View clinical trials related to Stroke.
Filter by:The aim of this research is to find the immediate effects of propriocepticve neuromuscular facilitation with lower leg kinesiotaping on ankle dorsiflexion, gait and functional mobility in patients with chronic stroke. It will be a randomized clinical trial in which participants will be selected through non probability convenience sampling. Patients aged range from 40 to 70 years, both gender, diagnosed with hemiplegia due to hemorrhagic or ischemic stroke for more than 6 months, with insufficient ankle dorsi flexion less than 8 degree will be included in this study whereas patients with neurological problems other than stroke that would interfere with gait and balance control and with limbs affected bilaterally will be excluded from study. Participant will be randomly allocated into three groups (A,B and C). Group A will receive only ankle kinesiotaping that will be applied for 30 minutes for one session. Group B will receive proprioceptive neuromuscular facilitation hold-relax technique in flexion-adduction-external rotation pattern, 15-20 repetitions that will be applied in lying position for 10-15 minutes for one session. Group C will receive both proprioceptive neuromuscular facilitation hold-relax technique with ankle kinesiotaping. Posttest measurement will be taken after 30 minutes of one session of treatment using Time up and GO (TUG) test, dynamic gait index, barthel index and Motor Assessment Scale . Data will be analyzed by SPSS version 21
The goal of this study is to learn about the benefits of using a virtual reality gaming system that can be adjusted for a person who has upper arm weakness from stroke. The main question it aims to answer is whether strength and movement in the upper arm be improved by use of the gaming system. Participants will be asked to complete initial measurements of upper arm function, play a video game for one hour, four times a week for five weeks, and repeat the measurements of upper arm function at the end.
This study is recruiting people who had a stroke at least 1 month ago and now have a language impairment called aphasia. Living with aphasia can have devastating effects on communication and quality of life, and it is not uncommon for survivors with aphasia to face psychological problems like depression and anxiety. Participants who are eligible for this study will undergo baseline testing, engage in a 5-week treatment focused on psychological well-being, undergo post-treatment testing, and then testing again 1-month later. Check-in phone calls will be conducted during the 1-month off period and participants will be interviewed about their experience at the end of the study as well. Compensation will be provided to participants with aphasia.
The mortality of malignant middle cerebral artery infarction (mMCAI) is up to 80%, while current available treatment is limited. The purpose of this study is to explore the feasibility, safety and efficacy of Intracalvaria bone marrow injection of cytoprotective drug Y-3 in mMCAI patients with contradictions of reperfusion therapy or poor reperfusion outcome.
Existing evidence-based treatments for word-level and sentence-level impairments following aphasia typically do not generalise to gains in everyday communication for people with aphasia (after stroke). Novel treatments need to be developed to address this. LUNA is a novel multi-level discourse treatment for people with mild to moderate aphasia that addresses personal narratives in a personalised and meta-linguistic and metacognitive manner. This is a feasibility randomised waitlist controlled trial of LUNA, in 28 people with post-stroke chronic aphasia. It will test feasibility, acceptability, preliminary efficacy, and treatment fidelity. Findings will enable the investigators to judge whether there is merit in proceeding to a larger definitive trial.
The goal of this clinical trial is to investigate the efficacy of mindfulness-based cognitive therapy compared to usual care for stroke survivors undergoing inpatient rehabilitation.
Stroke, one of the most common causes for acquired adult disability, is not only a burden for the individual but also for his or her close relatives and caregivers. Functional recovery is commonly associated with the re-acquisition of lost skills. This skill (re-)acquisition is separated into different phases during which learning takes place while the skill/movement is actively performed - so called online learning - or during the time of non-performance between the training - so called offline learning or consolidation. During the initial phase of training, performance improvements are commonly steep (online learning). During the following processes of consolidation, which often depend on sleep, memory traces are being modified and stored for long-term memory retention leading to a further improvement without additional training (offline learning). Previous studies focusing on individuals after stroke could show a beneficial effect of sleep on motor skill acquisition. As an intervention, transcranial electrical stimulation (tES) with motor tasks could show beneficial effects on motor skill acquisition. tES is a method to stimulate an area of the brain non-invasively and this is done by applying low voltage current to the scalp that lies in close proximity to the target brain region. In the current study, stimulation is performed during sleep and types of stimulation resemble natural sleep physiology: slow-wave and spindles. As slow-wave and spindles are shown to be important for memory consolidation, it is hypothesized that applying physiologically-inspired stimulation could enhance memory consolidation in individuals after stroke. It is known that patterns of sleep physiology change in older individuals, thus, this population is also investigated in the current study. It is interpreted and discussed that older individuals do not benefit from sleep as much as younger individuals do. Thus, it is hypothesized that applying physiologically-inspired stimulation could enhance memory consolidation in healthy older individuals.
After onset of Acute Ischemic Stroke (AIS), every minute of delay to treatment reduces the likelihood of a good clinical outcome. A key delay occurs in the time between completion of computed tomography (CT) angiography of the head and neck and interpretation in the setting of AIS care. The purpose of this study is to assess the effect of incorporating Viz.AI software, which via via a machine-learning algorithm performs artificial intelligence-based automated detection of large vessel occlusions (LVO) on CT angiography (CTA) images and alerts the AIS care team (diagnosis and treatment decisions will be based on the clinical evaluation and review of the images by the treating physician, per routine standard of care). The hypothesis is that integration of the software into the AIS care pathway will reduce delays in treatment. A cluster-randomized stepped-wedge trial will be performed across 4 hospitals in the greater Houston area.
In the past two decades, even as stroke cases increase around the world, advances in motor rehabilitation have been limited. Clinical trials of stroke rehabilitation have examined the therapeutic utility of several neuromodulatory devices to improve efficacy of motor training. However, there is limited knowledge on the effects of sensory-based priming techniques using repetitive peripheral magnetic stimulation (rPMS) post stroke. This project focuses on understanding the effect of rPMS on motor skill performance in persons with stroke.
This study aims to determine the effectiveness of game-based biofeedback application via surface electromyography in patients with post-stroke dysphagia. The same treatment interventions will be applied with and without biofeedback, and thus the contribution of adding biofeedback to the treatment will be determined.