Clinical Trials Logo

Parkinson Disease clinical trials

View clinical trials related to Parkinson Disease.

Filter by:

NCT ID: NCT04183634 Terminated - Parkinson Disease Clinical Trials

An Open, Randomised, Single Dose, 2-period, 2-sequence Crossover Adhesion Study of Two Different Transdermal Patches Containing Rotigotine.

Start date: December 3, 2019
Phase: Phase 1
Study type: Interventional

The objective of this study is to evaluate the adhesion of the test product when compared to the reference product following a single transdermal application.

NCT ID: NCT04182399 Completed - Parkinson Disease Clinical Trials

Role of Zonisamide in Advanced Parkinson's Disease (PD) in Egyptian Population: Pilot Study

Start date: April 1, 2020
Phase: N/A
Study type: Interventional

Zonisamide (ZNS) (1,2-Benzisoxazole-3-methanesulfonamide) is an anti-epileptic drug. In three double blinded placebo controlled studies, ZNS- as an adjunctive treatment- showed beneficial effects on motor symptoms of PD with a low incidence of adverse events. As a result 25 mg daily of ZNS was approved in 2009 in Japan as an adjunctive treatment in PD patients whose condition responded insufficiently to Levodopa treatment. Most observations of a beneficial effect of ZNS have been in Japanese people, and the antiparkinsonian mechanism of action is unclear. So, ZNS is a promising but still investigational drug to treat PD and more studies are warranted. this study will investigate the efficacy and tolerability of Zonisamide as an adjunctive treatment in Egyptian patients with advanced PD, including motor fluctuations, levodopa induced dyskinesia and existing nonmotor symptoms. Additionally it investigates its effects on quality of life of PD patients.

NCT ID: NCT04181918 Recruiting - Parkinson Clinical Trials

Action Observation Treatment in Parkinson's Patients

AOT-PA
Start date: March 26, 2018
Phase: N/A
Study type: Interventional

The aim of the study is to assess the role of Action Observation Treatment (AOT) and Motor Imagery (MI) in the rehabilitation of Parkinson's disease patients, as compared to a control condition. Main outcome measures will be the results in two functional scales (FIM, UPDRS) and kinematics parameters obtained from gait analysis. Data at two months and six months follow up, respectively, will be also collected.

NCT ID: NCT04180865 Recruiting - Parkinson Disease Clinical Trials

The Dutch Parkinson and Cognition Study

DUPARC
Start date: October 1, 2017
Phase:
Study type: Observational

Parkinson Disease (PD) is a heterogeneous, progressive neurodegenerative disorder which is characterized by a variety of motor and non-motor symptoms. The DUPARC study is a single-centre longitudinal cohort study aimed at deeply phenotyping newly diagnosed PD patients. The main aim is to investigate the relationship between cognitive impairment and both cholinergic and dopaminergic neurodegeneration in the early stages of the disease. In addition, gastrointestinal and visual system dysfunction in PD and their role in the underlying pathology are further explored in a longitudinal setup. Treatment-naïve participants will undergo extensive motor- and non-motor assessment, imaging, and microbiome assessment at time of diagnosis, and will be followed for at least 3 years.

NCT ID: NCT04179695 Recruiting - Parkinson's Disease Clinical Trials

Evaluation of a New Communication Aid Tool to Favor Global Patient Centered Care

PARKINSUN
Start date: July 21, 2020
Phase: N/A
Study type: Interventional

PARKINSUN is a new communication aid tool, expected to favor global patient centered care for PD patients during consultation with GPs and neurologists. Two groups of patients will be randomized to use or not PARKINSUN when they consult their physicians every 3 months during 7 months.

NCT ID: NCT04176302 Completed - Parkinson Disease Clinical Trials

Monitoring of Mobility of Parkinson's Patients for Therapeutic Purposes - Clinical Trial

MoMoPa-EC
Start date: November 26, 2019
Phase: N/A
Study type: Interventional

When Parkinson Disease is mild, it responds well to treatment with drugs (L-Dopa and dopamine antagonists). However, as the disease progresses, the effect of the drugs diminishes and lasts for a shorter time (wearing-off), which require physicians to progressively increase and/or break up the dosage of dopamine drugs, to control symptoms over the course of the entire day. Despite this, most patients present motor fluctuations after 10 years. These fluctuations consist of changes between what are known as Off periods, when the medication does not produce an effect and mobility is hindered, and On periods when patients can move smoothly, with the medication producing its best effect. The timeline of these motor fluctuations over the course of the day and also on different days is very valuable to precisely adjust the medication. Nevertheless, neurologists do not currently have detailed information on the timeline of the symptoms of their patients, which means that they have serious difficulties to obtain good results with the adjustment of medication. Currently, the neurologist's information on the time progression of the motor fluctuations is drawn from what the patient indicates in the office visit, or in the best case, from diaries that the patient fills out at home, periodically (e.g. every hour) noting the motor state (On or Off). Although the latter method is still the gold standard in research and in care, it has serious limitations, because patients often forget to record the information (especially when they are in Off), many do not recognize their motor states well, and few can maintain adherence to such a laborious system for more than a few days. The Parkinson Holter (STAT-ON ®) is a wearable device, which objectively measures and records the motor fluctuations of the patients. It does not require intervention by the patient, and can, therefore, be used in daily life, long term if necessary. However, the concept that detailed knowledge of motor fluctuations of patients will lead to better control of the disease, thanks to optimisation of the therapeutic regimen, is still a hypothesis. To demonstrate or refute this hypothesis, we are now conducting a clinical trial, with this medical device, to study the clinical effectiveness in patients with moderate Parkinson's disease and motor fluctuations. This trial will show whether using the Parkinson Holter is better than the clinical interview used in traditional clinical practice (primary objective), and whether it is not inferior to the On-Off diary recorded by the patients at home (exploratory objective)

NCT ID: NCT04176263 Completed - Parkinson Disease Clinical Trials

The Effect of Split-belt Treadmill Training on Gait in Parkinson's Disease

Start date: August 12, 2019
Phase: N/A
Study type: Interventional

People with Parkinson's disease (PD) often show gait impairments such as, shuffling gait, short steps and gait asymmetry and irregularity. These gait problems are already apparent in the early disease stages, having an immense effect on daily life functioning. Especially Freezing of Gait (FOG), where the patients are not able to initiate or continue their movement despite their intention to do so, is a debilitating problem. It is thought that lack of gait adaptability could be an underlying cause of FOG. With a split-belt treadmill the speed of both legs can be controlled independently, which forces participants to actively adapt their gait to the new situation. In a previous study performed at our lab, it was shown that only one session of split-belt training (SBT), in which the speed of one leg was reduced, improved gait adaptability and other gait features compared to tied-belt training (TBT). Furthermore, overground turning speed improved after only one single training session and this was even retained 24 hours later, indicating training induced long-term potentiation. Since the short-term effects of SBT are promising, the objective of this study is to investigate if 4 weeks of SBT, 3 times a week, has an effect on gait deficits found in individuals with PD, compared to 4-weeks, 3 times a week, of TBT.

NCT ID: NCT04175132 Terminated - Healthy Clinical Trials

Binding of Foliglurax to Regions in the Brain in Healthy Participants and in Patients With Parkinson's Disease (PD)

Start date: November 12, 2019
Phase: Phase 1
Study type: Interventional

A study to learn how foliglurax binds in regions of the brain

NCT ID: NCT04174573 Not yet recruiting - Parkinson Disease Clinical Trials

Group Therapy With Transcranial Direct Current Stimulation in Patients With Parkinson's Disease

GTBQ-PD
Start date: June 6, 2022
Phase: N/A
Study type: Interventional

To determine the effectiveness of group therapy along with transcranial direct current (tDCS) stimulation on motor symptoms, balance and quality of life in patients with Parkinson's disease(PD). 128 patient with PD will be recruited by the cluster sampling method for the two group pretest-posttest randomized controlled trial. The patient with PD will be allocated in two groups, Group therapy only (GTO) group and Group therapy with tDCS (GT-tDCS) treatment group by block randomization technique. Both GTO group and GT-tDCS group will receive the structured group therapy programme for one hour duration, twice a week for 6-weeks. In addition to the structured group therapy programme, GT-tDCS group will receive 20 minutes of tDCS application once a week for the 6-week duration. Data will be analysed at baseline, 3 weeks and 6 weeks of post intervention.

NCT ID: NCT04171804 Completed - Parkinson Disease Clinical Trials

Efficacy of Transcranial Direct Current Stimulation In Parkinson's Disease MCI

PDMCIStim
Start date: January 1, 2019
Phase: N/A
Study type: Interventional

The aim of the present study is to investigate the efficacy of prefrontal transcranial Direct Current Stimulation (tDCS) on cognitive functions and electrophysiological measures in Parkinson's Disease Mild Cognitive Impairment (PD-MCI). The participants will be assigned to active and sham groups (1:1) and will receive 10 sessions of tDCS (twice a day) for 5 days. The study will also examine if the effects may last for a month. The participants will be assigned to active and sham groups (1:1) and will receive 10 sessions of tDCS (twice a day) for 5 days. The study will also examine if the effects may last for a month.