Correlation Between Cerebral Tissue Oxygen Saturation and Oxygen Extraction Fraction During Anesthesia: Monitoring Cerebral Metabolic Demand-supply Balance During Vasopressor Administration

医学 四分位间距 苯肾上腺素 麻醉 麻黄素 血压 脑电双频指数 脑血流 异丙酚 内科学
作者
Klaus Ulrik Koch,Xu Zhao,Irene Klærke Mikkelsen,Ulrick Espelund,Joel Aanerud,Mads Rasmussen,Lingzhong Meng
出处
期刊:Journal of Neurosurgical Anesthesiology [Lippincott Williams & Wilkins]
卷期号:35 (2): 238-242 被引量:11
标识
DOI:10.1097/ana.0000000000000822
摘要

Background: The speculation that cerebral tissue oxygen saturation (SctO 2 ) measured using tissue near-infrared spectroscopy reflects the balance between cerebral metabolic rate of oxygen and cerebral oxygen delivery has not been validated. Our objective was to correlate SctO 2 with cerebral oxygen extraction fraction (OEF) measured using positron emission tomography; OEF is the ratio between cerebral metabolic rate of oxygen and cerebral oxygen delivery and reflects the balance between these 2 variables. Materials and Methods: This cohort study was based on data collected in a previously published trial assessing phenylephrine versus ephedrine treatment in anesthetized patients undergoing brain tumor surgery. The variables of interest were measured twice over the healthy hemisphere before surgery: the first measurement performed after anesthesia induction and the second measurement performed after induction of a ∼20% increase in blood pressure using either phenylephrine or ephedrine. Results: Data from 24 patients were analyzed. The overall vasopressor-induced relative changes in SctO 2 (ΔSctO 2 ) and OEF (ΔOEF) were 3.16% [interquartile range, −0.73% to 6.04%] and −12.5% [interquartile range, −24.0% to −6.19%], respectively. ΔSctO 2 negatively correlated with ΔOEF after phenylephrine treatment (Spearman rank correlation coefficient [ r s ]=–0.76; P =0.007), ephedrine treatment ( r s =–0.76; P =0.006), and any treatment ( r s =–0.79; P <0.001). ΔSctO 2 significantly associated with ΔOEF based on multivariable analysis with ΔOEF, relative changes in mean arterial pressure, arterial blood oxygen tension, and the bispectral index as covariates ( P =0.036). Conclusions: The negative correlation between changes in SctO 2 and OEF suggests that SctO 2 may reflect the cerebral metabolic demand-supply balance during vasopressor treatment. The generalizability of our findings in other clinical scenarios remains to be determined.
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