Clinical Trials

Stroke Clinical Trials

Browse actively recruiting Clinical Trials for ischemic stroke, hemorrhagic stroke, and stroke recovery and apply in minutes.

20 active Clinical Trials

N/AStarting soon

Tolerability of Transcutaneous Vagal Nerve Stimulation

The purpose of this study is to assess the feasibility and tolerability of transcutaneous auricular vagus nerve stimulation (taVNS) in childhood stroke survivors undergoing bi-manual occupational therapy.

Stroke· The University of Texas Health Science Center, Houston· Houston, Texas· Ages 13–21
Learn more
N/ARecruiting

Human-Machine System for the H2 Lower Limb Exoskeleton

This research study will investigate the use of smart lower limb robotic exoskeleton (developed by the CSIC, Spain) in rehabilitation after stroke. It will compare robotic-assisted rehabilitation with supervised motor practice. Additionally, it will also examine the use of noninvasive scalp electroencephalography (EEG) to learn specific brain wave patterns associated with learning to walk on the powered lower limb exoskeleton. The findings will be used to understand human-robot interaction and to design smart orthotic devices that can be controlled by thought activity and assist those that have lost all or part of their walking abilities.

Stroke· University of Houston· Houston, Texas· Ages 18–75
Learn more
N/AStarting soon

Virtually Assisted Home Rehabilitation After Stroke for Underserved Texas Communities

The purpose of this study is to evaluate the clinical effectiveness of Virtually Assisted Home Rehabilitation After Acute STroke (VAST) + post-acute stroke usual care (PASUC) compared to PASUC alone and examine how social determinants of health (SDOH) influence access to and utilization of PASUC rehabilitation.

Stroke· The University of Texas Health Science Center, Houston· Houston, Texas
Learn more
N/ARecruiting

Delay AvoIding Primary Evaluation for ThRombectomy of Acute StrokE Patients With Large Vessel OCclusion in the Angiography SuiTe

The purpose of this study is to compare two strategies for treating adults with suspected large vessel occlusion stroke within 7 hours of symptom onset. Researchers will evaluate whether direct transfer to the neurointerventional angiography suite improves recovery and reduces disability compared to the conventional approach of first being evaluated in the emergency department. The study will also assess safety and other health outcomes to guide care for stroke patients.

Stroke, Acute· Santiago Ortega Gutierrez· Iowa City, Iowa · Detroit, Michigan +4 more
Learn more
N/ARecruiting

Diagnostic Performance Study of the EMVision Emu™ Brain Scanner in the Detection of Intracranial Hemorrhage in Suspected Stroke Patients

The purpose of this research is to evaluate a new investigational device for the diagnosis of stroke, the EMVision emu™ Brain Scanner. Stroke is the result of a blood clot stopping the normal flow of blood in the brain (ischaemic stroke) or a breakage in a blood vessel causing bleeding in the brain (haemorrhagic stroke). Stroke is a medical emergency and must be quickly diagnosed and treated. Computed tomography (CT) or magnetic resonance imaging (MRI) scans are commonly used to diagnose stroke, but they are not always readily available. EMVision has developed the emu™ Brain Scanner, a helmet-like device which scans the head using ultra-high frequency radio signals. It is portable and easy to use, making it more accessible than CT or MRI machines. Easier access to the EMVision emu™ Brain Scanner may reduce the time taken to diagnose stroke, leading to faster treatment and better health outcomes. It is the purpose of this study in the first instance to determine the accuracy of the EMVision emu™ Brain Scanner in the detection of haemorrhagic stroke.

Stroke· EMVision Medical Devices Ltd· Los Angeles, California · Jacksonville, Florida +2 more
Learn more
N/ARecruiting

Personalized Transcranial Direct Current Stimulation in Stroke Recovery

The central objective of this application is to explore the neural substrate of personalized tDCS (ptDCS) and to determine whether the paradigm for each stroke patient can predict the amount of sustained clinical improvement through increased connectivity as measured by a biomarker of plasticity.

Stroke· The Methodist Hospital Research Institute· Houston, Texas· Ages 18–80
Learn more
Early Phase 1Starting soon

Neuro-Intermuscular Coordination Enhancement (NICE) Rehabilitation Through Human-Machine Interaction in Chronic Stroke

The objective of this study is to develop Neuro-Intermuscular Coordination Enhancement (NICE) rehabilitation, a novel neuromuscular control signal-guided strategy that visually guides stroke patients to individually activate motor modules through human-machine interaction. Ultimately, the development will lead to better clinical motor recovery, better quality of life, and lowered healthcare costs associated with the impairment.

Chronic Stroke-related Upper-extremity Motor Impairment· University of Houston· Houston, Texas· Ages 21–80
Learn more
N/ARecruiting

Balloon Guide Versus Conventional Guide Catheter in Stroke Thrombectomy

The purpose of this clinical trial is to study the two main types of approaches used in stroke thrombectomy and to investigate if one approach is more effective than the other, as this is currently not known. This study will be conducted in adults who have been diagnosed with an acute ischemic stroke and who are undergoing a thrombectomy for the treatment of their stroke. The main questions it aims to answer are: * Does the use of a balloon guide catheter versus a conventional guide catheter lower the time needed to restore blood flow in the blocked vessel in the brain * To help researchers better understand the technical, clinical, and procedural outcomes associated with using a balloon guide catheter versus a conventional guide catheter in stroke thrombectomy Participants will be asked to * Share their medical history and imaging data that is collected as part of their routine medical care * Undergo a mechanical thrombectomy as part of their routine medical care * Answer some questions about their neurological functioning at 3 months (90 days) post hospitalization

Acute Ischemic Stroke AIS· University of South Florida· Tampa, Florida · Houston, Texas
Learn more
N/ARecruiting

Optimizing Gait Symmetry After Stroke Using Mechanical Constraints and Sensory Feedback

This single-session study aims to evaluate a novel gait training protocol that integrates mechanical constraints and sensory feedback to enhance paretic leg propulsion in individuals post-stroke. The study will include 15 individuals who have experienced a stroke and 15 healthy adults, each aged 20 years or older. Participants will walk on both tied-belt and split-belt treadmills under various training conditions, including backward-directed resistance (applied at the pelvis, ankle, or both) and real-time sensory feedback (visual, auditory, or combined). These interventions will be applied individually and in combination to identify the most effective environment for promoting symmetrical gait patterns. Each session will last approximately two hours. The equipment used is non-invasive, and the risk to participants is minimal.

Stroke· The University of Texas Medical Branch, Galveston· Galveston, Texas
Learn more
N/AStarting soon

Reduce Inefficiencies in Management of Spasticity

The purpose of this study is to evaluate the effectiveness of a spasticity screener and to determine if the spasticity screener results are useful to healthcare providers and impact clinical decision making

Stroke· The University of Texas Health Science Center, Houston· Houston, Texas· Ages 18–80
Learn more
Phase 1Recruiting

Facilitating Neuroplastic Changes of Acute Stroke Survivors

This project will develop a wearable rehabilitation robot suitable for in-bed acute stage rehabilitation. It involves robot-guided motor relearning, passive and active motor-sensory rehabilitation early in the acute stage post-stroke including patients who are paralyzed with no motor output. The early acute stroke rehabilitation device will be evaluated in this clinical trial.

Stroke· University of Maryland, Baltimore· Houston, Texas· Ages 30–85
Learn more
N/ARecruiting

Increasing the Repertoire of Intermuscular Co-ordination Post Stroke Through EMG-Guided Human-Machine Interaction

The purposes of this study include: 1. \- To identify whether features of aberrant intermuscular coordination patterns can be used to predict motor impairment after stroke. 2. \- To test whether muscle synergies are malleable to a non-invasive EMG-guided exercise that induces changes in intermuscular coordination of upper extremity muscles after stroke.

Stroke· University of Houston· Houston, Texas· Ages 40–75
Learn more
N/ARecruiting

Virtual Reality-Integrated Propulsion Feedback for Stroke Rehab

This study evaluates a novel Virtual Reality (VR)-integrated visual feedback system designed to enhance limb propulsion during robot-assisted gait rehabilitation in individuals post-stroke. In collaboration with CUREXO, a rehabilitation robotics company, the system is embedded within the Morning Walk® end-effector robot and provides real-time visual feedback to facilitate symmetrical use of the paretic and non-paretic limbs. The goal is to address gait asymmetry commonly observed in hemiparetic stroke survivors by promoting improved paretic leg propulsion, which is a key contributor to forward movement during walking. A total of 30 participants (15 stroke, 15 healthy controls) aged 20 years or older will undergo single-session gait training using the VR-robot system. Participants will be assessed using spatiotemporal gait parameters, muscle activity, foot pressure, and vertical ground reaction forces. Additional safety measures-including a saddle-type weight support and real-time heart rate monitoring via smartwatch-are implemented to ensure a safe and controlled training environment. This study aims to test the feasibility and effectiveness of this VR-based system in improving gait symmetry and functional walking capacity in people recovering from stroke.

Stroke· The University of Texas Medical Branch, Galveston· Galveston, Texas
Learn more
Phase 1Starting soon

Safety Of A Second Dose Of Tenecteplase In Selected Acute Ischemic Stroke Patients Not Responding To The First Dose

In this pilot safety study, the investigators will give a second dose of Intravenous Tenecteplase (IV TNK) to patients receiving the initial TNK dose within 3 hrs of last known normal (LKN), have a baseline National Institutes of Health Stroke Scale (NIHSS) \> 6, and who do not clinically improve within 45 minutes of the first dose, or who improve but then deteriorate, and can still be treated within 4.5 hours from LKN. Patients will require a second computed tomography (CT) scan to rule out any bleeding, and meet the usual inclusion and exclusion criteria for TNK treatment, before the second dose which must be given within 4.5 hrs of LKN. Both TNK doses will be 0.25 mg/kg. The initial TNK dose may be given on the Mobile Stroke Unit (MSU) or Emergency Department (ED), and the second dose in the ED. Informed consent will be obtained before the second dose is given. The primary outcome will be symptomatic intracranial hemorrhage (sICH) (SITS-MOST criteria) or serious systemic bleeding within 36 hours. Secondary outcomes will be any intracranial hemorrhage, any bleeding, discharge NIHSS and modified Rankin Score (mRS), and mRS at 90 days (sliding dichotomy). 20 patients will be enrolled. Enrollment will be stopped if more than 3 sICH occur (\> 80% confidence that sICH rate is \> 5%. If successful, this study will be followed by a larger phase 2b controlled safety confirmation and pilot efficacy study,

Acute Ischemic Stroke· Memorial Hermann Health System· Houston, Texas· Ages 18–80
Learn more
Phase 1Starting soon

A Phase 1b Study to Assess the Safety and Tolerability of AB126 Neural Exosomes in Patients With Moderate to Severe Acute Ischemic Stroke

The goal of this clinical trial is to learn if AB126, an investigational treatment made from neural exosomes, is safe and well tolerated when given to adults with moderate to severe acute ischemic stroke (AIS) who have undergone endovascular thrombectomy (EVT) but have had limited neurological improvement after the procedure. The study will also evaluate different doses of AB126 to help determine the highest dose that can be given safely. The main questions it aims to answer are: 1. Is AB126 safe and well tolerated when given to participants with AIS following EVT? 2. What dose of AB126 can be given safely? 3. Does treatment with AB126 provide preliminary evidence of improved neurological recovery following stroke? Researchers will compare participants who receive AB126 with participants who receive placebo to evaluate the safety and tolerability of AB126 and to collect preliminary information about recovery following stroke. Participants will: 1. Be randomly assigned to receive either AB126 or placebo. Neither participants nor the study team will know which treatment is assigned. 2. Receive 3 intravenous (IV) doses of AB126 or placebo. The first dose will be given as soon as possible after EVT, but no later than 6 hours after blood flow has been restored. The second and third doses will be given approximately 24 and 48 hours after EVT. 3. Undergo medical examinations, laboratory tests, neurological assessments, and brain imaging during the study. 4. Remain under observation at a comprehensive stroke center until hospital discharge. 5. Complete follow-up assessments by telephone and in person for approximately 1 year after treatment, including assessments at approximately 10, 30, 90, 180, 270, and 360 days after treatment.

Acute Ischemic Stroke· Aruna Bio, Inc.· Houston, Texas· Ages 18–85
Learn more

Get notified about new Stroke Clinical Trials

Create a free account and we'll alert you when new Stroke Clinical Trials open near you.

Create free account