View clinical trials related to Parkinson Disease.
Filter by:The purpose of the study is to demonstrate that continuous apomorphine treatment during the night compared with placebo improves sleep quality in insomniac patient with Parkinson's disease.
The way the immune system responds to certain PD-related proteins in PD donors compared to the way it responds in persons without or fewer PD related proteins is not well studied and this study aims to analyze the autoimmune response in each group. The study involves a one time visit involving brief questionnaires and a blood draw of 30 mL (approximately 2 tablespoons) to be collected.
The primary objective is to evaluate the effect of KW-6356 on motor symptoms in Parkinson's disease and the primary endpoint is the change from baseline in the MDS-UPDRS part III score between KW-6356 and placebo in subjects with early Parkinson's disease in Japan.
Upper-limb disorders in patients with Parkinson's disease include decreased speed and amplitude of movements, difficulty in sequential tasks, and disrupted execution of fine manipulative hand activities.The aim of the study was to evaluate the effects of home-based goal-oriented upper limb intervention in patients with Parkinson's disease.
To gather data on DBS Therapy effectiveness in different geographic populations.
Due to Parkinson's Disease (PD) speech and language (SL) deficits may occur. Further, the literature reports that PD patients, who have not undergone deep brain stimulation (DBS), have deficits regarding voice quality (e.g. loudness and intelligibility of their voice), while PD patients who have undergone DBS suffer from deficits in word retrieval and speech apraxia symptoms. To-date, therapeutic approaches focusing specifically on SL deficits observed in PD-DBS patients are yet to be developed and evaluated. Therefore, this study investigates the short-and longterm effectiveness of specific and intensive, high-frequency speech-language therapy in terms of reducing SL-deficits compared to a nonspecific and non-verbal sham treatment (i.e. a rhythmic balance-movement training (rBMT)) as well as to a 'no-therapy' condition.
The purpose of this study is to examine the possibility of a new, non-invasive, non-drug treatment for Parkinson's disease. The treatment involves gentle vibratory stimulation delivered to the fingertips (called 'vibrotactile stimulation'). Along with the treatment, participants will also undergo kinematic testing.
Varying oral doses of Varenicline (VCN), starting with very low doses, will be administered to participants with Parkinson's Disease (PD) or healthy controls without PD for several days. Positron emission tomography (PET) scans after administration of VCN will be used to determine the lowest oral dose of VCN producing an adequate brain level of VCN. These experiments (1 & 2) will be used to determine an appropriate oral dose of VCN to administer to PD participants for experiment 3 of the study (see NCT04403399).
Gait and balance disorders represent the main motor disability in advanced Parkinson's disease. These symptoms are less or unresponsive to levodopa treatment and are considered to be a contraindication for deep brain stimulation of the subthalamic nucleus. Falls and freezing of gait are responsible for high morbidity (fractures, residential health care) and increased significantly mortality. The pathophysiology of gait and balance disorders is still poorly understood, but recent data obtained in animals and humans suggest that a degeneration of cholinergic neurons of the pedunculopontine nucleus (PPN), within the mesencephalic locomotor region, could play a crucial role. In line with this hypothesis, low-frequency stimulation of the pedunculopontine area, thought to increase the activity of the remaining cholinergic PPN neurons, has been proposed to alleviate gait and balance disorders in advanced PD patients. Here, the efficacy of deep brain stimulation of the mesencephalic locomotor region will be tested in 12 PD patients in a randomized, double-blind, cross-over, controlled study.
The purpose of this prospective, within-subject randomized cross-over design study is to determine if a computer training program (Speed of Processing Training - SOPT) improves safe pedestrian behavior in patients with Parkinson's disease and in healthy older adults in a virtual reality pedestrian environment. Pedestrian injury poses significant risk to healthy older adults and patients with Parkinson's disease. Several age-related changes, including slowing of visual processing speed, increase risky pedestrian behavior. This study will determine if SOPT improves pedestrian behavior in patients with Parkinson's disease and healthy older adults and evaluate the persistence of the SOPT training effects.