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Hemorrhage clinical trials

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NCT ID: NCT06409364 Not yet recruiting - Clinical trials for Aneurysmal Subarachnoid Hemorrhage

FLudrocortisone Administration in Aneurysmal Subarachnoid Haemorrhage

FLASH
Start date: July 1, 2024
Phase: Phase 2
Study type: Interventional

A multi-centre, prospective, blinded, randomised clinical trial of fludrocortisone compared with placebo in patients presenting with aneurysmal subarachnoid haemorrhage. The study aim is to determine if early administration of enteral fludrocortisone in aneurysmal subarachnoid haemorrhage reduce death and dependency at six months.

NCT ID: NCT06402968 Not yet recruiting - Stroke Clinical Trials

Clevidipine for the Antihypertensive Treatment of Acute Intracerebral Hemorrhage

CLUTCH
Start date: June 1, 2024
Phase:
Study type: Observational

The aim is to compare the rate of hypertensive subjects with ICH who reach SBP target with stability within 60 minutes of enrollment, among patients treated with IV clevidipine with those treated with alternate IV antihypertensive regimen.

NCT ID: NCT06393868 Not yet recruiting - Clinical trials for Venous Thromboembolism

Reducing Gastrointestinal Bleeding With Proton Pump Inhibitor Therapy in Acute Venous Thromboembolism

Start date: June 2024
Phase: Phase 3
Study type: Interventional

The investigators are studying whether treatment with a proton pump inhibitor called omeprazole reduces gastrointestinal bleeding in older adults taking blood thinners for a blood clot (venous thromboembolism). The purpose of this study, a pilot study or a feasibility study, is to test the study plan and determine whether enough participants will join a larger study and accept the study procedures.

NCT ID: NCT06386107 Not yet recruiting - Cancer Clinical Trials

Thrombin Generation Parameters and Bleeding in Patients Treated With Anticoagulants for Cancer Associated Thrombosis

CATforCAT
Start date: June 2024
Phase: N/A
Study type: Interventional

Pulmonary embolism, the second leading cause of death in cancer patients, is effectively treated with anticoagulants. In patients with cancer-associated thrombosis (CAT), the use of anticoagulants is associated with 10 to 15% of bleeding in the first 6 months. Most of the guidelines propose to integrate the bleeding risk in the choice of therapies. Thrombin generation assay (TGA) reflects an overall hemostatic response and could be a useful biomarker. Proven on the thrombotic side in the CAT population, useful in the assessment of the bleeding risk of hemophiliac patients, the TGA is emerging as a tool. The investigators to measure TGA in cancer patients included prospectively, having recently developed a CAT and to evaluate the association between the measurement and the risk of hemorrhagic complication under anticoagulant during the first 6 month of treatment.

NCT ID: NCT06385613 Not yet recruiting - Life Style, Healthy Clinical Trials

The Effect of Mobile-Based Education on Self-Care, Quality of Life and Complications in Patients With Intestinal Stoma

Start date: April 22, 2024
Phase: N/A
Study type: Interventional

Stomas are most commonly used in the gastrointestinal tract as ileostomy or colostomy. Although colorectal cancers are the most important factor causing intestinal stoma opening, intestinal ostomies are also used in cases such as congenital anomalies, obstructive or inflammatory bowel diseases, traumas requiring surgery, large defects caused by colorectal injuries as well as sigmoid colon volvulus and ischemic colitis. In stoma surgery performed to increase the duration and quality of life of individuals, the patient's compliance with the stoma and awareness of possible complications are important. Conditions such as peristomal skin problems, noisy bowel movements, stool leakage and pain make it difficult to adapt to the stoma.In addition, despite all the advances in stoma care products and surgical techniques, individuals are faced with stoma complications. Therefore, individuals with stoma should be closely monitored for complications. Inappropriately selected stoma site or bag/adapter system, lack of knowledge and skills related to stoma care can be listed among the possible causes of complications. Complications such as edema, bleeding, ischemia and mucocutaneous separation may develop in the first days after stoma surgery. In studies evaluating patients in terms of stoma compliance and complications in the literature, it has been observed that mobile-based trainings given to patients increase their stoma compliance and reduce the incidence of complications. With the mobile-based training planned to be used in the study, it is thought to contribute to the ability of individuals to perform stoma care independently. With the decrease in peristomal skin lesions and stoma complications, it is predicted that the quality of life of patients with stoma will increase, self-care competence will be formed, and health expenditures and therefore national health expenditures will decrease. It is thought that this mobile training application will not only provide support to patients with stoma but also guide healthcare professionals. It will also contribute to closing the shortage of stoma and wound care nurses in hospitals.

NCT ID: NCT06375889 Not yet recruiting - Clinical trials for Delayed Cerebral Ischemia

Platelet Activation in Delayed Cerebral Ischemia Secondary to Aneurysmal Subarachnoid Hemorrhage

APICRASH
Start date: May 13, 2024
Phase:
Study type: Observational

Aneurysmal subarachnoid haemorrhage is a complex pathology, the pathophysiology of which is still imperfectly understood. Its morbidity and mortality remain significant. In addition to the damage sustained by the brain in the immediate aftermath of aneurysmal rupture, which is inaccessible to life-saving treatment, a significant proportion of lesions occur at a distance from the initial event. Delayed cerebral ischaemia is one of the most morbid complications. It combines an inflammatory pattern with vascular dysfunction and neuronal excitotoxicity, leading to avoidable secondary neuronal loss. Vascular dysfunction is mediated by a loss of homeostasis between endothelial cells and figurative blood cells, including platelets. However, the interrelationship between these elements and the precise chronology of the dysfunction remain imperfectly described to date. It therefore seems appropriate to propose temporal monitoring of platelet activation kinetics over time, combined with concomitant collection of markers of endothelial damage, in order to clarify the vascular chronobiology of this pathology.

NCT ID: NCT06374693 Not yet recruiting - Clinical trials for Subarachnoid Haemorrhage From Cerebral Aneurism Rupture

Investigating the Tolerability and Feasibility of Transcutaneous Vagus Nerve Stimulation Following Aneurysmal Subarachnoid Haemorrhage

tVNS in aSAH
Start date: April 14, 2024
Phase: N/A
Study type: Interventional

After a subarachnoid haemorrhage, complications are common and increase the overall rate of disability and death from the condition. Despite some advances in preventing, detecting and treating these complications, the rates of complications and associated risks remain high. Further research into ways to reduce complications of subarachnoid haemorrhage. Transcutaneous vagus nerve stimulation (tVNS) is a technique where a small handheld device is attached to an earpiece which stimulates the nerves to the ear. This is given for short periods and may help improve blood flow and reduce inflammation in the brain. The intervention has been safely used and licensed in seizures, headache and severe depression. This study will look to see if it is feasible and tolerable to have tVNS twice daily for 5 days after subarachnoid haemorrhage, and whether it can help reduce the risk of complications from subarachnoid haemorrhage. The participant will be randomly allocated to receive either tVNS or a dummy intervention, known as sham. The researchers will collect some personal and clinical details such as diagnosis, medications, age, blood test results, as well as some details about the subarachnoid haemorrhage. The researchers will also complete brief questionnaires with the participant to assess symptoms. They will take measurements of heart rate, pupil response, and brain activity using a cap. The participant will then be randomly allocated to either receive the tVNS or sham intervention. Next, the research team will apply the earpiece to their ear twice a day for 45 minutes, for a total of 5 days. At the end of the 5-day study period, the intervention will be complete. The researchers will arrange a follow-up meeting on discharge and at 6 weeks, to assess the participants symptoms and recovery. Previous studies have shown that tVNS is safe and well tolerated, including a recent review of tVNS studies which evaluated the side effects experienced by 1322 patients receiving tVNS. The main side effects include localised tingling/numbness/pain/redness around the ear (17%), headaches (3%), dizziness (1%), facial droop (1%), nausea (1%), nasal discharge (2%). Rarely, palpitations or a slow heart rate may occur. They will continue to receive full medical treatment and observation alongside the study. They are free to withdraw from this study if they find it too demanding on top of their other activities.

NCT ID: NCT06373640 Not yet recruiting - Clinical trials for Subarachnoid Hemorrhage

Haemoglobin And Vancomycin Pharmacokinetics in the Cerebrospinal Fluid Following Subarachnoid Haemorrhage

HAPTO
Start date: November 2024
Phase: N/A
Study type: Interventional

The HAPTO study will recruit adult patients with aSAH due to a burst aneurysm. These patients must be scheduled to have their aneurysm treated surgically to prevent further bleeds, and need an external ventricular drain for clinical reasons (to drain fluid and relieve pressure on the brain). At the end of their surgery for their aneurysm, a further drain will be left at the site of the surgery (which is in the basal cisterns) and they will additionally have a drain sited in their lumbar spine. Vancomycin will be given through these drains. Additionally, these drains will allow the fluid in the brain to be collected to measure how haemoglobin levels and vancomycin levels differ between compartments and change over time. Patients will participate in the study over a period from recruitment at three days after aSAH to a maximum of ten days after aSAH. The data will be analysed to determine the relationship in haemoglobin concentrations between different areas of the brain and spine after aSAH, and how vancomycin distribution is related to its route of administration.

NCT ID: NCT06370520 Not yet recruiting - Brain Injuries Clinical Trials

Screening Emotions in Adolescents at the Hospital for mTBI

SEARCH-mTBI
Start date: May 2024
Phase:
Study type: Observational

The goal of this observational study is to develop and validate a clinical tool to predict which adolescents aged 11 to less than 18 years of age with mild traumatic brain injury (mTBI) are at an increased risk for developing significant new or worsening mental health conditions. The main aims the study wish to answer are: - Does the adolescent have new or worsening depression or anxiety defined as a change from their previous medical history using self-reported questionnaires at either one or three months post-injury? - Does the adolescent have unmet mental health care needs, defined as not receiving any mental or behavior health care in patients with new or worsening anxiety or depression as defined by the self reported questionnaires? Participants will be enrolled after being diagnosed in the emergency department (ED) with an mTBI. During the ED visit, the child's parent/caregiver and the adolescent will complete several questionnaires related to mental health which include tools to measure anxiety and depression. Participants will be asked to complete these questionnaires again at 1 month and 3 months post enrollment.

NCT ID: NCT06368648 Not yet recruiting - Stroke Clinical Trials

CoMind Early Feasibility Study

CoMind EFS
Start date: June 2024
Phase:
Study type: Observational

The purpose of this research, which has been determined as non-significant risk by the central IRB overseeing the study, is to obtain information to help further develop a machine (a medical device) to measure the pressure around the brain from the outside (this pressure is called intracranial pressure or ICP). Monitoring and managing ICP is an important part of care for patients with conditions such as Traumatic Brain Injury (TBI). However, the current way of measuring ICP requires surgery to drill a hole into the skull, and therefore can introduce additional risks such as infections and pain. Recent research has shown it may be possible to measure ICP without needing surgery. This technology is in development, but large amounts of data is required to build these new devices. Through collecting a large database of information from patients who have both the routine surgical device and the research device applied to their head, the research team will work to develop and test an effective and potentially safer way of monitoring patient ICP.