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低氧与运动联合状态下的耳部血氧测定法。

Ear oximetry during combined hypoxia and exercise.

作者信息

Smyth R J, D'Urzo A D, Slutsky A S, Galko B M, Rebuck A S

出版信息

J Appl Physiol (1985). 1986 Feb;60(2):716-9. doi: 10.1152/jappl.1986.60.2.716.

Abstract

Ear oximetry is widely used to detect arterial O2 desaturation during exercise in patients with cardiopulmonary disease. Although oximeters have been evaluated for accuracy, response time, and the influence of skin pigmentation, tests of their reliability have not been reported during strenuous exercise. Accordingly, we compared arterial O2 saturation (Sao2) measurements obtained by Hewlett-Packard (HP, model 47201A) and Biox II oximeters with those determined directly from arterial blood in six healthy volunteers during progressive exercise while rebreathing hypoxic gas mixtures. The relationship between the HP oximeter value and blood Sao2 was described by the equation: HP = 0.93 (Sao2) + 5.37 and for the Biox II: Biox = 0.55 (Sao2) + 38.97. With these equations, at a blood Sao2 value of 90%, the underestimation by both oximeters was less than 2%. At a blood value of 70%, the HP oximeter overestimated blood Sao2 by 0.7%, whereas the Biox II showed an overestimation of 10.7%. Below blood Sao2 of 83%, the Biox II tended to overestimate blood Sao2 by an amount greater than the error of the instrument, whereas the HP estimations were within the error of the instrument over all levels of blood Sao2 studied. We conclude that the HP oximeter provides valid estimates of Sao2 during exercise but that the Biox II oximeter, although reflecting qualitative changes in oxygenation that occur during exercise, does not provide accurate records of the degree of desaturation.

摘要

耳血氧饱和度测定法广泛应用于检测心肺疾病患者运动期间的动脉血氧饱和度下降情况。尽管已经对血氧饱和度测定仪的准确性、响应时间以及皮肤色素沉着的影响进行了评估,但尚未有关于其在剧烈运动期间可靠性测试的报道。因此,我们在六名健康志愿者进行递增运动并重新吸入低氧混合气体的过程中,比较了惠普(HP,型号47201A)和Biox II血氧饱和度测定仪所测得的动脉血氧饱和度(Sao2)与直接从动脉血中测得的结果。HP血氧饱和度测定仪数值与血液Sao2之间的关系可用以下方程描述:HP = 0.93(Sao2)+ 5.37,而Biox II的方程为:Biox = 0.55(Sao2)+ 38.97。根据这些方程,当血液Sao2值为90%时,两种血氧饱和度测定仪的低估率均小于2%。当血液值为70%时,HP血氧饱和度测定仪高估血液Sao2 0.7%,而Biox II高估了10.7%。在血液Sao2低于83%时,Biox II往往高估血液Sao2的幅度大于仪器误差,而在所有研究的血液Sao2水平上,HP的估计值均在仪器误差范围内。我们得出结论,HP血氧饱和度测定仪在运动期间能提供有效的Sao2估计值,但Biox II血氧饱和度测定仪虽然能反映运动期间发生的氧合定性变化,但不能准确记录血氧饱和度下降的程度。

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