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Effects of salicylates and aminoglycosides on spontaneous otoacoustic emissions in the Tokay gecko

机译:水杨酸酯和氨基糖苷对Tokay壁虎自发耳声发射的影响

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The high sensitivity and sharp frequency discrimination of hearing depend on mechanical amplification in the cochlea. To explore the basis of this active process. we examined the pharmacological sensitivity of spontaneous otoacoustic emissions (SOAEs) in a lizard. the Tokay gecko. In a quiet environment, each ear produced a complex but stable pattern of emissions. These SOAEs were reversibly modulated by drugs that affect mammalian otoacoustic emissions, the salicylates and the aminoglycoside antibiotics. The effect of a single i.p. injection of sodium salicylate depended on the initial power of the emissions: ears with strong control SOAEs displayed suppression at all frequencies. whereas those with weak control emissions showed enhancement. Repeated oral adminis- tration of acetylsalicylic acid reduced all emissions. Single i.p. doses of gentamicin or kanamycin suppressed SOAEs below 2.6 kHz. while modulating those above 2.6 kHz in either of two ways. For ears whose emission power at 2.6--5.2 kHz encompassed more than half of the total, individual emissions displayed facilitation as great as 35-fold. For the remaining ears, emissions dropped to as little as one-sixth of their initial values. The similarity of the responses of reptilian and mammalian cochleas to pharmacological intervention provides further evidence for a common mechanism of cochlear amplification.
机译:听力的高灵敏度和敏锐的频率分辨力取决于耳蜗中的机械放大。探索这一积极过程的基础。我们检查了蜥蜴中自发性耳声发射(SOAE)的药理敏感性。 Tokay壁虎。在安静的环境中,每只耳朵都会产生复杂但稳定的发射模式。这些SOAE受影响哺乳动物耳声发射,水杨酸酯和氨基糖苷类抗生素的药物可逆地调节。单次i.p.水杨酸钠的注入取决于排放的初始功率:具有较强控制能力的SOAE在所有频率下均表现出抑制作用。而控制排放较弱的国家则表现出增强。重复口服乙酰水杨酸可减少所有排放。单次ip庆大霉素或卡那霉素剂量可抑制2.6 kHz以下的SOAE。同时以两种方式调制高于2.6 kHz的频率。对于在2.6--5.2 kHz处发射功率占总发射功率一半以上的耳朵来说,单个发射显示的便利度高达35倍。对于其余的耳朵,排放降至其初始值的六分之一。爬虫类和哺乳动物耳蜗对药理干预反应的相似性为耳蜗放大的共同机制提供了进一步的证据。

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