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首页> 外文期刊>Journal of clinical neuroscience: official journal of the Neurosurgical Society of Australasia >Physiological dimensions of ototoxic responses in a model fish species.
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Physiological dimensions of ototoxic responses in a model fish species.

机译:鱼类模型中耳毒性反应的生理尺度。

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摘要

Pharmaceutical agents known to be toxic to the human auditory system also impair sensory hair cells of teleosts, and this supports the use of fish models for the screening of such compounds. However, previous investigations have focused almost exclusively on anatomical changes after drug administration without assessing macro-level physiological effects. Using the goldfish (Carassius auratus), we demonstrate that the acquisition of auditory evoked potentials offers a rapid and non-invasive means for tracking ototoxin-induced shifts in auditory thresholds. Gentamicin (100mg/mL) was the agent of choice as it is an extensively-studied human ototoxin. Significant shifts (p<0.05) in hearing sensitivity were observed between 300 Hz and 600 Hz and these shifts depended on acoustic pressure, but not particle motion. This differential elevation of auditory thresholds may be caused by impairment of specific populations of auditory sensory hair cells.
机译:已知对人类听觉系统有毒的药剂也会损害硬骨鱼的感觉毛细胞,这支持使用鱼模型来筛选此类化合物。然而,先前的研究几乎完全集中于药物给药后的解剖学变化,而没有评估宏观水平的生理作用。使用金鱼((鱼),我们证明了听觉诱发电位的获得提供了一种快速且非侵入性的手段来跟踪由毒素引起的听觉阈值的变化。庆大霉素(100mg / mL)是一种广泛研究的人耳毒素,因此是首选药物。在300 Hz至600 Hz之间观察到听力灵敏度发生显着变化(p <0.05),并且这些变化取决于声压,而不取决于粒子运动。听觉阈值的这种差异性升高可能是由于特定的听觉感觉毛细胞群体受损所致。

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