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实验播放城市噪声不会影响圈养的澳大利亚喜鹊的认知表现。

Experimental playback of urban noise does not affect cognitive performance in captive Australian magpies.

机构信息

School of BioSciences, The University of Melbourne, Melbourne, Victoria 3010, Australia.

School of Agriculture, Biomedicine and Environment, La Trobe University, Melbourne, Victoria 3086, Australia.

出版信息

Biol Open. 2024 Aug 15;13(8). doi: 10.1242/bio.060535. Epub 2024 Aug 14.

Abstract

Exposure of wildlife to anthropogenic noise is associated with disruptive effects. Research on this topic has focused on behavioural and physiological responses of animals to noise, with little work investigating links to cognitive function. Neurological processes that maintain cognitive performance can be impacted by stress and sleep disturbances. While sleep loss impairs cognitive performance in Australian magpies, it is unclear whether urban noise, which disrupts sleep, can impact cognition as well. To fill this gap, we explored how environmentally relevant urban noise affected the performance of wild-caught, city-living Australian magpies (Gymnorhina tibicen tyrannica) on a cognitive task battery including associative and reversal learning, inhibitory control, and spatial memory. Birds were housed and tested in a laboratory environment; sample sizes varied across tasks (n=7-9 birds). Tests were conducted over 4 weeks, during which all magpies were exposed to both an urban noise playback and a quiet control. Birds were presented with the entire test battery twice: following exposure to, and in the absence of, an anthropogenic noise playback; however, tests were always performed without noise (playback muted during testing). Magpies performed similarly in both treatments on all four tasks. We also found that prior experience with the associative learning task had a strong effect on performance, with birds performing better on their second round of trials. Like previous findings on Australian magpies tested on the same tasks in the wild under noisy conditions, we could not find any disruptive effects on cognitive performance in a controlled experimental laboratory setting.

摘要

野生动物接触人为噪声与干扰效应有关。该主题的研究集中在动物对噪声的行为和生理反应上,很少有研究调查与认知功能的联系。维持认知表现的神经过程可能会受到压力和睡眠障碍的影响。虽然睡眠不足会损害澳大利亚喜鹊的认知表现,但尚不清楚干扰睡眠的城市噪声是否也会影响认知。为了填补这一空白,我们探讨了环境相关的城市噪声如何影响在认知任务电池上的表现,包括联想和反转学习、抑制控制和空间记忆,这些任务电池针对野生捕获、居住在城市的澳大利亚喜鹊(Gymnorhina tibicen tyrannica)进行测试。鸟类在实验室环境中饲养和测试;各项任务的样本量不同(n=7-9 只鸟)。测试进行了 4 周,在此期间,所有喜鹊都暴露在人为噪声播放和安静对照中。喜鹊在接受人为噪声播放和不接受人为噪声播放两种情况下接受了整个测试电池两次;然而,测试始终在没有噪声的情况下进行(测试期间静音播放)。喜鹊在两种处理方式下在所有四项任务中表现相似。我们还发现,在关联学习任务上的先前经验对表现有很强的影响,鸟类在第二轮试验中表现更好。与之前在野外嘈杂条件下对相同任务进行测试的澳大利亚喜鹊的发现一样,我们在受控实验实验室环境中无法发现认知表现的任何干扰效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1198/11340814/f8b3a8d2d443/biolopen-13-060535-g1.jpg

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