School of Zoology, Faculty of Life Sciences, Tel Aviv University, Tel Aviv, 6997801, Israel.
Department of Collective Behaviour, Max Planck Institute of Animal Behaviour, Konstanz, 78464, Germany.
Commun Biol. 2023 Nov 22;6(1):1187. doi: 10.1038/s42003-023-05563-x.
The rate of sensory update is one of the most important parameters of any sensory system. The acquisition rate of most sensory systems is fixed and has been optimized by evolution to the needs of the animal. Echolocating bats have the ability to adjust their sensory update rate which is determined by the intervals between emissions - the inter-pulse intervals (IPI). The IPI is routinely adjusted, but the exact factors driving its regulation are unknown. We use on-board audio recordings to determine how four species of echolocating bats with different foraging strategies regulate their sensory update rate during commute flights. We reveal strong correlations between the IPI and various echolocation and movement parameters. Specifically, the update rate increases when the signals' peak-energy frequency and intensity increases while the update rate decreases when flight speed and altitude increases. We suggest that bats control their information update rate according to the behavioral mode they are engaged in, while always maintaining sensory continuity. Specifically, we suggest that bats apply two modes of attention during commute flights. Our data moreover suggests that bats emit echolocation signals at accurate intervals without the need for external feedback.
感觉更新率是任何感觉系统最重要的参数之一。大多数感觉系统的获取率是固定的,并通过进化优化以适应动物的需求。回声定位蝙蝠有能力调整其感觉更新率,这是由发射之间的间隔(脉冲间隔(IPI))决定的。IPI 通常会进行调整,但调节其的精确因素尚不清楚。我们使用机载音频记录来确定具有不同觅食策略的四种回声定位蝙蝠在迁徙飞行中如何调节其感觉更新率。我们发现 IPI 与各种回声定位和运动参数之间存在很强的相关性。具体来说,当信号的峰值能量频率和强度增加时,更新率增加,而当飞行速度和高度增加时,更新率降低。我们认为蝙蝠根据其参与的行为模式控制其信息更新率,同时始终保持感觉的连续性。具体来说,我们建议蝙蝠在迁徙飞行中应用两种注意模式。此外,我们的数据还表明,蝙蝠可以在没有外部反馈的情况下以准确的间隔发出回声定位信号。