View clinical trials related to Parkinson Disease.
Filter by:The goal of this clinical trial is to examine effects of training involving rhythmic auditory stimulation (RAS) on upper-limb movements and functions in patients with Parkinson's disease (PD). Patients will be randomly divided into two groups: the RAS group and the no-RAS group. Patients will receive training with or without the aid of RAS based on their groups. The training task is to use the right hand to take beads from one bowl to another bowl. The box and block test and the Jebsen hand function test will be used before and after training (i.e., pretest and posttest respectively) to assess patients' upper-limb speed and function. Researchers will compare scores of the box and block test and the Jebsen hand function test between the two groups at pretest and posttest to determine effects of RAS.
Previous studies showed that a dose of 8 millicuries of Altropane was appropriate for imaging patients with suspected Parkinson's disease. This study will determine if a lower dose (5 millicuries) would suffice.
This is a Randomized, Open-Label, Single Oral Dose, Three-Way Cross-Over Trial to Evaluate the Relative Bioavailability of CVN424 Suspension and Tablet Formulations in Healthy Volunteers Under Fasted and Fed Conditions.
Parkinson's disease (PD) occurs when an area of the brain begins to lose nerve cells that produce a chemical called dopamine. Dopamine is an important chemical, and one of its functions is that it helps to regulate body movement. The loss of these nerve cells leads to a reduction of dopamine in the brain. Medications used to treat PD temporarily replace this lost dopamine, but they do not repair the underlying disease. One of the most promising PD therapies to date has been the transplantation of dopamine producing cells into the brain. Unlike current treatments, these therapies may be able to repair the damage caused in PD. In this trial, the investigators will transplant a new stem cell therapy, called the STEM-PD product, into the area of the brain affected in people with PD. These stem cells can develop into many different cell types, including dopamine-producing nerve cells. The investigators will transplant the stem cells using a device that has been previously used for similar transplants in Lund. This is the first time that the STEM-PD product will be given to humans. The trial aims to assess whether the STEM-PD product is safe to use in people with PD. The investigators will also be looking for preliminary signs of efficacy. The trial will recruit participants with PD from the UK and Sweden. Eight participants will undergo the STEM-PD product transplant. Participants will receive a single dose of the STEM-PD product. Participants will attend for 25 visits primarily at their local recruiting hospital. For participants from the UK, some of the imaging will be performed at Invicro (London), and the surgery (including some visits before and after) and some imaging will be performed in Lund. All participants will be followed up for 36 months following surgery
To collect, preserve, and/or distribute annotated biospecimens and associated medical data to institutionally approved, investigator-directed biomedical research to discover and develop new treatments, diagnostics, and preventative methods for specific and complex conditions.
This is a Phase 1b study to determine the safety, tolerability, and immunogenicity of UB-312 in participants with multiple system atrophy (MSA), and in participants with Parkinson's disease (PD). UB-312 is a UBITh®-enhanced synthetic peptide-based vaccine and may provide an active immunotherapy option for treating synucleinopathies including the most prevalent form, PD; and the most rapidly progressive form, MSA.
Prospective observational study to qualify NM-MRI as progression marker in early Parkinson's.
Many patients have benefited from the implantation of brain stimulation electrodes for the treatment of various motor signs of Parkinson's disease in the phase of motor fluctuations. This technique has significantly improved the motor symptomatology of Parkinson's disease and the dyskinesias induced by pharmacological treatment. Technological advances in the field of deep brain stimulation (DBS) could improve the benefit of this therapeutic tool. therapeutic tool. While using directional electrodes, it remains possible to program the stimulation in conventional ring mode.
The purpose of this study is to understand the treatment approach (i.e., targeting gait or targeting the postural adjustment prior to gait) that is most effective at improving gait initiation dynamics in people with Parkinson disease. Ten adults with idiopathic Parkinson disease who self-report difficulty initiating gait will complete the study. The investigators will be using a randomized crossover design, where the participants will participate in two series of training (i.e., postural training and steady-state gait training) with a one-week washout between trainings. Investigators will evaluate the changes induced in gait initiation postural adjustment size, first step length, and first step speed from each intervention. Due to the anticipated limitation of steady-state walking to directly address postural adjustment amplitude, it is hypothesized that training for larger amplitude weight shift during gait initiation will yield improved gait initiation dynamics compared to training with large amplitude movements during steady-state walking.
The objective of this study is to determine the feasibility (primary objective) and the effects (secondary objectives) of an Mindfulness Based Stress Reduction (MBSR) program adapted specifically for patients with Parkinson's disease.