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前臂缺血期间人体骨骼肌氧合的近红外监测。

Near infrared monitoring of human skeletal muscle oxygenation during forearm ischemia.

作者信息

Hampson N B, Piantadosi C A

机构信息

Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Appl Physiol (1985). 1988 Jun;64(6):2449-57. doi: 10.1152/jappl.1988.64.6.2449.

Abstract

Changes in tissue oxygenation of forearm muscles were measured by near infrared (NIR) spectrophotometry in 10 healthy adults during tourniquet ischemia and venous outflow restriction. Muscle O2 stores were depleted rapidly by forearm ischemia manifest by a progressive decrease in tissue oxyhemoglobin and oxymyoglobin over 4-5 min. Muscle ischemia significantly decreased the oxidation level of cytochrome aa3, to below resting base line after only 1.5 min, and the enzyme became fully reduced after 6.5 min. After 8 min of ischemia, tourniquet release was accompanied by a transient increase in muscle blood volume due to influx of oxyhemoglobin. The cytochrome aa3 oxidation level increased above resting base line within 1 min after tourniquet release. Transcutaneous PO2 measurements recorded simultaneously from the same forearm correlated poorly with the kinetics of O2 availability and cytochrome oxidation in the underlying muscle tissue; this was not unexpected because overlying skin did not contribute significantly to NIR muscle signals. Venous outflow restriction without inflow obstruction increased muscle deoxyhemoglobin and tissue blood volume but did not change muscle O2 stores or cytochrome aa3 oxidation level. The ability of the NIR technique to detect dynamic trends in tissue oxygenation reveals that muscle O2 is rapidly consumed during tourniquet ischemia and rapidly restored by hyperemic responses after brief ischemia.

摘要

在10名健康成年人中,通过近红外(NIR)分光光度法测量了止血带缺血和静脉流出受限期间前臂肌肉组织氧合的变化。前臂缺血导致肌肉氧储备迅速耗尽,表现为组织氧合血红蛋白和氧合肌红蛋白在4 - 5分钟内逐渐减少。肌肉缺血仅1.5分钟后就显著降低了细胞色素aa3的氧化水平,使其降至静息基线以下,6.5分钟后该酶完全还原。缺血8分钟后,松开止血带会因氧合血红蛋白的流入而导致肌肉血容量短暂增加。止血带松开后1分钟内,细胞色素aa3氧化水平升至静息基线以上。同时从前臂相同部位记录的经皮PO2测量值与深层肌肉组织中氧供应和细胞色素氧化的动力学相关性较差;这并不意外,因为覆盖的皮肤对近红外肌肉信号的贡献不大。无流入阻塞的静脉流出受限会增加肌肉脱氧血红蛋白和组织血容量,但不会改变肌肉氧储备或细胞色素aa3氧化水平。近红外技术检测组织氧合动态趋势的能力表明,止血带缺血期间肌肉氧迅速消耗,短暂缺血后通过充血反应迅速恢复。

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