Compensation behaviors in echolocating bats measured by a telemetry microphone during flight

S. Hiryu, T. Hagino, Y. Shiori, H. Riquimaroux, Y. Watanabe
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引用次数: 1

Abstract

Some echolocating bat species are well known to compensate for the Doppler shifts in the echoes by changing their pulse frequencies so that the echo frequencies remain constant at which the bats can hear best. This behavior is termed "Doppler-shift compensation" and is an important behavioral adaptation for echolocating bats. In this study, we present the evidence for another compensation mechanism of echolocating bats, in which pulse intensity is adjusted in relation to the distance to a target resulting in maintenance of a constant intensity of the echo. Our custom-made telemetry microphone (Telemike) mounted on the back of the bat allowed us to observe not only the emitted pulses, but also the returning echoes which the flying bat actually listened to. The signal characteristics of pulse-echo pairs were analyzed combining with a high-speed video camera system as a bat flying toward the wall on which a landing mesh was attached in the flight chamber. We found that pulse intensity in bats intending to land exhibited a marked decrease by approximately 30 dB within 2 m of distance from the target wall, and the mean reduction rate was 6.5 dB per halving of distance. In contrast, the intensity of echoes returning from the target wall at the head of the flying bat indicated a nearly constant intensity while approaching the target wall. These findings provide direct evidence that bats are supposed to adjust pulse intensity to compensate for changes in echo intensity to maintain a constant intensity within the range necessary for optimal signal processing (echo-intensity compensation).
用遥测麦克风测量蝙蝠在飞行过程中的补偿行为
一些能定位回声的蝙蝠通过改变它们的脉冲频率来补偿回声中的多普勒频移,从而使回声频率保持不变,这样蝙蝠就能听到最好的声音。这种行为被称为“多普勒频移补偿”,是蝙蝠回声定位的重要行为适应。在这项研究中,我们提出了另一种回声定位蝙蝠补偿机制的证据,其中脉冲强度根据与目标的距离进行调整,从而维持恒定的回声强度。我们定制的遥测麦克风(Telemike)安装在蝙蝠的背部,使我们不仅可以观察发射的脉冲,还可以观察飞行蝙蝠实际听到的回声。结合在飞行舱内安装着落网的蝙蝠飞向壁面的高速摄像系统,分析了脉冲回波对的信号特性。我们发现,在距离目标墙2 m的范围内,蝙蝠的脉冲强度显著降低约30 dB,每减少一半的距离,平均降低率为6.5 dB。相比之下,飞行蝙蝠头部从目标壁上返回的回波强度在接近目标壁上时显示出几乎恒定的强度。这些发现提供了直接的证据,证明蝙蝠应该调整脉冲强度来补偿回声强度的变化,以保持恒定的强度在最佳信号处理(回声强度补偿)所需的范围内。
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