View clinical trials related to Parkinson Disease.
Filter by:In multitudinous preclinical studies, Saffron and Chamomile are found effective in treating PD. They can mitigate the neurodegenerative progression of the disease by curtailing dopaminergic and neuronal loss and by inhibiting alpha-synuclein aggregation. They also possess antioxidant and anti-inflammatory activities. The synergism of both drugs can manage Parkinson's disease and related neurological disorders although, clinical trials are needed for further elaboration. Therefore, the purpose of the study is to evaluate the effects of Saffron and Chamomile and their active compounds in treating Parkinson's disease. This combination may change psychometric measures (MDS-Unified Parkinson's Disease Rating Scale), biomarkers (including Alpha-synuclein), and oxidative stress-related to Parkinson's disease. This combination along with conventional therapy might be beneficial in managing patients with Parkinson's disease
Parkinson's disease (PD) is characterized by severe motor and non-motor symptoms, including upper limb dysfunction. Due to the degradation of dopaminergic neurons in the striatum, PD patients experience difficulties with motor learning and more specifically with the consolidation of motor memory. Recent work showed that intensive writing training improved writing skills in PD. Although consolidation effects were present, difficulties with retention were also still apparent. Besides impacting writing, manual dexterity deficits in PD can also affect the use of touchscreens. Researchers from our lab demonstrated that impairments were most pronounced in multi-direction sliding motions, indicating the need for training of these motor skills. Our lab demonstrated the classic difficulties with retention in PD after one session of training of a swipe and slide pattern on a tablet (SSP-task) as single task (ST), although immediate gains were demonstrated. Therefore, in this study the investigators will examine whether a two-week home-based training program of a tablet-based SSP-training program will lead to immediate and consolidated improvements that are retained in time. This program will combine ST and dual task (DT) training to provide variation during the training period, but also to increase the cognitive challenge during learning, thereby stimulation consolidation of learning. The primary aim of this study consists of investigating the learning effects after two weeks of targeted touchscreen training. Secondary, the investigators will examine whether these effects will also be retained after four weeks without practice and whether targeted training results in consolidated improvements, in terms of automaticity and transfer towards an untrained task. Given the objective recording of compliance to the training protocol, the investigators will explore the association between compliance rates and learning effects.
The main goal of this study is to evaluate, via EMG (electromyography) system, the muscle activity in the lower limbs, to understand the contribution of the muscle activity to FOG (freezing of gait) in Parkinson's patients. The phenomenon of FOG appears in advanced cases of Parkinson's disease (PD) and can lead to an increased risk of falls. There are several approaches claiming that there is abnormal activity in the calf muscles and the freezing events in Parkinson's patients. In the clinic, monitoring FOG is done subjectively, usually through observations or through questionnaires. As a result, the information about the phenomenon may be biased and insensitive. With an electromyographic monitor (EMG), objective information about the muscular activity during normal walking and during unusual events can be obtained.
This is a single-center, single-arm, dose escalation study, to explore the safety, tolerability and efficacy of human amniotic epithelial stem cells (hAESCs) for idiopathic Parkinson's disease (PD).
Falls during walking are common in people with Parkinson's Disease (PD). Fall risk can be attributed in part to the loss of automaticity in walking and an increased reliance on sensory cues, such as the input from the balance organ. In this project the investigators want to assess the effectiveness of rehabilitation training aiming to improve this vestibular input. The effects of a visual perturbation training in a virtual reality environment will be compared to conventional treadmill training.
Parkinson's Disease (PD) is a neurodegenerative disease characterized by chronic and progressive loss of dopaminergic neurons in the substantia nigra (SN) pars compacta. Sleep disturbances and fatigue are very common problems in Parkinson's patients. He reported that the frequency of fatigue was 47% in patients with a disease duration of less than five years and 70% in patients with a disease duration of more than five years. Fatigue in PD has been found to be associated with decreased physical activity, decreased functionality, sleep disorders, gait disturbances, motor findings, autonomic findings, increased levodopa dose, and motor fluctuations. Motor and non-motor symptoms in Parkinson's patients affect the individual's ability to perform activities of daily living independently. Impairments in functional status lead to negative consequences on quality of life. PD affects the individual not only physically, but also psychologically and socially.The neutrophil/lymphocyte ratio is a marker of peripheral inflammation. The relationship of peripheral inflammation to quality of sleep, quality of life and fatigue in individuals is unclear. The aim of this study was to investigation fatigue, quality of sleep and quality of life, and the relationship between neutrophil/lymphocyte ratio in Parkinson's patients.
Introduction: Parkinson's Disease (PD) is characterized as a neurodegenerative disorder associated with the progressive loss of dopamine in the basal ganglia region, resulting in classic motor symptoms such as bradykinesia, rigidity, postural instability and tremor. Such symptoms end up affecting the functionality of the upper limbs (ULM) in this population. In recent years, therapy based on Virtual Reality (VR) has been gaining popularity, but studies in the area are still lacking. Objective: To verify the benefits of immersive and non-immersive virtual reality in the functionality of the upper limbs in individuals with PD, and to identify possible differences between them. Methodology: This is a randomized clinical trial, in which the evaluators will be separate from the experimental groups (single-blind). Subjects with PD will be randomized into two groups: Immersive group (IVR), which will receive treatment with virtual reality games in an immersive environment through Leap Motion Controller (LMC) devices together with image projection on a Head-mounted -display (Oculus Quest) and the non-immersive group (RVnI) in which they will receive treatment with the CML on a flat screen. Both treatments will focus on broad and fine upper limb tasks, in a protocol with 4 activities and duration of 27 minutes, twice a week, for eight weeks. The two groups will be evaluated in three moments: before the intervention, immediately after 8 weeks and 60 days after the end of the interventions. They will be analyzed in terms of ADLs, through the TEMPA test and part II of the unified assessment of PD (MDS-UPDRS II); motor assessment (part III) of the MDS-UPDRS and motor staging of PD (Hoehn & Yahr); manual dexterity through the Box and Block test and through the Nine Hole Peg Test; cognition by Montreal Cognitive Assessment (MoCA); quality of life through the PD questionnaire (PDQ-39); the usability of the system (SUS); and possible side effects (Simulator Sickness Questionnaire). This study is expected to show that treatment with immersive VR has greater positive effects than non-immersive VR on the functionality of the upper limbs of individuals with PD.
Historically, participation in clinical studies is highly skewed towards particular demographic groups of people. This study will invite several participants to gather a wide range of information on clinical trial experiences for Parkinson's Disease patients. The aim of the study is to identify the factors that limit the ability of a person to enroll in, as well as complete a clinical trial for treatment of Parkinson's Disease. The data collected from this study will help improve future outcomes for all Parkinson's Disease patients as well as those in under-represented demographic groups.
The aim of this randomized controlled pilot trial is to assess the impact of different gait rehabilitation programs on the level of physical activity and gait in daily life in patients with Parkinson's disease (PD). Two groups of 25 patients with PD will benefit from one of two gait training programs (treadmill vs. nordic walking), 3 times a week for 12 weeks. Activity level and number of steps will be remotely recorded over 7 days before, at the end, 3 and 6 months after the end of the program. Quality of life will be recorded at each time point. The impact of the gait programs on the patients' level of daily activity will be examined, comparing the changes brought about by the two programs, taking into account the modulating influence of age and cognitive function. Gait under conditions of daily life will be compared to gait parameters collected in the laboratory.
In this randomised placebo-controlled trial, the investigators will include 30 PD (Parkinson's disease) patients with HY (Hoehn Yahr stage) >2 and L-dopa unresponsive gait characteristics. Each participant will receive taVNS at 25Hz, taVNS at 100Hz and sham VNS (sVNS). During each stimulation, different gait characteristics will be measured with wearable insertion motion sensors.