Aneurysmal subarachnoid hemorrhage (SAH) is a severe form of stroke caused by bleeding around the brain. Despite early treatment of the initial hemorrhage, many patients develop delayed cerebral ischemia several days later, which is a major cause of neurological disability, cognitive impairment, and mortality. Current preventive and therapeutic strategies are only partially effective, highlighting the need for new treatment approaches. This study investigates a simple, non-invasive technique called remote ischemic preconditioning (RIPC). RIPC consists of brief, repeated cycles of limb ischemia and reperfusion induced by a blood pressure cuff. RIPC is thought to activate endogenous protective mechanisms that may improve the brain's tolerance to ischemia. Although beneficial effects have been reported in experimental models and cardiovascular diseases, its clinical efficacy in aneurysmal SAH remains uncertain. In this randomized, controlled, single-blinded, multicenter study, adult patients admitted with aneyrysmal SAH will be randomly assigned to receive RIPC or a sham procedure. The RIPC group will undergo cycles of brief lower-limb ischemia using a pressure cuff, while the sham group will receive an identical procedure without inducing ischemia. Patients and neurologists assessing outcomes will remain blinded to group allocation. The intervention will be performed every two days from day 2 to day 10 after hemorrhage. Neurological outcome will be assessed at 3 months using the modified Rankin Scale. Secondary outcomes include mortality at 3 months, long-term neurological and cognitive function outcomes at 12 months, and the incidence of adverse events related to the procedure. If effective, RIPC could become a simple, low-cost, widely accessible method to reduce disability after SAH. The results may help improve future treatment strategies for this severe condition.
Age range
18 Years
Sex
ALL
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Neurological Functional Outcome at 3 Months (mRS)
Timeframe: 3 months (+/- 15 days) post-aneurysmal subarachnoid hemorrhage