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The use of anesthesia during evoked potential audiometry in goldfish (Carassius auratus)

机译:在金鱼(assi鱼)诱发电位测听中使用麻醉

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摘要

Auditory evoked potentials (AEPs) have become a widely utilized measure of hearing sensitivity. Most investigators use pharmacological paralysis to reduce myogenic noise and immobilize the animal for stable electrical recordings, but additional anesthesia is generally not used because the most commonly available fish anesthetic, the cholinergic antagonist tricane methanosulfate (MS222), is known to disrupt hair cell and primary afferent physiology. Anesthetic agents that do not interfere with auditory function would be a useful adjunctant to paralytic immobilization and would reduce any possible distress incurred by prolonged immobilization. In this report we tested the opiate anesthetic Fentanyl and compared hearing thresholds in immobilized versus immobilized and anesthetized animals. Short-term effects of mild MS222 anesthesia were also measured via evoked potential audiometry. Animals were tested before and after Fentanyl injection (100, 500 and 2500 μg g−1 fish body-weight) using standard evoked potential audiometry. Tone pips, 0.2 to 3 kHz, from an aerial loudspeaker served as stimuli. Fentanyl altered evoked potential waveforms slightly, but did not alter estimated threshold sensitivity. These results suggest Fentanyl be considered as a possible addition to AEP techniques in goldfish (Carassius auratus) and poikilothermic vertebrates generally.
机译:听觉诱发电位(AEP)已成为听力敏感度的一种广泛使用的度量。大多数研究人员使用药理学麻痹来减少肌源性噪音并固定动物以获得稳定的电记录,但通常不使用额外的麻醉方法,因为已知最常见的鱼麻醉剂胆碱能拮抗烷甲基硫酸盐(MS222)会破坏毛细胞和原发性传入生理。不干扰听觉功能的麻醉剂将成为麻痹性固定的有用辅助手段,并减少长期固定引起的任何痛苦。在本报告中,我们测试了鸦片麻醉剂芬太尼,并比较了固定化与固定化和麻醉化动物的听力阈值。还通过诱发电位电位计测量了轻度MS222麻醉的短期效果。使用标准诱发电位测听法对动物注射芬太尼前后(分别为100、500和2500μgg -1 鱼体重)进行测试。空中扬声器发出的0.2至3 kHz的音调点作为刺激。芬太尼略微改变了诱发电位波形,但没有改变估计的阈值灵敏度。这些结果表明,通常在金鱼(Carassius auratus)和poikilothermic脊椎动物中,芬太尼被认为是AEP技术的可能补充。

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