Stroke involves a sudden interruption of blood flow affecting brain function and requires timely medical response. Clinical trials for stroke explore various treatment evaluations including acute interventions and rehabilitation strategies to improve...
Search Bar & Filters
Found 1602 Actively Recruiting clinical trials
Actively Recruiting
Researchers are studying patients who have had an acute ischemic stroke affecting the basal ganglia and were treated with mechanical thrombectomy. The study aims to understand how often and in what ways cognitive, motor, and sleep problems occur after this treatment. The main focus is on defining these possible dysfunctions in the short and long term after stroke treatment. The study involves patients who have undergone mechanical thrombectomy for stroke in the proximal middle cerebral artery. Participants will be evaluated using tests for cognitive function, movement abilities, and sleep disorders. Specifically, sleep will be studied through polysomnographic examinations. Assessments occur in the acute phase soon after treatment and continue through long-term follow-up. Participants will undergo testing for cognitive, motor, and sleep function within 72 hours after their stroke treatment and at later points to monitor changes over time. The primary outcome is the presence of post-stroke cognitive dysfunction measured shortly after treatment. The research team will closely observe clinical outcomes related to movement and sleep as well. The study is sponsored by Fondazione Policlinico Universitario Agostino Gemelli IRCCS and involves adult participants starting from age 18.
Actively Recruiting
Healthy Volunteer
Carotid artery plaque rupture is a leading cause of ischemic stroke, and early, accurate assessment of plaque vulnerability can help prevent these strokes. Researchers are studying the use of 18F FDG and 68Ga-FAPI PET/MR imaging to investigate features of vulnerable carotid plaques, such as active fibrosis and inflammation, which may better identify unstable plaques compared to standard MRI alone. This observational study aims to clarify imaging characteristics linked to plaque instability in patients with carotid artery plaques. Participants will undergo 18F FDG and 68Ga-FAPI PET/MR scans to assess metabolic and structural plaque features. Treatments such as medication, carotid stenting, or carotid endarterectomy will follow clinical guidelines but are not assigned by the study. The study focuses on evaluating plaque vulnerability through advanced imaging rather than testing specific treatments. During the study, participants will be monitored for stroke and cerebral hemorrhage at 1, 6, and 12 months after their PET/MR scan. Researchers will also assess the openness of the carotid artery (lumen patency rate) and analyze imaging results at these same time points. This approach aims to track plaque changes and clinical outcomes over one year to better understand plaque behavior and risk.
Actively Recruiting
Atherosclerotic plaques, which are fatty build-ups in arteries, can develop silently and may rupture, leading to serious cardiovascular events like heart attacks or strokes. Despite treatments and controlling risks such as diabetes and high blood pressure, some people still develop dangerous forms of the disease. Researchers have found that plaques with thin caps, soft centers, or tiny new blood vessels are more likely to rupture, so new imaging methods are being developed to detect these vulnerable plaques earlier. This study evaluates a new 3D ultrasound probe and machine that can capture many more images than standard probes to visualize the entire plaque and its tiny blood vessels more accurately. Patients will receive an infusion of a microbubble contrast agent called SonoVue to enhance imaging. Initial 2D ultrasound images will confirm plaque presence, followed by 3D imaging using a specialized row-column array probe manipulated by a clinician. The 3D scan takes about 2 to 5 minutes and captures multiple images to assess plaque neovascularization. Participants will undergo ultrasound scans of their carotid arteries after receiving the contrast agent via an infusion. Researchers will analyze these images offline to detect new blood vessels within plaques. The main measurement is the detection of carotid plaque neovascularization at baseline. The study begins with consenting patients who have carotid plaques confirmed by previous CEUS scans. Participation involves imaging procedures and consent, with the study lasting as long as these assessments are completed.
Actively Recruiting
Healthy Volunteer
Researchers are evaluating the effect of involving caregivers in a rehabilitation approach called caregiver-assisted rehabilitation with strategy training (CAR-ST) to improve daily activity functions in adults who have had a stroke. The study aims to compare CAR-ST with strategy training alone and with an education program to see which approach leads to better improvements in activity performance and whether these improvements extend to other areas like participation and impairment. This is a single-blinded, three-arm randomized controlled trial conducted in multiple centers to assess the potential benefits of caregiver involvement in home-based post-stroke rehabilitation. Participants will be randomly assigned to one of three groups: CAR-ST, strategy training alone, or an education program. The CAR-ST and strategy training groups receive up to 10 therapist-guided sessions over a maximum of 6 weeks, with sessions once or twice weekly lasting about 60 minutes each. CAR-ST involves caregivers actively assisting and motivating participants during at-home practice, while the strategy training group does not include caregiver participation. The education group receives 10 matched sessions focused on stroke information delivered through face-to-face talks, video calls, or phone calls. During the study, participants will be assessed at four time points: before treatment, immediately after the intervention, and at 3- and 6-month follow-ups. Researchers will use various clinical tools to measure changes in activity performance, participation, quality of life, self-efficacy, motor function, cognition, and goal attainment. Qualitative interviews will also explore participant and caregiver experiences and satisfaction. The total involvement spans from baseline through six months after treatment, with continuous monitoring and data analysis to evaluate the interventions' impact.
Actively Recruiting
Researchers are evaluating whether neflamapimod, a drug that inhibits the enzyme p38 alpha kinase, can improve physical disability and cognitive problems after moderate to severe acute ischaemic stroke. This is a phase 2, randomized, double-blind, placebo-controlled study focused on recovery following stroke in adults aged 45 and older. The study is sponsored by EIP Pharma Inc and aims to assess motor recovery and functional improvements over 12 weeks of treatment. Participants will be assigned to one of several groups receiving either neflamapimod or a placebo. The drug and placebo are given as capsules taken with food either three times daily or twice daily for 12 weeks. The study includes two cohorts with differing capsule dosing schedules. The treatment phase lasts for 12 weeks, during which the effects of neflamapimod on motor function and stroke recovery are evaluated. During the study, participants will undergo assessments including the Fugl-Meyer Assessment of Motor Recovery after Stroke, the Timed Up and Go Test, and the National Institutes of Health Stroke Scale to measure changes in motor skills and overall stroke severity. Additional measures include the Modified Rankin Scale and Barthel score to evaluate functional independence. The trial involves regular monitoring and evaluations from enrollment through the end of the 12-week treatment period.
Actively Recruiting
Researchers are evaluating MT200605, a drug that acts like brain-derived neurotrophic factor (BDNF) by protecting brain nerve tissues and supporting energy production in the brain's striatum. This study focuses on patients who have had an acute ischemic stroke within 24 hours, aiming to see if MT200605 can help reduce brain injury and improve recovery. The trial is a Phase II exploratory study conducted at 32 centers in China, enrolling 360 patients. Participants will be randomly assigned to receive either a low, medium, or high dose of MT200605 or a placebo. All patients will also receive standard medical care. The study drug or placebo is given twice daily by intravenous infusion for 14 consecutive days. The trial uses a double-blind design, meaning neither participants nor researchers know which treatment is given. During the study, researchers will assess patients using the modified Rankin Scale (mRS) to measure disability three months after the stroke. They will also evaluate changes in the National Institutes of Health Stroke Scale (NIHSS) score two weeks after treatment. Safety, brain function, and recovery will be closely monitored throughout the trial, which starts in October 2025 and continues until June 2026.
Actively Recruiting
Healthy Volunteer
Researchers are evaluating whether combining two non-invasive brain stimulation methods—muscle stimulation of the arm using functional electrical stimulation (FES) and neurostimulation through the tongue—can improve recovery after stroke. This study focuses on adults who have experienced a stroke and have upper extremity motor impairments, aiming to measure changes in motor function and brain plasticity using behavioral tests and functional MRI scans. Participants are divided into several groups including stroke patients with upper extremity impairments receiving EEG-guided brain-computer interface (BCI) training combined with muscle and tongue stimulation, stroke patients receiving traditional rehabilitation before starting BCI-FES-tongue therapy, stroke patients receiving standard FES therapy only, healthy controls, and people with stroke risk factors. The study involves training sessions with the EEG-BCI system, muscle and tongue stimulation, and the use of the recoveriX system, which provides real-time visual and tactile feedback paired with imagined hand movements. The intervention periods vary, with some groups receiving delayed therapy and others immediate BCI therapy. Participants will undergo multiple assessments including behavioral tests of upper extremity function, EEG recordings, and functional MRI scans at the start and after about four months of therapy. The researchers will monitor changes in arm function using the Action Research Arm Test and observe brain activity changes through EEG and fMRI. The study includes up to six BCI training sessions and regular evaluations over approximately 10 weeks, with some groups receiving additional follow-up MRI and behavioral testing. Safety screening excludes those with allergies to electrode materials or contraindications for MRI, and pregnant women are not eligible.
Actively Recruiting
Healthy Volunteer
Researchers are conducting a large-scale, multicenter, prospective study to understand ischemic stroke better. The study focuses on collecting various biological samples like blood, feces, and urine from patients diagnosed with ischemic stroke to identify biomarkers linked to the condition. By combining demographic data, clinical indicators, imaging results, and biomarker information, the team aims to create models for risk assessment, early warning, and predicting patient outcomes. The study also seeks to identify key genes and explore related signaling pathways associated with ischemic stroke. Participants receive standard care, which may include intravenous thrombolysis with alteplase administered within the appropriate time window after stroke onset. The study groups include patients categorized based on prognosis as those with favorable or unfavorable outcomes. This observational study tracks patients over time without assigning specific treatments beyond usual care. Participants will undergo regular follow-up assessments, including monitoring cerebrovascular events and evaluating modified Rankin Scale scores three months after stroke onset. Various biological samples are collected to support biomarker analysis. The study involves ongoing data collection on clinical, imaging, and biological parameters to support the development of predictive models. The total duration and specific visit schedules vary by participant, with long-term follow-up planned under the study protocol.
Actively Recruiting
This research aims to evaluate a digital treatment combining an iPad-based cognitive training program called AKL-T01 with metacognitive strategy coaching to improve executive dysfunction, depression symptoms, and daily function in individuals who have experienced a stroke. The study focuses on those with post-stroke depression and executive dysfunction, conditions linked to ongoing mood and cognitive challenges. Researchers will assess whether this combined treatment enhances brain connectivity and overall functioning compared to a control group. Participants in the intervention group will use the AKL-T01 program for 25 minutes a day, five days a week, over six weeks. This program involves multitasking exercises in a video game-like environment using an iPad. Alongside this, they will receive weekly 45-minute coaching sessions with a clinician to reflect on their experiences and develop strategies for daily activities. The control group will engage in general cognitive games on the iPad for the same duration and frequency, also paired with similar coaching sessions. Throughout the study, participants will undergo assessments at the start and end of the six-week treatment period. These include tests measuring executive function, depression symptoms, daily functioning, and brain connectivity through MRI scans. Researchers will monitor adherence to the treatment and evaluate changes using standardized tools such as the Oral Symbol Digit Modalities Test, Montgomery Asberg Depression Rating Scale, and resting state functional MRI. The total study duration for each participant is six weeks.
Actively Recruiting
Researchers are developing and validating a wearable sensor designed to help patients with Parkinson's Disease (PD) who have swallowing difficulties and drooling problems. This study focuses on improving the device's battery life and size, assessing usability with patient feedback, and testing its ability to detect and encourage swallowing in PD patients. The aim is to provide a digital therapeutic platform that can support swallowing function in this population. The wearable device, called the Aria sensor, is a patch that monitors physiological signals continuously and provides vibratory haptic cues to increase how often participants swallow. Participants will use the sensor for three weeks, with the device actively providing haptic cues only during the second week. This single-arm study tracks how the sensor performs in real-life conditions without randomization or blinding. Participants will be involved for three weeks, during which researchers will measure swallow frequency changes, participant adherence to using the haptic cues, and changes in clinical scales related to drooling and swallowing. Assessments include comparing sensor data to a gold standard and evaluating symptom severity before and after the intervention. The study also includes focus groups to gather patient feedback on usability, and safety monitoring is conducted throughout the study period.
1-10 of 1,602
1