TASK+AOT-MI and DUAL-TASK groups will be further randomized to repeat the training (6 weeks, 3 times/week, 1 hour each session) starting at W14 (DUAL-TASK+AOT-MI_DOUBLE and DUAL-TASK_DOUBLE groups). After six weeks (W20) all the subjects repeating the training will be evaluated (neurological, gait/balance, cognitive/behavioral assessments). At 28-week follow-up (W28), the whole sample of patients will be assessed with neurological, gait/balance, cognitive/behavioral, MRI and serum biomarkers evaluations. All MRI scans will be acquired at least 12 hours after last dopaminergic therapy administration to mitigate the pharmacological effects on neural activity. Twenty age- and sex-matched healthy controls will be recruited to perform gait/balance and cognitive/behavioral assessments, blood sample and brain MRI acquisition at baseline. The secondary aims of the study are to define the neuroimaging and blood-based biomarkers of PD-PIGD patients presenting different clinical features (e.g. presence of mild cognitive impairment, freezing of gait, falls and mood disturbances) and to evaluate the role of blood-based and neuroimaging biomarkers, together with clinical characteristics, in predicting the response to different dosages of rehabilitation in PD-PIGD throughout the development of a machine-learning algorithm.
To describe the molecular, electrophysiological and morphological expression profile of dopaminergic neurons derived from fibroblasts of patients with Parkinson's disease.
This pilot, self-control study is for patients with Parkinson's Disease (PD) psychosis (e.g., visual hallucinations, delusions) and sleep problems.
TARGET-NEURO is an observational research study to conduct a comprehensive review of outcomes for patients living with chronic neurological diseases: Alzheimer's disease and related dementia (ADRD), mild cognitive impairment (MCI), Parkinson's disease (PD), and multiple sclerosis (MS).
The primary endpoint of the study is to identify a neurophysiological biomarker (absence of synaptic depotentiation at primary motor cortex , measured as change in the amplitude of motor evoked potentials recorded at the dorsal first interosseus muscle after administration of neurophysiological cTBS depotentiation protocol) as predictor of the development of Levodopa-induced dyskinesia in patients with Parkinson's disease.