首页|Cerebral Pressure Autoregulation in Brain Injury and Disorders - A Review on Monitoring, Management, and Future Directions

Cerebral Pressure Autoregulation in Brain Injury and Disorders - A Review on Monitoring, Management, and Future Directions

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The role of cerebral pressure autoregulation (CPA) in brain injury and disorders has gained increased interest. The CPA is often disturbed as a consequence of acute brain injury, which contributes to further brain damage and worse outcome. Specifically, in severe traumatic brain injury, CPA disturbances predict worse clinical outcome and targeting an autoregulatory-oriented optimal cerebral perfusion pressure threshold may improve brain energy metabolism and clinical outcome. In aneurysmal subarachnoid hemorrhage, cerebral vasospasm in combination with distal autoregulatory disturbances precipitate delayed cerebral ischemia. The role of optimal cerebral perfusion pressure targets is less clear in aneurysmal subarachnoid hemorrhage, but high cerebral perfusion pressure targets are generally favorable in the vasospasm phase. In acute ischemia, autoregulatory disturbances may occur and autoregulatory-oriented blood pressure (optimal mean arterial pressure) management reduces the risk of hemorrhagic transformation, brain edema, and unfavorable outcome. In chronic occlusive disease such as moyamoya, the gradual reduction of the cerebral circulation leads to compensatory distal vasodilation and the residual CPA capacity predicts the risk for cerebral ischemia. In spontaneous intracerebral hemorrhage, the role of autoregulatory disturbances is less clear, but CPA disturbances correlate with worse clinical outcome. Also, in communityacquired bacterial meningitis, CPA dysfunction is frequent and correlates with worse clinical outcome, but autoregulatory management is yet to be evaluated. In this review, we discuss the role of CPA in different types of brain injury and disease, the strengths and limitations of the monitoring methods, the potentials of autoregulatory management, and future directions in the field.

Cerebral pressure autoregulationIntracerebral hemorrhagehemorrhageStrokeSubarachnoid hemorrhageTraumatic brain injuryANEURYSMAL SUBARACHNOID HEMORRHAGEACUTE ISCHEMIC-STROKEIMPAIRED CEREBROVASCULAR AUTOREGULATIONBLOOD-FLOW AUTOREGULATIONHEALTH-CARE PROFESSIONALSPERFUSION-PRESSUREINTRACEREBRAL HEMORRHAGEINTRACRANIAL-PRESSUREINDUCED HYPERTENSIONMYOGENIC MECHANISMS

Wettervik, Teodor Svedung、Fahlstrom, Markus、Enblad, Per、Lewen, Anders

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Dept Neurosci Sect,Uppsala Univ

Dept Surg Sci,Uppsala Univ

2022

World neurosurgery

World neurosurgery

SCI
ISSN:1878-8750
年,卷(期):2022.158
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