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听性脑干反应阈值是血氧水平的一种函数。

ABR threshold is a function of blood oxygen level.

作者信息

Sohmer H, Freeman S, Schmuel M

机构信息

Department of Physiology, Hebrew University-Hadassah Medical School, Jerusalem, Israel.

出版信息

Hear Res. 1989 Jun 15;40(1-2):87-91. doi: 10.1016/0378-5955(89)90102-0.

Abstract

In order to determine if there is a relation between auditory threshold and oxygen availability, cats were anesthetized, paralyzed and ventilated with room air and with hypoxic gas mixtures. Auditory nerve-brain stem evoked response (ABR) thresholds and arterial blood oxygen levels [partial pressures (PaO2) and percent saturation (SaO2)] were determined. The ABR threshold was unchanged as long as PaO2 was above 30 mm Hg (SaO2 greater than 45%). Below PaO2 20 mmHg (SaO2 less than 25%) the animal was not viable. Between these values, the hypoxia caused ABR threshold elevations which were reversible when the animal was again respirated with room air. ABR threshold was an inverse function of blood O2 level with an approximate 3.05 dB elevation for every mmHg decrease in PaO2 (2.89 dB/% SaO2). These findings are probably due to hypoxia induced depression of the endocochlear potential. Since ABR could be recorded in premature human neonates after at least 28 weeks gestation and since the human fetus in utero is also hypoxic, these results indicate that the fetus (greater than 28 weeks gestational age) has a sensorineural hearing loss in addition to a conductive loss.

摘要

为了确定听觉阈值与氧气供应之间是否存在关联,对猫进行麻醉、麻痹,并分别用室内空气和低氧混合气体进行通气。测定听觉神经 - 脑干诱发电位(ABR)阈值和动脉血氧水平[分压(PaO2)和饱和度百分比(SaO2)]。只要PaO2高于30 mmHg(SaO2大于45%),ABR阈值就保持不变。当PaO2低于20 mmHg(SaO2低于25%)时,动物无法存活。在这两个值之间,缺氧会导致ABR阈值升高,当动物再次用室内空气呼吸时,这种升高是可逆的。ABR阈值是血液氧气水平的反函数,PaO2每降低1 mmHg(SaO2每降低1%),ABR阈值大约升高3.05 dB(2.89 dB/% SaO2)。这些发现可能是由于缺氧导致内耳蜗电位降低。由于至少在妊娠28周后的早产人类新生儿中可以记录到ABR,并且由于子宫内的人类胎儿也处于缺氧状态,这些结果表明,胎龄大于28周的胎儿除了存在传导性听力损失外,还存在感音神经性听力损失。

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