View clinical trials related to Parkinson Disease.
Filter by:The aim of this study is to investigate the effects of VR and MI techniques in addition to routine physical therapy on motor skills, balance and ADL in patients with Parkinson's disease.
Deep brain stimulation (DBS) of the sub-thalamic nucleus (STN) has evolved over the past decades as a mainstream therapy for advanced Parkinson's disease (PD). The classical procedure consists in STN indirect targeting based on stereotactic atlases or statistical coordinates in AC-PC (Anterior Commissure - Posterior Commissure) referential along with target control and correction by micro-electrode recordings (MER) and awake clinical testing. To avoid potential complications and patient discomfort related to current procedure, asleep surgery without this control process has become more and more performed, essentially thanks to the progress of neuroimaging allowing to STN visualization. However, it has been reported a relative inaccuracy between the "radiological" STN delimitated on several types of MRI sequences (T2, T2*, SWI) and the per-operative electrophysiological findings. As a result, there are currently many types of STN-DBS procedures, and the lack of standardization between techniques complicates the interpretation of postoperative results on anatomical, electrophysiological and clinical points of view. Furthermore, to date, it has not been proven that asleep surgery without MER and clinical controls is as effective as the standard procedure in a prospective controlled randomized clinical trial. Investigators hypothesize that the clinical-based 18 landmarks STN target will be precise enough to allow to perform surgery under general anesthesia without MER correction, and accurate enough to achieve non inferior clinical results compared to what is usually done in each centre. The main objective is to compare at one year, the % of motor improvement after PARKEO 2-targeting asleep DBS without intraoperative MER versus the targeting procedure using intraoperative MER by the UPRDRS 3 (Unified Parkinson's disease rating scale 3).
To study the effects of acute apomorphine vs. placebo administration on different Parkinson's disease pain types.
The aim is to establish adequate and suitable protocols for PD patients and to determine the WB-EMS effects on muscle strength, balance, walking, cognitive functions,neurotrophic factors and alpha-synuclein. Thirty-six PD patients, aged from 50 to 80 years, will be recruited and randomly assigned to two experimental groups (EGs and EGc) and one control group (CG), in order to perform dynamic movements with WB-EMS. EGs will undergo to 12-20 minutes of progressive supervised WB-EMS (4 sec. 85 HZ and 4 sec. rests) combined to light dynamic movements, two-time per week for 12/24 weeks. EGe will undergo to 12-20 minutes of progressive supervised WB-EMS 7 Hz) combined with cardiovascular training with rowing machine. CG will not perform any type of physical activity. Pre and post intervention assessment will be carried out on the following areas: physical assessment, neurocognitive, neurotrophic factors and alpha-synuclein assesments. A 3 months follow-up will be performed.
LSVT BIG is an intensive, amplitude based rehabilitation program that has been demonstrated to improve one of the hallmark features of Parkinson's disease, specifically bradykinesia. We are interested in knowing the effects of this therapeutic approach on postural control and gait parameters.
The purpose of our study is to evaluate Vibrotactile Coordinated Reset stimulation (vCR) and its effects on motor ability within Parkinson's patients. vCR will be administered with a device called the VT Brain Glove. vCR is expected to provide patients with a non-invasive alternative to the most widely used treatments such as levodopa and or deep brain stimulation. This study will include a dedicated sham that will aid in understanding true treatment effects from vCR.
This study aims to assess changes in connections within the brain in Parkinson's disease (PD). We will invite up to 10 people with PD to participate in this study and complete several brain scans using PET (Positron Emission Tomography) and fMRI (functional Magnetic Resonance Imaging) on the Hybrid PET/MRI scanner. We will also invite 10 participants without PD to complete the same scans for comparison. "Somatotopy" refers to how areas of the brain are organized according to the body part they affect. The striatum is the brain region that coordinates complex thinking and movement. Plasticity refers to changes in connections within the brain, which can happen to make up for changes that are related to PD. In this study we will use PET and fMRI imaging together to investigate changes in the striatum in people affected by Parkinson's disease. The hybrid PET/MR scanner allows us to perform simultaneous PET and MRI measurements to investigate this.
The aim of this study is to assess the effect of 8-week physiotherapy training using immersive virtual reality (VR-training) compared to a physiotherapy training performed in a real setting (RS-training) on handwriting and touch screen technology-based activities, brain functional activity and cognition in patients with Parkinson's disease (PD). Both groups will perform upper limb exercises focused at improving movement amplitude and speed during several activities such as writing and using touch screen-technology. Participants randomized to VR-training (N=20) will perform exercises under the augmented visual feedback induced by the VR aimed at stimulating movement amplitude and speed. Participants randomized to RS-training (N=20) will perform exercises in a real setting. Before training, after training (8 weeks) and at 3-month follow-up (20 weeks), subjects with PD will undergo clinical evaluations (neurological, physiotherapy and neuropsychological) while taking their regular anti-parkinsonian drugs (on-medication state). MRI scans will be acquired at each time-point to assess brain activity reorganization during off state (MRI scans will be acquired at least 12 hours after the regular evening dopaminergic therapy administration to mitigate the pharmacological effects on neural activity). A sample of matched healthy subjects (N=15) will undergo clinical, physiotherapy, neuropsychological and MRI assessments only at study entry as a benchmark.
Music therapy is widely used in relational and rehabilitation settings. In addition to Neurologic Music Therapy and other music-based techniques, "sonification" approaches were recently introduced in the field of rehabilitation. The "sonification" can be defined as a properly selected set of sonorous-music stimuli are associated with patient movements mapping. In fact, the auditory-motor feedback can replace damaged proprioceptive circuits with a consequent improvement of the rehabilitation process. Interventions with "sonification" facilitate sensorimotor learning, proprioception and movements planning and execution improving global motor parameters. This study proposes the use of musical auditory cues which includes the melodic-harmonic component of the music. This kind of sonification makes the feedback pleasant and predictable as well as potentially effective. The investigators propose to apply and assess the effectiveness of this kind of sonification on gait training and other secondary outcomes in stroke, Parkinson's disease and multiple sclerosis population. Also, the investigators will assess the impact of "sonification" on the level of fatigue perceived during the rehabilitation process and on the quality of life. The study is a multicenter randomized controlled trial and will involve 120 patients that will undergo standard motor rehabilitation or the same rehabilitation but with the sonification support. The interventions will be evaluated at the baseline, after 10 sessions, after 20 sessions and at follow-up (one month after the end of the treatment). The assessment will include functional, motor, fatigue and quality of life evaluations. The collected data will be statistically processed.
The purpose of the study is to evaluate the safety and tolerability after administration of multiple doses and the pharmacokinetics (PK) of single and multiple doses of UCB0599 in healthy study participants and participants with Parkinson's Disease (PD).