View clinical trials related to Ischemic Stroke.
Filter by:Vagal Nerve Stimulation is a novel proven therapy for patients with chronic ischemic stroke. The primary objective of this registry is to assess the safety of vagal nerve stimulation for stroke recovery through monitoring the occurrence of serious adverse events associated with the surgical procedure or subsequent paired rehabilitation protocol. This registry will monitor patients undergoing VNS for stroke recovery in the Mount Sinai Health System and collect clinical and procedural details, objective outcomes, and patient-reported outcomes associated with vagal nerve stimulation for stroke recovery.
Extensive research is being conducted in search of neuroprotective agents for possible use in the acute phase of stroke and agents that can be used for neurorepair in later stages of stroke. Several trials have been conducted and are in progress using different pharmacological agents, but none of the studies involve the stimulation of ETB receptors to treat cerebral ischemic stroke. Sovateltide (IRL-1620, PMZ-1620) has been effective in animal models of cerebral ischemic stroke. Its safety and tolerability have been demonstrated in a human phase I study with 7 subjects. Clinical phase II and III results indicate that sovateltide is a novel, first-in-class, highly effective drug candidate for treating cerebral ischemic stroke. Safety and significant efficacy in improving the National Institutes of Health Stroke Scale (NIHSS), Modified Rankin scale (mRS), and Barthel index (BI) obtained in phase II and III studies in patients with cerebral ischemic stroke in India are convincing and encouraged us to investigate its safety and efficacy in cerebral ischemic stroke patients in the United States. Therefore, the plan is to conduct a phase III clinical study to evaluate the safety and efficacy of sovateltide therapy along with standard of care in patients of acute ischemic stroke.
This is a single-arm post-market study of up to 150 participants, using up to 50 mobile therapists to conduct up to 36-hours at-home therapy. The study will assess at-home therapy implementation instead of an in-clinic therapy implementation for patients who are commercially implanted with the Vivistim System. Patients will be consented for eligibility if appropriate to be implanted with the Vivistim System per the indications for use (The MicroTransponder® Vivistim® Paired VNS™ System is intended to be used to stimulate the vagus nerve during rehabilitation therapy in order to reduce upper extremity motor deficits and improve motor function in chronic ischemic stroke patients with moderate to severe arm impairment.). Study participation includes receiving rehabilitation therapy paired with VNS, provided at the patient's home by a therapist, along with self-activated VNS. All subjects will be commercially implanted with the Vivistim System® after an ischemic stroke prior to Study treatment, although they may be consented prior to implant. It should be noted that the implant surgery is not part of the study.
Objectives: Cerebral small vessel disease (SVD) is a common disease in patients with ischemic stroke and the most common cause of vascular dementia. Blood pressure (BP)-lowering is generally considered neuroprotective. Nevertheless, in patients with severe SVD burden, the optimal BP target is uncertain. Hypothesis: BP-lowering to a systolic BP of 120-129mmHg in ischemic stroke patients with severe SVD is not associated with impaired cerebral perfusion, nor does it associate with worsening of structural connectivity and cognitive function. Design and subjects: One-year trial where patients aged ≥50 with a history of ischaemic stroke and severe cerebral SVD will be randomised (1:1) to a systolic BP target of 120-129mmHg versus 130-140mmHg. Study instruments: At baseline and one-year, all subjects will receive a brain magnetic resonance imaging (MRI) to evaluate their cerebral blood flow (CBF) and white matter integrity. They will also receive neuropsychological batteries to evaluate cognitive functioning. In addition, subjects will receive home BP monitoring with periodic medication changes prescribed by medical doctor to ensure the target BP is achieved. Main outcome measures: Primary end-point is the change in CBF. Secondary end-points include changes in structural connectivity and cognitive performance.
The goal of this clinical trial is to study the effects of aerobic exercise during the early rehabilitation after ischemic stroke. The main questions it aims to answer are: - How is the recovery of motor function affected by regularly walking during the first 90 days after an ischemic stroke? - Does regularly walking during the first 90 days after ischemic stroke affect cognition, physical comfort and the immune system? Participants will exert a heart rate controlled walking programme of walking 3-5 times 30-45 minutes per week. Researchers will compare the recovery of the walking group to a control group without any demands regarding physical exercise.
Neuroprotection is expected to be an important therapeutic strategy for acute ischemic stroke(AIS), but almost all neuroprotective drugs proved effective in rodent models have failed after entering clinical trials. This study aims to screen the differentially expressed proteins in peripheral blood of patients with acute ischemic stroke and with further study in the animal model of non-human primate cerebral infarction, we may determine the biomarkers that can evaluate the efficacy of neuroprotective drugs.
This phase II clinical study is designed to evaluate the safety and efficacy of LT3001 in the treatment of acute ischemic stroke
Researchers are looking for a better way to prevent an ischemic stroke which occurs when a blood clot travelled to the brain in people who within the last 72 hours had: - an acute stroke due to a blood clot that formed outside the heart (acute non-cardioembolic ischemic stroke), or - TIA/mini-stroke with a high risk of turning into a stroke (high-risk transient ischemic attack), and who are planned to receive standard of care therapy. Acute ischemic strokes or TIA/mini-stroke result from a blocked or reduced blood flow to a part of the brain. They are caused by blood clots that travel to the brain and block the vessels that supply it. If these blood clots form elsewhere than in the heart, the stroke is called non-cardioembolic. People who already had a non-cardioembolic stroke are more likely to have another stroke. This is why they are treated preventively with an antiplatelet therapy, the current standard of care. Antiplatelet medicines prevent platelets, components of blood clotting, from clumping together. Anticoagulants are another type of medicine that prevents blood clots from forming by interfering with a process known as coagulation (or blood clotting). The study treatment asundexian is a new type of anticoagulant currently under development to provide further treatment options. Asundexian aims to further improve the standard of care without increasing the risk of bleeding. The main purpose of this study is to learn whether asundexian works better than placebo at reducing ischemic strokes in participants who recently had a non-cardioembolic ischemic stroke or TIA/mini-stroke when given in addition to standard antiplatelet therapy. A placebo is a treatment that looks like a medicine but does not have any medicine in it. Another aim is to compare the occurrence of major bleeding events during the study between the asundexian and the placebo group. Major bleedings have a serious or even life-threatening impact on a person's health. Dependent on the treatment group, the participants will either take asundexian or placebo once a day for at least 3 months up to 31 months. Approximately every 3 months during the treatment period, either a phone call or a visit to the study site is scheduled on an alternating basis. In addition, one visit before and up to two visits after the treatment period are planned. During the study, the study team will: - Check vital signs such as blood pressure and heart rate - Examine the participants' heart health using an electrocardiogram (ECG) - Take blood samples - Ask the participants questions about how they are feeling and what adverse events they are having. An adverse event is any medical problem that a participant has during a study. Doctors keep track of all adverse events that happen in studies, even if they do not think the adverse events might be related to the study treatments. In addition, the participants will be asked to complete a questionnaire on quality of life at certain time points during the study.
The goal of this clinical trial is to test whether perfusion CT can be used as a selection tool in stroke patients with a major anterior circulation occlusion, to exclude patients from thrombectomy because of a predicted non-beneficial outcome, when treated within 6 hours of symptom onset. Researchers will compare the experimental group, where mechanical thrombectomy is only performed when prespecified perfusion CT criteria are fulfilled, with the standard of care treatment group, where all patients will receive mechanical thrombectomy, to see if functional independence at 90 days is non-inferior.
Rationale: Recently, one prospective multicenter RCT reported a potential beneficial effect of intra-arterial alteplase following successful endovascular thrombectomy (EVT) in patients with an acute intracranial large vessel occlusion. In 2018, another prospective multicenter RCT supported the superiority of tenecteplase over alteplase in ischemic stroke patients with large vessel occlusion. Objective: To assess the effect of EVT in addition to intra-arterial tenecteplase compared to EVT alone, in patients with large vessel occlusion of posterior circulation, on functional and safety outcomes. Study design: This is a parallel group, randomized clinical trial of EVT with IA-TNK versus EVT. The trial has observer blind assessment of the primary outcome and of neuro-imaging at baseline and follow-up. Study population: Patients with acute intracranial large vessel occlusion of posterior circulation and an eTICI 2b-3 after EVT. Main study parameters/outcomes: The primary effect parameter will be excellent functional status at day 90 defined as a modified Rankin Score (mRS) of 0-1. The estimate will be adjusted for the known prognostic variables age, pre-stroke mRS, time from onset to randomization, stroke severity (NIHSS) and collaterals and adjusted and unadjusted estimates with corresponding 95% confidence intervals will be reported.