View clinical trials related to Parkinson Disease.
Filter by:This is a non-randomized, dose-escalation first-in-human study to evaluate the safety, tolerability, PK, and PD of HNC364 following intramuscular administration of single ascending doses.
Parkinson's disease (PD) is a chronic, progressive disease that causes motor and non-motor symptoms due to dopaminergic neuron loss. Today, the treatment of PD in addition to optimal medical and surgical treatments, physiotherapy and rehabilitation approaches have an important place in the treatment. Recently, it has been stated that intensive rehabilitation interventions in the field of physiotherapy and rehabilitation can be more effective than traditional rehabilitation approaches. Lee Silverman VoiceTreatment- BIG (LSVT-BIG) is a high-intensity exercise model aimed at improving bradykinesia and hypokinesia in PD. There are many studies showing improvements in balance, walking, motor performance, reaching ability, postural control, quality of life and cognitive status after LSVT-BIG training in PD. However, it is seen that there is no study investigating the effect of LSVT-BIG training directly by applying it as a home program. For this reason, there is a need for studies investigating whether this intensive treatment method can be an alternative to the clinical environment by applying it as a home program.
In this study, the investigators aim to find a biomarker of Parkinson's disease. This is done using imaging scans called Positron Emission tomography (PET), Single Photon Emission Computed Tomography (SPECT), and Magnetic Resonance Imaging (MRI). The findings will provide a deeper understanding of the brain changes in Parkinson's disease. More importantly, this study will help with the discovery and development of new medications aiming to delay progression of PD symptoms.
In this study, the investigators aim to provide a deeper understanding of Parkinson's disease and find a biomarker of Parkinson's disease. This is done using imaging scans called Positron Emission tomography (PET), Single Photon Emission Computed Tomography (SPECT), and Magnetic Resonance Imaging (MRI). The findings will provide a deeper understanding of the brain changes in Parkinson's disease. More importantly, this study will help with the discovery and development of new medications aiming to delay progression of Parkinson's disease symptoms
In this study, the researchers aim to find a biomarker of PD. Using imaging scans called Positron Emission tomography (PET), Single Photon Emission Computed Tomography (SPECT), and Magnetic Resonance Imaging (MRI). The PET and SPECT scans use small amounts of radiation and specific compounds called tracers, to study chemical changes in the brain in a way not possible with any other procedure. The MRI uses magnetic fields to generate images of brain structure and function
Physiotherapy and targeted rehabilitation are routinely performed in order to influence disorders of posture, gait and stability in Parkinson´s disease (PD), but their effects have been controversial (Keus et al. 2014; Walton wt al. 2014). Recently, several studies suggested that cognitive training can improve gait in patients with PD (Peterson et al. 2016, Heremans et al. 2013), similar to the effects seen in the elderly (Yogev-Seligmann et al. 2008; Amboni et al. 2013). Specific training programs including dual tasking with automatic verbal series, counting etc. have led to increased walking speed and improved stepping cadence, length, and duration in patients with dementia (Schwenk et al. 2010). However, since in advanced PD patients dual-task gait training has to be supervised by therapists, it is not a suitable type of therapy to be performed at home. Therefore, this study aims to verify and extend the encouraging results of the single study which showed a positive effect of cognitive function training on gait in PD (Milman et al. 2014) by exploring this effect in advanced PD patients, by assessing the effect on gait using more targeted clinical and instrumental evaluation, and by comparing two modes of therapy delivery, group and computer-based.
In order to develop an image analysis system that automatically detects and quantifies neuromelanin, this study aims to construct a database of a wide sample by collecting brain MRI neuromelanin images prospectively.
The investigators propose to compare the effects of a 16-week specially designed yoga program to a power-based resistance training program on affect trait mindfulness, anxiety, depression, functionality, and quality of life. As secondary measures, we propose to compare the effects of these exercise programs on measures of executive function (EF), sleep, disease stage, motor symptoms, muscle quality, rigidity, strength, power, and mobility.
A split-belt treadmill (SBT) is a treadmill with two belts, whereby each leg can be driven at a different speed. Previous work by the investigators showed that one session of SBT training improved turning while multi-tasking and reduced FOG in PwPD tested in the laboratory. However, subsequent work raises questions as to whether treadmill improvements following repeated SBT training generalize to overground situations in the long term. Therefore, in this study, the investigators will perform a four-week SBT intervention with added practice of everyday turning scenarios (SBT+CP) or placebo exercise (SBT+PL), and study its effects on FOG in both the laboratory and at home.
Parkinson's disease is a chronic, neurodegenerative disorder characterized with the loss of dopamine-producing neurons. This loss is likely to be related with several environmental and genetic factors. One of the most important factor that is responsible for the initation and progression of the disease is oxidative stress. Exercise training, especially aerobic training, can change the levels of oxidative markers because exercise can lead to decrease oxidative stress in patients with Parkinson's disease. Therefore, this study aims to investigate (1) the effect of aerobic training on total antioxidant status, total oxidant status, glutathione, oxidative glutathione, and zonulin levels, (2) the relationship between the change of motor symptoms and disease severity and the change of total antioxidant status, total oxidant status, glutathione, oxidative glutathione, and zonulin levels.