View clinical trials related to Parkinson Disease.
Filter by:Gait is specifically impaired in Parkinson's disease (PD). External auditory cue based on a binary rhythm tested in PD patients disappear when the stimulus is removed. Golden Ratio (GR)is intrinsic in the human gait, but in PD patients this GR has been found impaired. Aim of the study is the administration of an auditory external cue based on a personalized Golden Ratio-rhythm which could potentially assist people with PD to cope with the difficulties that they experience while walking, thus increasing their mobility and autonomy.
This is a non-interventional observational study designed to systematically record the results of routine laryngeal examinations and specific characteristics of dysphagia in patients with multiple system atrophy (MSA), Parkinson's disease (PD) and progressive supranuclear palsy (PSP) and related 4repeat tauopathies. The results of a fiberoptic / flexible endoscopic evaluation of swallowing (FEES) while performing a structured task protocol will be recorded. If available, laryngeal electromyography (EMG) results will also be recorded. In addition to the examination results, demographic and disease-specific data are collected, and two questionnaires, the Swallowing Disturbance Questionnaire for Parkinson's Disease (SDQ-PD) and the swallowing specific Quality Of Life Questionnaire (SWALQOL), are administered.
Parkinson Disease (PD) is the most common movement disorder and represents the second most common degenerative disease of the central nervous system . SHMT has been shown to be associated with various diseases.
Pain is one of the non-motor symptoms of Parkinson's disease still poorly known and misdiagnosed and its management is complex. This encourage to explore new non-drug therapeutic paths, such as foot reflexology (FR). the present study proposed a comparison of the evolution of different parameters, quantitative and qualitative, to identify biomarkers and highlight the specific effect of FR on pain, compared to sham massage.
For decades, deep brain stimulation (DBS) therapies have been employed very successfully to alleviate segmental motor symptoms (tremor, brady-kinesia or rigidity) in patients with Parkinson's disease (PD). Unfortunately these therapies often fail to alleviate, or can even aggravate, axial deficits such gait and balance disorders. This is presumably due to the divergence in the dynamics of the circuits that control leg function, which are not well addressed with commonly employed stimulation protocols. To date, patients still endure life-long debilitating gait difficulties that severely affect their everyday mobility, independence and quality of life. In recent years, a handful of studies have proposed new paradigms, for instance using different stimulation parameters that are thought to be better suited for targeting the circuits that control lower limb function. Although promising, the resulting observations have been far from conclusive. As a result, the relevant approaches for therapeutic intervention remain unclear, and the underlying mechanisms largely unknown. Advances on the use of implantable neuromodulation devices and of tech-nologies for monitoring whole-body movement currently allow to study locomotor deficits in ecological environments, enabling the recording and modulation of motor and neural signals while patients perform activities of daily living, chronically, wirelessly and in real time.
The study is carried out as part of the GR2021 Priority project "Healthy Brains for life (Age 20-99): Digitally-enhanced personalized medicine study ANANEOS" and code numbered GR-00546 and it will look at the decentralized and remote assessment of the symptoms of preclinical stages in Alzheimer's disease and movement disorders, e.g. Parkinson's. For this study we are looking for participants aged over 45 without cognitive complaints or with subjective perception of cognitive decline or with mild cognitive complaints. Specific aims for the proposed study: a) to develop novel sensitive measures that can provide an early identification of those SCD and MCI individuals harboring AD pathology that are at high risk of cognitive worsening over time; b) to track pre-motor stages in Parkinson's disease and trials that enable active digital functional biomarkers; c) to track disease progression during pre-dementia and pre-motor stages in clinical practice and trials with measures that enable to capture subtle changes.
The Synuclein-One Study will be evaluating α-synuclein in patients with Parkinson's disease, Multiple System Atrophy, Dementia with Lewy bodies and Pure Autonomic Failure. Using a simple diagnostic test will improve clinical accuracy in diagnosing, earlier diagnosis, and distinguish between neurodegenerative diseases.
The Dolphin 2.0 is a platform that runs an immersive virtual reality software, based on an oceanic environment, where players control simulated creatures (dolphin, orca, axolotl). Video games lead to high levels of motivation and arousal, provide immediate feedback and playback, provide explicit reward and implicit success, and titrate difficulty levels. This encourages the practice of exercise, being an important complement to physiotherapy sessions. The main goal of this study is to evaluate the feasibility, safety and efficacy of an immersive virtual reality software (Dolphin, 2.0) in Parkinson's disease symptomatic control, in a two-arm, randomized, single-blind (blind rater for primary and secondary outcomes), delayed-start feasibility and efficacy trial.
We investigate the effectiveness of a combined repetitive transcranial magnetic stimulation (rTMS) - video game-based training (VBT) dexterity intervention in Parkinson's diseases. The short and long-term benefits of this training program will be evaluated. For these purposes, a blinded sham controlled randomized controlled trial will be performed.
Parkinson's disease (PD) is the second most common neurodegenerative disease. The cardinal symptoms of PD are tremor, rigidity, bradykinesia and postural instability. Cognitive impairment and dementia are also one of the key features of the non-motor symptoms of PD. At present, the mainstream treatment of PD-dementia is the dopaminergic rivastigmine. Repetitive transcortical magnetic stimulation (rTMS) is a novel non-invasive intervention. Through the magnetic stimulation, brain neurons could be activated by the electrical current. The application of rTMS had been approved by US FDA for the treatment of depression. The possible effect of rTMS may result from the stimulation-related neuronal plasticity. Regarding PD, rTMS also had been found to had some effect on different motor symptoms and cognition. The present study would like to test the accumulative effect of rTMS on cognition of PD. All the study subjects will receive rTMS under intermittent theta burst stimulation (iTBS) mode at supplementary motor area (SMA). Cognitive bahevorial tests and other motor/depression assessments will be assessed before and after the intervention.