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The tradeoff between signal detection and recognition rules auditory sensitivity under variable background noise conditions

机译:可变背景噪声条件下信号检测与识别规则听觉灵敏度之间的权衡

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Animal acoustic communication commonly takes place under masked conditions. For instance, sound signals relevant for mating and survival are very often masked by background noise, which makes their detection and recognition by organisms difficult. Ambient noise (AN) varies in level and shape among different habitats, but also remarkable variations in time and space occurs within the same habitat. Variable AN conditions mask hearing thresholds of the receiver in complex and unpredictable ways, thereby causing distortions in sound perception. When communication takes place in a noisy environment, a highly sensitive system might confer no advantage to the receiver compared to a less sensitive one. The effects of noise masking on auditory thresholds and hearing-related functions are well known, and the potential role of AN in the evolution of the species' auditory sensitivity has been recognized by few authors. The mechanism of the underlying selection process has never been explored, however. Here I present a simple fitness model that seeks for the best sensitivity of a hearing system performing the detection and recognition of the sound under variable AN conditions. The model predicts higher sensitivity (i.e. lower hearing thresholds) as best strategy for species living in quiet habitats and lower sensitivity (i.e. higher hearing thresholds) as best strategy for those living in noisy habitats provided the cost of incorrect recognition is not low. The tradeoff between detection and recognition of acoustic signals appears to be a key factor determining the best level of hearing sensitivity of a species when acoustic communication is corrupted by noise. (C) 2015 Elsevier Ltd. All rights reserved.
机译:动物的声音交流通常发生在被遮盖的条件下。例如,与交配和生存相关的声音信号经常被背景噪声掩盖,这使其难以被生物体检测和识别。不同生境之间的环境噪声(AN)的水平和形状各不相同,但同一生境内的时间和空间也会发生明显变化。可变AN条件以复杂且不可预测的方式掩盖了接收器的听力阈值,从而导致声音感知失真。当通信在嘈杂的环境中进行时,与灵敏度较低的系统相比,高度敏感的系统可能不会给接收器带来任何好处。噪声掩蔽对听觉阈值和与听力相关的功能的影响是众所周知的,并且很少有人认识到AN在物种听觉敏感性演变中的潜在作用。但是,从未探索过底层选择过程的机制。在这里,我提出了一个简单的适应度模型,该模型寻求在可变AN条件下执行声音检测和识别的听力系统的最佳灵敏度。该模型预测较高的敏感度(即较低的听觉阈值)是生活在安静栖息地物种的最佳策略,较低的敏感度(即较高的听觉阈值)是生活在嘈杂栖息地物种的最佳策略,前提是错误识别的成本不低。声音信号的检测与识别之间的权衡似乎是确定声音传播受噪声破坏时物种的最佳听觉灵敏度的关键因素。 (C)2015 Elsevier Ltd.保留所有权利。

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