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时间结构对食虫蝙蝠大耳假吸血蝠探测沙沙声的影响。

The effect of temporal structure on rustling-sound detection in the gleaning bat, Megaderma lyra.

作者信息

Hübner M, Wiegrebe L

机构信息

Department Biologie II, Ludwig-Maximilians-Universität München, Luisenstr. 14, 80333 Munich, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2003 May;189(5):337-46. doi: 10.1007/s00359-003-0407-1. Epub 2003 Mar 29.

Abstract

For a gleaning bat hunting prey from the ground, rustling sounds generated by prey movements are essential to invoke a hunting behaviour. The detection of prey-generated rustling sounds may depend heavily on the time structure of the prey-generated and the masking sounds due to their spectral similarity. Here, we systematically investigate the effect of the temporal structure on psychophysical rustling-sound detection in the gleaning bat, Megaderma lyra. A recorded rustling sound serves as the signal; the maskers are either Gaussian noise or broadband noise with various degrees of envelope fluctuations. Exploratory experiments indicate that the selective manipulation of the temporal structure of the rustling sound does not influence its detection in a Gaussian-noise masker. The results of the main experiment show, however, that the temporal structure of the masker has a strong and systematic effect on rustling-sound detection: When the width of irregularly spaced gaps in the masker exceeded about 0.3 ms, rustling-sound detection improved monotonically with increasing gap duration. Computer simulations of this experiment reveal that a combined detection strategy of spectral and temporal analysis underlies rustling-sound detection with fluctuating masking sounds.

摘要

对于一只从地面捕食的食虫蝙蝠来说,猎物移动产生的沙沙声对于引发其捕食行为至关重要。由于猎物产生的沙沙声和掩蔽声在频谱上相似,对它们的检测可能很大程度上取决于猎物产生的声音和掩蔽声的时间结构。在这里,我们系统地研究了时间结构对食虫蝙蝠——皱唇蝠(Megaderma lyra)心理声学沙沙声检测的影响。录制的沙沙声作为信号;掩蔽声是高斯噪声或具有不同程度包络波动的宽带噪声。探索性实验表明,对沙沙声时间结构的选择性操纵不会影响其在高斯噪声掩蔽下的检测。然而,主要实验结果表明,掩蔽声的时间结构对沙沙声检测有强烈且系统的影响:当掩蔽声中不规则间隔间隙的宽度超过约0.3毫秒时,沙沙声检测随着间隙持续时间的增加而单调改善。该实验的计算机模拟表明,频谱和时间分析相结合的检测策略是波动掩蔽声下沙沙声检测的基础。

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