View clinical trials related to Ischemic Stroke.
Filter by:The goal of this study is to predict and prevent adverse drug events by investigating the impact of genetic variants, demographics, and environmental factors in subjects status post myocardial infarction and percutaneous coronary insertion who have experienced adverse drug events while on P2Y12 inhibitors.
Optimal blood pressure management during endovascular treatment of acute ischemic stroke is not well established. Several retrospective data indicate, that there is a U-shaped relationship of admission blood pressure and functional outcome, where either very high or very low blood pressure are disadvantageous for the patient. Low blood pressure might lead to hypoperfusion in ischemic areas (i.e. penumbra) and to larger infarction sizes, while on the other hand, maladaptive high blood pressure might lead to edema and hemorrhage. Retrospective data investigating intraprocedural blood pressure and its influence on outcome is limited. Some studies indicate that hypotensive blood pressure drops from the level of the admission blood pressure lead to a worse outcome. Intraprocedural hypotensive drops are common during endovascular thrombectomy due to application of necessary sedative drugs for agitated stroke patients. We aim to investigate whether individualized blood pressure management with patient-specific blood pressure targets situated at the level during presentation might be associated with better functional outcome compared with general blood pressure targets for patients during thrombectomy. For this purpose, we plan to perform this single center, parallel-group, open-label randomized controlled trial with blinded endpoint evaluation (PROBE).
The purpose of this study will be to understand the underlying mechanism by which PCSK9 inhibition reduces the rate of ischemic stroke seen in the pivotal studies that led to its FDA approval for ASCVD such as ischemic stroke. Those trials (FOURIER and ODYSSEY) enrolled almost 50,000 patients and showed that PCSK9 inhibition therapy is safe and effective. The investigators hypothesize that PCSK9 inhibition lowers the rate of stroke by reducing atherosclerotic plaque, which would be particularly beneficial for patients with intracranial atherosclerosis, who have the highest rate of recurrent stroke of any stroke mechanism.
The purpose of this study will be to understand the underlying mechanism by which PCSK9 inhibition reduces the rate of ischemic stroke seen in the pivotal studies that led to its FDA approval for ASCVD such as ischemic stroke. Those trials (FOURIER and ODYSSEY) enrolled almost 50,000 patients and showed that PCSK9 inhibition therapy is safe and effective. The investigators hypothesize that PCSK9 inhibition lowers the rate of stroke by reducing atherosclerotic plaque, which would be particularly beneficial for patients with intracranial atherosclerosis, who have the highest rate of recurrent stroke of any stroke mechanism.
Adult patients who are diagnosed with an acute supratentorial ischemic stroke within 48 hrs of onset will be enrolled into the study. Participants will undergo both a CT Scan and PET scan within 7 days of onset. Participants will have the option to undergo a second PET scan with fluorodeoxyglucose (FDG).
A prospective, open label study designed to assess the safety, performance and efficacy of thrombus removal in subjects presenting with acute ischemic stroke with the NeVa stent retrievers.
Endovascular therapy (EVT) was recommended as the primary treatment for patients with acute large vascular occlusion (LVO) in anterior circulation. However, the evidences of EVT for patients with large infarct volume were limited. In this study, the investigators assume that best medical management plus EVT might be superior than best medical management alone for patients who have evidence of a large infarct volume. The primary objective of the study was to establish the safety and efficacy of EVT in patients presenting with symptoms of acute ischemic stroke (AIS) from LVO in the anterior circulation and having a large infarct volume.
This is an observational study in neurocritical care units at University of California San Francisco Medical Center (UCSFMC), Zuckerberg San Francisco General Hospital (ZSFGH), and Duke University Medical Center. In this study, the investigators will primarily use the monitor mode of the Transcranial Doppler (TCD, non-invasive FDA approved device) to record cerebral blood flow velocity (CBFV) signals from the Middle Cerebral Artery and Internal Carotid Artery. TCD data and intracranial pressure (ICP) data will be collected in the following four scenarios. Each recording is up to 60 minutes in length. Multimodality high-resolution physiological signals will be collected from brain injured patients: traumatic brain injury, subarachnoid and intracerebral hemorrhage, liver failure, and ischemic stroke. This is not a hypothesis-driven study but rather a signal database development project with a goal to collect multimodality brain monitoring data to support development and validation of algorithms that will be useful for future brain monitoring devices. In particular, the collected data will be used to support: Development and validation of noninvasive intracranial pressure (nICP) algorithms. Development and validation of continuous monitoring of neurovascular coupling state for brain injury patients Development and validation of noninvasive approaches of detecting elevated ICP state. Development and validation of approaches to determine most likely causes of ICP elevation. Development and validation of approaches to detect acute cerebral hemodynamic response to various neurovascular procedures.
Texas Biomedical Device Center (TxBDC) has developed an innovative strategy to enhance recovery of motor and sensory function after neurological injury termed targeted plasticity therapy (TPT). This technique uses brief pulses of vagus nerve stimulation to engage pro-plasticity neuromodulatory circuits during rehabilitation exercises. Preclinical findings demonstrate that VNS paired with rehabilitative training enhances recovery in multiple models of neurological injury, including stroke, spinal cord injury, intracerebral hemorrhage, and traumatic brain injury. Recovery is associated with neural plasticity in spared motor networks in the brain and spinal cord. Moreover, two initial studies and a recently completed Phase 3 clinical trial using a commercially available device demonstrates that paired VNS with rehabilitation is safe and improves motor recovery after stroke. The purpose of this study is to extend these findings and evaluate whether VNS delivered with the new device paired with rehabilitation represents a safe and feasible strategy to improve recovery of motor and sensory function in participants with stroke.
A post-market study evaluating the EMBOVAC Aspiration Catheter in acute ischemic stroke patients with confirmed intracranial large vessel occlusion.