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偏侧性与飞行:对飞翔中的树燕的侧偏性和最优性的并行测试

Laterality and flight: concurrent tests of side-bias and optimality in flying tree swallows.

作者信息

Mandel James T, Ratcliffe John M, Cerasale David J, Winkler David W

机构信息

Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, New York, United States of America.

出版信息

PLoS One. 2008 Mar 12;3(3):e1748. doi: 10.1371/journal.pone.0001748.

Abstract

Behavioural side-bias occurs in many vertebrates, including birds as a result of hemispheric specialization and can be advantageous by improving response times to sudden stimuli and efficiency in multi-tasking. However, behavioural side-bias can lead to morphological asymmetries resulting in reduced performance for specific activities. For flying animals, wing asymmetry is particularly costly and it is unclear if behavioural side-biases will be expressed in flight; the benefits of quick response time afforded by side-biases must be balanced against the costs of less efficient flight due to the morphological asymmetry side-biases may incur. Thus, competing constraints could lead to context-dependent expression or suppression of side-bias in flight. In repeated flight trials through an outdoor tunnel with obstacles, tree swallows (Tachycineta bicolor) preferred larger openings, but we did not detect either individual or population-level side-biases. Thus, while observed behavioural side-biases during substrate-foraging and copulation are common in birds, we did not see such side-bias expressed in obstacle avoidance behaviour in flight. This finding highlights the importance of behavioural context for investigations of side-bias and hemispheric laterality and suggests both proximate and ultimate trade-offs between species-specific cognitive ecology and flight biomechanics.

摘要

行为侧偏现象在包括鸟类在内的许多脊椎动物中都存在,这是半球特化的结果,通过提高对突然刺激的反应速度和多任务处理效率,行为侧偏可能具有优势。然而,行为侧偏会导致形态不对称,从而降低特定活动的表现。对于飞行动物来说,翅膀不对称的代价尤为高昂,目前尚不清楚行为侧偏是否会在飞行中表现出来;侧偏带来的快速反应时间的好处,必须与侧偏可能导致的形态不对称所带来的飞行效率降低的成本相权衡。因此,相互竞争的限制因素可能导致飞行中侧偏的表达或抑制取决于具体情境。在通过有障碍物的室外隧道进行的多次飞行试验中,树燕(双色树燕)更喜欢较大的开口,但我们没有检测到个体或群体水平的侧偏。因此,虽然在地面觅食和交配过程中观察到的行为侧偏在鸟类中很常见,但在飞行中的避障行为中我们没有看到这种侧偏的表现。这一发现凸显了行为情境在侧偏和半球偏侧性研究中的重要性,并表明在物种特异性认知生态学和飞行生物力学之间存在直接和最终的权衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c31a/2254502/8918c24a0f99/pone.0001748.g001.jpg

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