Université Sorbonne Paris Nord, Laboratoire d'Ethologie Expérimentale et Comparée, LEEC, UR 4443, 93430, Villetaneuse, France.
Université Sorbonne Paris Nord, Laboratoire de Physique des Lasers, LPL, CNRS, UMR 7538, 93430, Villetaneuse, France.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2024 Jan;210(1):35-45. doi: 10.1007/s00359-023-01641-x. Epub 2023 Jun 1.
Pit building antlions Euroleon nostras have been submitted to artificial cues in order to delineate their faculty to localize a prey. Series of propagating pulses in sand have been created from an extended source made of 10 piezoelectric transducers equally spaced on a line and located at a large distance from the pit. The envelope of each pulse encompasses six oscillations at a carrier frequency of 1250 Hz and up to eight oscillations at 1666 Hz. In one set of experiments, the first wave front is followed by similar wave fronts and the antlions respond to the cue by throwing sand in the opposite direction of the wave front propagation direction. In another set of experiments, the first wave front is randomly spatially structured while the propagation of the wave fronts inside the envelope of the pulse are not. In that case, the antlions respond less to the cue by throwing sand, and when they do, their sand throwing is more randomly distributed in direction. The finding shows that the localization of vibration signal by antlions are based on the equivalent for hearing animals of interaural time difference in which the onset has more significance than the interaural phase difference.
已向沙坑拟步甲(Euroleon nostras)投喂人工线索,以研究其对猎物进行定位的能力。通过由 10 个等距排列在线上的压电换能器组成的扩展声源,在沙地上产生一系列传播脉冲。每个脉冲的包络在载波频率为 1250 Hz 时有六个振荡,在 1666 Hz 时有多达八个振荡。在一组实验中,第一个波前后面跟着类似的波前,沙坑拟步甲通过向波前传播方向的相反方向抛沙来对线索做出反应。在另一组实验中,第一个波前在空间上是随机结构化的,而脉冲包络内的波前传播则不是。在这种情况下,沙坑拟步甲对线索的反应较少,而且当它们反应时,它们抛沙的方向更加随机分布。这一发现表明,沙坑拟步甲对振动信号的定位是基于听觉动物的耳间时间差的等效原理,其中起始时间比耳间相位差更有意义。