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清醒豚鼠正常耳和积水耳中缺氧对听神经反应的影响。

Alterations of auditory nerve responses by hypoxia in normal and hydropic ears of awake guinea pigs.

作者信息

Cazals Y, Wu Z Y, Horner K

机构信息

Laboratoire d'Audiologie expérimentale, Inserm unité 229, Hôpital Pellegrin, Université Bordeaux II, France.

出版信息

Hear Res. 1994 Jun 15;77(1-2):177-82. doi: 10.1016/0378-5955(94)90265-8.

Abstract

Total interruption of blood or oxygen supply to the inner ear produces very rapid and drastic effects, whereas moderate decreases can be well tolerated by normal ears. In experimental endolymphatic hydrops some moderate alterations of cochlear vasculature have been described which might affect cochlear adaptation to moderate blood or oxygen deficiencies. In order to test this hypothesis an hypoxia at 5% oxygen was imposed for 30 min in normal and hydropic ears of awake guinea pigs and cochlear function was monitored with an electrode at the round window. Electrophysiological recordings used measures of compound action potential (CAP) amplitudes evoked by high-intensity tones, and of CAP thresholds. In normal ears hypoxia induced threshold elevations at all frequencies and decreases of CAP amplitude only for high frequencies. Hydropic ears presented similar or smaller threshold elevations but showed CAP amplitude decreases extending to lower frequencies and showed a much slower recovery both for CAP thresholds and amplitudes. The data indicate that hypoxia had different effects on auditory nerve responses evoked by high versus low intensity tones. The deleterious effects of hypoxia were increased in hydropic ears. Hypoxia-induced alterations were measured twice at one week intervals during which an anti-ischemic drug was administered to the animals; some beneficial effects of the drug treatment were observed on normal but not on hydropic ears.

摘要

内耳血液或氧气供应的完全中断会产生非常迅速且剧烈的影响,而适度减少则能被正常耳朵很好地耐受。在实验性内淋巴积水模型中,已有一些关于耳蜗血管适度改变的描述,这些改变可能会影响耳蜗对适度血液或氧气不足的适应能力。为了验证这一假设,在清醒豚鼠的正常耳和积水耳中施加5%氧气浓度的低氧环境30分钟,并用圆窗电极监测耳蜗功能。电生理记录采用高强度纯音诱发的复合动作电位(CAP)幅度和CAP阈值的测量方法。在正常耳中,低氧会导致所有频率的阈值升高,且仅高频CAP幅度降低。积水耳呈现出相似或更小的阈值升高,但CAP幅度降低扩展至低频,并且CAP阈值和幅度的恢复都要慢得多。数据表明,低氧对高强度和低强度纯音诱发的听神经反应有不同影响。在积水耳中,低氧的有害影响会增强。在给动物注射抗缺血药物的一周间隔内,对低氧诱导的改变进行了两次测量;观察到药物治疗对正常耳有一些有益作用,但对积水耳则没有。

相似文献

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Effect of acoustic overstimulation on the hydropic ear.声学过度刺激对积水耳的影响。
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