Hypoxic Ischemic Brain Injury

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Review clinical trials related to Hypoxic Ischemic Brain Injury. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Molecular Insights Into Post-Cardiac Arrest Brain Injury Via CSF Multi-Omics

The goal of this study is to uncover the molecular mechanisms responsible for secondary brain injury in patients with post-cardiac arrest syndrome by analyzing cerebrospinal fluid (CSF) using multi-omics techniques. The main question this study aims to answer is: Which genome-, transcriptome-, proteome-, and metabolome-level changes in CSF are associated with secondary brain injury after cardiac arrest? To address this question, CSF samples collected from post-cardiac arrest patients will undergo multi-omics analyses. Identified molecular pathways will be used to screen existing drug databases and generate new therapeutic candidates through computational modeling and compound synthesis. These findings will provide the scientific foundation needed to design and implement future preclinical experiments using cardiac arrest animal models.

Participants needed: 60
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Chungnam National University HospitalUpdated: Mar 18, 2026Locations: 1Duration: 3 Months
Eligibility criteria

Patients receiving post-resuscitation care after out-of-hospital cardiac arrest... [+9]

Cerebral Edema: Patients with evidence of cerebral edema on a brain computed tom... [+3]

Status: Not yet recruiting

Regional Ventilation Evaluation During Neuro-injury Weaning Study

This study evaluates changes in regional lung ventilation using thoracic electrical impedance tomography (EIT) during the weaning process from mechanical ventilation in ICU patients with acute brain injury. It aims to identify predictive EIT patterns related to extubation outcomes.

Participants needed: 60
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Assistance Publique - Hôpitaux de ParisUpdated: Feb 19, 2026Locations: 1
Eligibility criteria

Age 18 or older [+4]

Pregnancy [+2]

Status: Recruiting

Identification of Brain Injury Using Portable MRI

The goal of this study is to look for brain injury in patients who had a cardiac arrest, using portable brain imaging. The portable nature of this test will also allow for serial imaging so the investigators can understand how brain injury changes over days. The results of this study may allow for bedside imaging to be available at centers without specialized imaging centers and may identify markers of brain injury that help to select the patients most likely to benefit for clinical trials.

Participants needed: 60
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Yale UniversityUpdated: Jan 27, 2026Locations: 1
Eligibility criteria

Unresponsive immediately after ROSC from IHCA or OHCA [+3]

MRI contraindication according to the American Heart Association guidelines [+2]

Status: Recruiting

Perinatal Brain Injury: Potential of Innovative NIRS to Optimize Hypothermia

The purpose of this study is to improve the ability of the investigators to monitor brain health in newborn babies at risk of brain injuries. The researchers will be using an investigational system of devices to non-invasively (that, is, without penetrating the skin), measure the amount of oxygen going to and being used by the brain. They will be taking some bedside research measurements during the babies' stay at the hospital. With these measurements, the intention is to study the role of oxygen in brain injury and test the efficacy of the research device and its potential as a permanent bedside diagnostic device.

Participants needed: 125
Trial details
Age: Up to 2Biological sex: AllType: ObservationalSponsor: Boston Children's HospitalUpdated: Dec 10, 2025Locations: 3
Eligibility criteria

Undergo TH as part of their clinical management [+3]

Status: Not yet recruiting

Dexmedetomidine Versus Morphine During Cooling Therapy in Neonates

About \~3/ 1000 live-born newborns may suffer from brain injury due to a transient drop in oxygen supply to the brain during the birth process. The degree of brain injury that ensues in the first 72 hours after the injury is directly proportional to the severity of long-term childhood disabilities (e.g., cerebral palsy and developmental delays). Whole-body cooling during the first 3 days of life is proven effective in reducing the severity of brain injury. However, cooling therapy leads to pain, shivering, stress, and discomfort. The best way to alleviate the pain and agitation of cooled newborns is unknown. Standard practice is to provide morphine infusion to reduce pain. Recently, a new drug called "dexmedetomidine" has been tested in small studies and has been found to be safe during cooling in newborns. Dexmedetomidine has added beneficial effects such as anti-inflammation, faster recovery, and shorter hospital stays. This study is going to test the feasibility of conducting a future clinical trial to compare the effects of using Dexmedetomidine versus morphine in the management of cooling-related pain/agitation on the severity of brain injury in the first week of life. The study will also examine the effect of dexmedetomidine compared to morphine on short-term clinical outcomes, parental experiences and developmental outcomes at 1 year.

Participants needed: 50
Trial details
Phase: Phase 2Age: Up to 20Biological sex: AllType: InterventionalSponsor: Ipsita GoswamiUpdated: May 22, 2025Locations: 1
Eligibility criteria

Gestational age >= 35 weeks [+4]

Informed consent not obtained within 20 hours of life [+3]