Dipartimento Di Scienze, Università Degli Studi Roma Tre, Viale Guglielmo Marconi, 446, Rome, Italy.
Departamento de Zoologia, Instituto de Biociências, Universidade Federal Do Rio Grande Do Sul, Avenida Bento Gonçalves, 9500, Prédio 43435, Bairro Agronomia, Porto Alegre, Rio Grande Do Sul, 91501-970, Brazil.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2023 Jan;209(1):105-113. doi: 10.1007/s00359-022-01596-5. Epub 2022 Dec 12.
Anurans are known to detect vibrations, but few studies explore relationships between vibrations and resultant behaviors. We studied the reaction of calling captive-bred male midwife toads (Alytes obstetricans) to the randomized playback of a vibrational crescendo stimulus train. We considered two sources of natural abiotic vibrational stimuli: rainfall and wind. Rainfall was expected to induce calling and wind was expected to inhibit it. Playback experiments with two synthetic tones (200 Hz and 300 Hz) tested the sensitivity to pure tones and could possibly reveal a hearing sensitivity trend between these frequencies. The toads did not increase call rate in response to rainfall vibrations and only one of the five wind stimulus levels caused a significant decrease in call rate. This limited response could be explained, because the tested toads came from a captive population, where emergence may not be mediated by rainfall vibrations. We found that A. obstetricans is highly sensitive to very low frequencies, which could explain the sensitivity observed to vibrational stimuli. Playback of a random crescendo stimulus train proves to be a valid approach for addressing behavioral questions. However, the use of a captive population may have been a limitation in the clarity of the results.
蛙类已知能够探测振动,但很少有研究探讨振动与行为反应之间的关系。我们研究了对人工养殖的雄性蟾蜍(Alytes obstetricans)的叫声的反应,这些蟾蜍接收到了随机播放的振动渐强刺激序列。我们考虑了两种自然非生物振动刺激源:降雨和风。预计降雨会引发鸣叫,而风则会抑制鸣叫。使用两个合成音(200Hz 和 300Hz)进行回放实验,测试了对纯音的敏感性,并且可能揭示了这些频率之间的听力敏感性趋势。蟾蜍没有因降雨振动而增加鸣叫率,只有五个风刺激水平中的一个导致鸣叫率显著下降。这种有限的反应可以解释为,因为测试的蟾蜍来自人工养殖种群,在那里,出现可能不受降雨振动的影响。我们发现,A. obstetricans 对极低频率非常敏感,这可以解释对振动刺激的敏感性。随机渐强刺激序列的播放被证明是解决行为问题的有效方法。然而,使用人工养殖种群可能是导致结果不清晰的一个限制因素。