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A Volumetric Method for Quantification of Cerebral Vasospasm in a Murine Model of Subarachnoid Hemorrhage
Published on: July 28, 2018
Treatment of cerebral vasospasm after subarachnoid hemorrhage--a review
Ching-Tang Wu1, Chih-Shung Wong, Chun-Chang Yeh
1Department of Anesthesiology, Tri-Service General Hospital and National Defense Medical Center, National Defense University, Taipei, Taiwan, ROC.
Insights
Cerebral vasospasm after subarachnoid hemorrhage (SAH) causes significant death and disability. Understanding its complex mechanisms and evaluating new treatments like angioplasty are crucial for improving patient outcomes.
Area of Science:
- Neurology
- Neurosurgery
- Critical Care Medicine
Background:
- Delayed cerebral ischemia due to cerebral vasospasm is a primary cause of death and disability following aneurysmal subarachnoid hemorrhage (SAH).
- Cerebral vasospasm affects 17-40% of SAH patients, leading to severe neurologic deficits or death.
- Despite progress, the underlying pathologic mechanisms of cerebral vasospasm remain incompletely understood, hindering effective management.
Purpose of the Study:
- To review current understanding of cerebral vasospasm following SAH, including risk factors, pathophysiology, and treatment options.
- To highlight recent advancements and emerging therapies for managing cerebral vasospasm and its ischemic complications.
- To emphasize the need for further research, particularly large-scale randomized trials, to validate new treatment strategies and elucidate molecular mechanisms.
Main Methods:
- Review of existing literature on cerebral vasospasm after aneurysmal subarachnoid hemorrhage.
- Discussion of clinical presentation, diagnostic criteria, and iatrogenic risk factors.
- Evaluation of established and novel therapeutic interventions, including pharmacological agents and endovascular techniques.
Main Results:
- Nimodipine improves neurologic outcomes and reduces cerebral vasospasm incidence.
- Triple H therapy (hypervolemic, hypertensive, hemodilution) shows limited benefit in small trials.
- Angioplasty and vasodilators are emerging as primary interventions for refractory ischemia, with ongoing trials for agents like magnesium sulfate, fasudil, and erythropoietin.
Conclusions:
- Cerebral vasospasm remains a significant challenge after SAH, necessitating a deeper understanding of its complex pathophysiology.
- Current treatments like nimodipine and angioplasty offer benefits, but further research is essential.
- Emerging therapies and a focus on molecular mediators hold promise, but require validation through large prospective trials to optimize clinical management.
Abstract:
Delayed cerebral ischemia as a result of cerebral vasospasm is the most common cause of death and disability after aneurysmal subarachnoid hemorrhage (SAH). It leads to death or permanent neurologic deficits in over 17-40% of SAH patients. The initial and main symptom of cerebral vasospasm is diffuse headache and may be accompanied with a slight increase in discomfort from neck stiffness and fever. The clinical diagnosis of cerebral vasospasm is made when the patient experiences an altered level of consciousness or a new focal neurologic deficit. There has been a great progress in identifying the patients at risk, putative mechanisms, and possible treatment options for cerebral vasospasm. However, the problem is by no means solved, mainly due to a limited understanding of the pathologic mechanisms of this complex disease. The iatrogenic factors that can increase the risk of cerebral vasospasm include prolongation of the subarachnoid clot by antifibrinolytic drugs, hypotension, inappropriate treatment of hyponatremia, hypovolemia, hyperthermia and increased intracranial pressure. Nimodipine has been shown to improve neurologic outcome and decrease the incidence of cerebral vasospasm. Triple H therapy is a treatment designed to augment cerebral blood flow for patient with cerebral vasospasm. Hypervolemic hypertension is induced with intravenous volume expansion with crystalloid or colloid to increase cardiac output and raise blood pressure. However, small randomized trials showed no clear benefit. Recently, balloon and chemical angioplasty with superselective intra-arterial injection of vasodilators has emerged as the primary intervention for treating medically refractory ischemia from cerebral vasospasm and in many centers is being used as a first-line treatment or even prophylactically. In addition, promising new treatments for cerebral vasospasm or its ischemic complications include magnesium sulfate, fasudil hydrochloride, tirilazad mesylate, erythropoietin, and induced hypothermia; however, all still need further clinical trials. Newly recognized mediators of cerebral vasospasm after SAH include endothelium-derived mediators, vascular smooth-muscle-derived mediators, proinflammatory mediators involved in blood-brain barrier disruption, cytokines and adhesion molecules, stress-induced gene activation, and platelet-derived growth factors. Moreover, observations in the laboratory have, in many circumstances, matched those of reported small series. Larger, prospective, randomized trials are needed to verify several hypotheses of molecular pathophysiology and clinical treatment regimens.
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