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昆虫声学信号的生态学与掩蔽干扰问题。

Ecology of acoustic signalling and the problem of masking interference in insects.

作者信息

Schmidt Arne K D, Balakrishnan Rohini

机构信息

Department of Zoology, Karl-Franzens-University, Universitätsplatz 2, 8010, Graz, Austria,

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Jan;201(1):133-42. doi: 10.1007/s00359-014-0955-6. Epub 2014 Oct 29.

Abstract

The efficiency of long-distance acoustic signalling of insects in their natural habitat is constrained in several ways. Acoustic signals are not only subjected to changes imposed by the physical structure of the habitat such as attenuation and degradation but also to masking interference from co-occurring signals of other acoustically communicating species. Masking interference is likely to be a ubiquitous problem in multi-species assemblages, but successful communication in natural environments under noisy conditions suggests powerful strategies to deal with the detection and recognition of relevant signals. In this review we present recent work on the role of the habitat as a driving force in shaping insect signal structures. In the context of acoustic masking interference, we discuss the ecological niche concept and examine the role of acoustic resource partitioning in the temporal, spatial and spectral domains as sender strategies to counter masking. We then examine the efficacy of different receiver strategies: physiological mechanisms such as frequency tuning, spatial release from masking and gain control as useful strategies to counteract acoustic masking. We also review recent work on the effects of anthropogenic noise on insect acoustic communication and the importance of insect sounds as indicators of biodiversity and ecosystem health.

摘要

昆虫在其自然栖息地中进行长距离声学信号传递的效率受到多种因素的限制。声学信号不仅会受到栖息地物理结构所带来的变化影响,如衰减和退化,还会受到来自其他声学通讯物种同时发出的信号的掩蔽干扰。掩蔽干扰在多物种群落中可能是一个普遍存在的问题,但在嘈杂环境下的自然环境中成功进行通讯表明存在强大的策略来处理相关信号的检测和识别。在这篇综述中,我们展示了关于栖息地作为塑造昆虫信号结构的驱动力的最新研究成果。在声学掩蔽干扰的背景下,我们讨论生态位概念,并研究声学资源在时间、空间和频谱域中的分配作为发送者对抗掩蔽的策略所起的作用。然后我们研究不同接收者策略的有效性:诸如频率调谐、掩蔽空间释放和增益控制等生理机制作为抵消声学掩蔽的有用策略。我们还综述了关于人为噪声对昆虫声学通讯的影响以及昆虫声音作为生物多样性和生态系统健康指标的重要性的最新研究成果。

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