View clinical trials related to Parkinson Disease.
Filter by:Background: People with Parkinson's (PwP) have many symptoms including tremor, stiffness, slow movements, constipation, urinary incontinence and mental health issues. They are often older and have other long-term health conditions. PwP need to do many things to look after their health including manage multiple medications, attend healthcare appointments and lifestyle changes such as improving diet and exercise. The effort of looking after their health and its impact on them is termed 'treatment burden'. Some PwP need help from their family or friends (caregiver) to complete these tasks. Caregivers may also experience treatment burden themselves when caring for someone with Parkinson's. People's ability to manage treatment burden is termed 'capacity' and is influenced by physical, mental, social and economic factors. People are overburdened when the workload of looking after their health exceeds their capacity. This can lead to poor adherence with treatment, poor quality of life and worse health outcomes. Aim: To understand the factors that influence treatment burden and capacity in PwP and caregivers of PwP. Methods: Interviews with PwP and caregivers will identify factors that influence treatment burden and capacity. These factors will be explored further in a national survey for PwP and caregivers through Parkinson's UK. The investigators will form focus groups with PwP, caregivers, voluntary sector representatives, healthcare professionals, policy makers and managers through Parkinson's Excellence Networks to discuss and prioritise recommendations for change. Outcomes: The investigators will disseminate recommendations of ways to reduce treatment burden and improve future experiences of PwP and caregivers.
In this online study, investigators will explore the psychosocial burdens of swallowing difficulties in people with Parkinson's Disease. This study is completely virtual, so you can participate from wherever you live in the United States. Participation requires you to complete a one-hour Zoom interview and a brief questionnaire. You will be compensated with a $25 Walmart gift card. To learn more, please use the "send email" feature. Thank you!
Balance problems and falls are common in people with Parkinson's disease but respond poorly to dopamine stimulating medications suggesting other causes. The main goal of this study is to assess whether imbalance and gait problems in people with Parkinson's disease may be related to vestibular (inner ear balance center) changes not related to loss of dopamine in the brain.
Recent immunological and physiological studies have provided evidence in support of a central nervous system (CNS) lymphatic drainage system in vertebrate animals, and preliminary evidence has suggested that a similar system exists in humans. If operative, this system may have central relevance to many vascular and fluid clearance disorders such as stroke, multiple sclerosis, Parkinson's disease, and Alzheimer's disease related dementia (ADRD): diseases which represent some of the most pressing healthcare challenges of the 21st century. Evaluating this possibility will require improved, robust imaging methods sensitive to lymphatic drainage dysfunction; as such, the goal of this work is to apply novel magnetic resonance imaging approaches, optimized already for evaluating lymphatic circulation in patients with peripheral lymphatic dysfunction, to quantify relationships between physiological hallmarks of ADRD and CNS lymphatic function in humans.
Parkinson's disease (PD) is the second most frequently appearing neurodegenerative disease. It is a progressive disease of the central nervous system (CNS) and affects around 1% of people over 60 years old. During the progression decline of substantia nigra and deficits of dopamine are observed. The diagnosis is usually based on the motor symptoms such as resting tremor, bradykinesia, muscle stiffness, and postural instability. Common intercurrent symptoms are psychiatric problems like depression or dementia (1). Pharmacotherapy, for example, L-dopa or deep brain stimulation (DBS) are usually used to reduce the motor symptoms (2). From many years the influence of insufficient vitamin D3 levels in human is investigated. In recent publications it was proved that the deficiency of vitamin D3 may lead to generation of reactive oxygen species that influence negatively on mitochondria. That may lead to increased muscle atrophy (3,4). Deficiency of vitamin D3 may be also connected with depression, dementia or the progression of neurodegenerative diseases (5). Moreover, recently studies proved that PD patients have low concentration of serum vitamin D3 (5), increased serum homocysteine (6) and abnormalities in kynurenine pathway (7). It has beed proved that many forms of physical activity in PD patients improves mobility, static and dynamic balance but also may reduce the non-motor symptoms (8,9).
The purpose of study is to demonstrate the pharmacodynamic (PD) effects of E2027 on cerebrospinal fluid (CSF) cyclic guanosine monophosphate (cGMP) in participants with DLB and PDD with and without amyloid copathology after 9 weeks of treatment.
Parkinson's disease (PD) affects approximately 1 million people in the US, with annual health care costs approaching $11 billion. PD results from a loss of dopamine-producing cells in the brain. This decrease in dopamine is associated with shaking, stiffness, slowness, balance/walking problems, thinking, and fatigue which severely impair activities of daily living. Current medical and surgical treatments for PD are either only mildly effective, expensive, or associated with a variety of side-effects. Therefore, the development of practical and effective therapies would have significant benefits. Transcranial direct current stimulation (tDCS) can influence how the brain works. A review of studies concluded that, overall, tDCS improves walking and balance in people with PD (PwPD). However, these studies had mixed results. For example, most have stimulated the frontal brain areas and all have used intensities of 2 mA (milliamperes; a measure of electrical current strength) or less. However, given the vital role of the cerebellum in walking and balance, and in PD impairments, the cerebellum may represent a more effective brain target. A recent review of studies also recommended performing investigations of higher intensity tDCS (greater than 2 mA), to potentially increase stimulation efficacy. No study has investigated the effects of multiple sessions of cerebellar tDCS on gait and balance in PwPD and none have used tDCS intensities greater than 2 mA. Therefore, there is a critical need to determine if repeated sessions of cerebellar tDCS might improve walking and balance in the short- and long-term.
The purpose of this study is to evaluate the safety and efficacy of long-term administration of flexible doses of tavapadon in participants with Parkinson's Disease.
Transcranial direct current stimulation (tDCS) has shown the potential to improve symptoms in patients with movement deficits, such as Parkinson's disease and chronic stroke. However, the effects of tDCS have so far not been proven on a wider scale due to lack of knowledge regarding exactly how tDCS works. This has limited the adoption of this potentially useful therapy for patients with Parkinson's disease, chronic stroke and other conditions affecting movement. The investigators hypothesize that by studying the effects of tDCS in subjects performing a motor task, the brain signals mediating improvements in motor control will be identified. The investigators will use both noninvasive and invasive methods to explore this hypothesis. The investigators expect this combined approach to broaden understanding of tDCS application in conditions affecting movement and possibly lead to therapeutic advances in these populations.
Parkinson's disease (PD) is a neurological condition, which affects the brain. PD gets worse over time, but how quickly it progresses varies a lot from person to person. Some symptoms of PD are tremors, stiffness, and slowness of movement. This study will assess how safe and effective ABBV-951 is in adult participants with PD. Adverse events and change in disease activity is evaluated. ABBV-951 is an investigational (unapproved) drug containing Levodopa Phosphate/Carbidopa Phosphate (LDP/CDP) given as an infusion under the skin for the treatment of Parkinson's Disease. Adult participants with advanced PD and who have completed M15-736 or M20-339 study will be enrolled. Approximately 130 participants will be enrolled in the study in approximately 60 sites in the United States and Australia. Participants will receive continuous subcutaneous infusion (CSCI) (under the skin) of ABBV-951 for 96 weeks during the Primary Treatment Period and during the optional Extended Treatment Period. There may be higher treatment burden for participants in this trial compared to their standard of care. Participants will attend regular visits during the course of the study at a hospital or clinic. The effect of the treatment will be checked by medical and remote telephone assessments, blood tests, checking for side effects, and completing questionnaires.