[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-studies-list:{\"conditionNormalized\":\"cerebrocardiac-syndrome\",\"overallStatus\":[\"RECRUITING\",\"AVAILABLE\",\"NOT_YET_RECRUITING\"],\"orderBy\":\"LastUpdateSubmitDate:desc\",\"size\":25,\"offset\":0}":3,"health-study-condition:cerebrocardiac-syndrome":28},{"pageToken":4,"total":5,"offset":6,"count":5,"results":7},null,2,0,[8,45],{"id":9,"slug":10,"hasResults":11,"nctId":12,"briefTitle":13,"officialTitle":14,"acronym":4,"eligibilityCriteria":15,"healthyVolunteers":16,"sex":17,"minAge":18,"maxAge":19,"enrollmentInfo":20,"targetDuration":23,"studyType":24,"phases":4,"briefSummary":25,"conditions":26,"keywords":29,"overallStatus":33,"whyStopped":4,"lastUpdateSubmitDate":34,"lastUpdatePostDateStruct":35,"startDateStruct":38,"completionDateStruct":40,"leadSponsor":42,"locationsCount":5},"100589745","neural-mechanism-of-cerebrocardiac-syndrome-following-traumatic-brain-injury-100589745",false,"NCT06958406","Neural Mechanism of Cerebrocardiac Syndrome Following Traumatic Brain Injury","Lesion-Network Mapping Analysis With Brain Connectomics to Reveal the Neural Mechanisms of Cerebrocardiac Syndrome Following Traumatic Brain Injury","Inclusion Criteria:\n\n* Patients with isolated closed head trauma\n* Age 18-80 years old\n* Admitted to hospital within 24 hours of injury\n* Mild or moderate TBI (Glasgow Coma Scale score of 9-15)\n* Signed consent form\n\nExclusion Criteria:\n\n* Severe TBI (Glasgow Coma Scale score of 3-8)\n* A history of stroke, TBI, intracranial tumor or surgery in the past 1 year\n* A history of coronary heart disease, structural heart disease and other primary heart diseases or suspected cardiac symptoms prior to injury\n* Causes of abnormal cardiac biomarkers such as renal insufficiency, severe anemia, sepsis, cardiotoxic drugs and so on\n* Not suitable for MRI examinations, such as pregnant women and those with metal implants in the body\n* Undergo surgery prior to MRI examinations or cardiac testing",true,"ALL","18 Years","80 Years",{"count":21,"type":22},90,"ESTIMATED","6 Months","OBSERVATIONAL","Cerebrocardiac syndrome (CCS), including myocardial injury, arrhythmia or heart failure is one of serious complications of traumatic brain injury (TBI), mostly occurs within seven days after TBI, which directly aggravates the brain damage and affects the prognosis of TBI patients. Accumulative evidences suggest that autonomic nervous system disorder is a key initiation point for CCS, but how TBI affects the specific action patterns is not yet clear. Therefore, elucidating the neural mechanisms of TBI-induced CCS, maintaining the central sympathetic-parasympathetic balance through novel interventions such as noninvasive brain stimulation, may fundamentally block the downstream peripheral mechanism, thus achieving effective prevention and treatment for CCS. Based on the current emerging research in brain connectomics and lesion-symptom mapping, we speculate that cerebral contusions can cause structural or functional disconnection of key nodes in the central autonomic nervous system regulatory network, thereby mediating the occurrence of TBI-induced CCS.\n\nIn this study, magnetic resonance imaging (MRI) or functional MRI (fMRI) examinations were performed in patients with mild or moderate TBI with aim to explore the association between structural and functional disconnection caused by cerebral contusion and TBI-induced CCS, and to screen out the neural anatomical structures to predict CCS following TBI, providing therapy targets for prevention and treatment of CCS.",[27,28],"Traumatic Brain Injury","Cerebrocardiac Syndrome",[30,31,32],"traumatic brain injury","cerebrocardiac syndrome","brain connectomics","RECRUITING","2026-04-22",{"date":36,"type":37},"2026-04-23","ACTUAL",{"date":39,"type":37},"2025-08-10",{"date":41,"type":22},"2027-07-31",{"name":43,"class":44},"Shanghai 6th People's Hospital","OTHER",{"id":46,"slug":47,"hasResults":11,"nctId":48,"briefTitle":49,"officialTitle":50,"acronym":4,"eligibilityCriteria":51,"healthyVolunteers":16,"sex":17,"minAge":18,"maxAge":19,"enrollmentInfo":52,"targetDuration":4,"studyType":24,"phases":4,"briefSummary":54,"conditions":55,"keywords":4,"overallStatus":33,"whyStopped":4,"lastUpdateSubmitDate":67,"lastUpdatePostDateStruct":68,"startDateStruct":70,"completionDateStruct":72,"leadSponsor":74,"locationsCount":76},"100585750","mechanisms-of-brain-heart-injury-of-post-intracranial-hemorrhage-100585750","NCT06906432","Mechanisms of Brain-Heart Injury of Post-Intracranial Hemorrhage","Multimodal Omics and Imaging Study on the Mechanisms of Brain-heart Injury in Patients With Intracranial Hemorrhage","Inclusion Criteria:\n\n1. Patients aged 18 years or older at the time of enrollment.\n2. Acute intracranial hemorrhage confirmed by neuroimaging (CT, MRI，CTA, MRA, or DSA) within 48 hours of symptom onset.\n3. Ability to provide informed consent or have a legally authorized representative willing to consent on their behalf.\n\nExclusion Criteria:\n\n1. Patients who refuse to participate in the study or cannot provide informed consent.\n2. Patients with a history of significant cardiovascular disease, including myocardial infarction, heart failure, or arrhythmias, unless stable and well-controlled.\n3. Patients who have undergone cardiac bypass surgery, stent placement, or other cardiovascular interventions within the past 6 months.\n4. Patients with active brain tumors, ischemic stroke within 3 months or a history of previous brain injury that could confound the study findings.\n5. Patients with active malignant disease, severe inflammatory or infectious disease, or those who have undergone surgery for any reason within the past 3 months.\n6. Patients with any condition that, in the opinion of the investigator, would make it unsafe or impractical to participate in the study.",{"count":53,"type":22},1000,"Intracranial hemorrhage is a condition characterized by high mortality rates and suboptimal functional outcomes. It precipitates both direct brain injury and subsequent secondary injuries, including delayed cerebral ischemia, brain edema, and hydrocephalus. Complications such as cardiac injury may also arise, categorizing them within the cerebrocardiac syndrome (CCS). The clinical spectrum of CCS encompasses acute myocardial injury, acute coronary syndrome, left ventricular systolic and diastolic dysfunction, cardiac arrhythmias, and sudden cardiac death, all of which are associated with increased mortality and deterioration in patient status. The precise pathophysiological mechanisms underlying both cerebral and cardiac injuries remain enigmatic, and the implications for diagnosis and therapeutic strategies are yet to be fully explored.\n\nIn this study, we propose to enroll patients with intracranial hemorrhage who will undergo conventional treatment and comprehensive multidisciplinary evaluations. Our observational research is grounded in a multimodal omics and imaging approach, aimed at investigating both local and systemic injuries subsequent to intracranial hemorrhage. This comprehensive strategy is intended to facilitate precise diagnosis, risk stratification, and clinical decision-making, while also shedding light on the pathophysiological mechanisms involved.\n\nThe primary objectives of this research are to address the following key questions:\n\n* \\[Question 1\\] What are the pathophysiological mechanisms underlying cardiac injury in patients with intracranial hemorrhage?\n* \\[Question 2\\] What are the pathophysiological mechanisms responsible for early and delayed brain injuries following intracranial hemorrhage?\\&#34;",[56,28,57,58,59,60,61,62,63,64,65,66],"Subarachnoid Hemorrhage, Aneurysmal","Mass Spectrometry","Heart Failure","Atrial Fibrillation","Ischemic Heart Disease","Heart Infarction","Arrhythmias, Cardiac","Delayed Cerebral Ischemia","Hydrocephalus","Vasospasm, Cerebral","Intracerebral Hemorrhage","2025-03-29",{"date":69,"type":37},"2025-04-02",{"date":71,"type":37},"2024-08-01",{"date":73,"type":22},"2036-12-01",{"name":75,"class":44},"Beijing Tiantan Hospital",1]