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刺激参数对鲫鱼听觉诱发电位的影响。

The effects of stimulus parameters on auditory evoked potentials of Carassius auratus.

作者信息

Garabon Jessica R, Higgs Dennis M

机构信息

Department of Biological Sciences, University of Windsor, 401 Sunset Avenue, Windsor, ON, N9B 3P4, Canada.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Nov;203(11):945-951. doi: 10.1007/s00359-017-1207-3. Epub 2017 Aug 23.

Abstract

Whole-brain responses to sound are easily measured through auditory evoked potentials (AEP), but it is unclear how differences in experimental parameters affect these responses. The effect of varying parameters is especially unclear in fish studies, the majority of which use simple sound types and then extrapolate to natural conditions. The current study investigated AEPs in goldfish (Carassius auratus) using sounds of different durations (5, 10, and 20 ms) and frequencies (200, 500, 600 and 700 Hz) to test stimulus effects on latency and thresholds. We quantified differences in latency and threshold in comparison to a 10-ms test tone, a duration often used in AEP fish studies. Both response latency and threshold were significantly affected by stimulus duration, with latency patterning suggesting that AEP fires coincident with a decrease in stimulus strength. Response latency was also significantly affected by presentation frequency. These results show that stimulus type has important effects on AEP measures of hearing and call for clearer standards across different measures of AEP. Duration effects also suggest that AEP measures represent summed responses of duration-detecting neural circuit, but more effort is needed to understand the neural drivers of this commonly used technique.

摘要

通过听觉诱发电位(AEP)可以很容易地测量全脑对声音的反应,但尚不清楚实验参数的差异如何影响这些反应。在鱼类研究中,参数变化的影响尤其不清楚,其中大多数研究使用简单的声音类型,然后外推到自然条件。当前的研究使用不同持续时间(5、10和20毫秒)和频率(200、500、600和700赫兹)的声音,研究金鱼(Carassius auratus)的听觉诱发电位,以测试刺激对潜伏期和阈值的影响。与10毫秒的测试音相比,我们量化了潜伏期和阈值的差异,10毫秒是听觉诱发电位鱼类研究中常用的持续时间。反应潜伏期和阈值均受刺激持续时间的显著影响,潜伏期模式表明听觉诱发电位与刺激强度的降低同时发生。反应潜伏期也受呈现频率的显著影响。这些结果表明,刺激类型对听觉诱发电位的听力测量有重要影响,需要在不同的听觉诱发电位测量中制定更明确的标准。持续时间效应还表明,听觉诱发电位测量代表了持续时间检测神经回路的总和反应,但需要更多努力来理解这种常用技术的神经驱动因素。

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