Vélez Alejandro, Bee Mark A
Department of Ecology, Evolution, and Behavior, University of Minnesota, 100 Ecology, 1987, Upper Buford Circle, St. Paul, MN 55108.
Anim Behav. 2011 Dec;82(6):1319-1327. doi: 10.1016/j.anbehav.2011.09.015.
Dip listening refers to our ability to catch brief "acoustic glimpses" of speech and other sounds when fluctuating background noise levels momentarily decrease. Exploiting dips in natural fluctuations of noise contributes to our ability to overcome the "cocktail party problem" of understanding speech in multi-talker social environments. We presently know little about how nonhuman animals solve analogous communication problems. Here, we asked whether female grey treefrogs (Hyla chrysoscelis) might benefit from dip listening in selecting a mate in the noisy social setting of a breeding chorus. Consistent with a dip listening hypothesis, subjects recognized conspecific calls at lower thresholds when the dips in a chorus-like noise masker were long enough to allow glimpses of nine or more consecutive pulses. No benefits of dip listening were observed when dips were shorter and included five or fewer pulses. Recognition thresholds were higher when the noise fluctuated at a rate similar to the pulse rate of the call. In a second experiment, advertisement calls comprising six to nine pulses were necessary to elicit responses under quiet conditions. Together, these results suggest that in frogs, the benefits of dip listening are constrained by neural mechanisms underlying temporal pattern recognition. These constraints have important implications for the evolution of male signalling strategies in noisy social environments.
“音谷聆听”指的是当波动的背景噪音水平暂时降低时,我们捕捉言语和其他声音短暂“声学瞥见”的能力。利用噪音自然波动中的音谷有助于我们在多说话者的社交环境中克服理解言语的“鸡尾酒会问题”。目前我们对非人类动物如何解决类似的交流问题知之甚少。在此,我们探讨雌性灰树蛙(Hyla chrysoscelis)在嘈杂的繁殖合唱社交环境中选择配偶时是否能从音谷聆听中受益。与音谷聆听假说一致,当类似合唱的噪音掩蔽中的音谷足够长,能让九个或更多连续脉冲被瞥见时,实验对象能以更低的阈值识别同种叫声。当音谷较短且包含五个或更少脉冲时,未观察到音谷聆听的益处。当噪音以与叫声脉冲率相似的速率波动时,识别阈值更高。在第二个实验中,在安静条件下,包含六到九个脉冲的广告叫声才能引发反应。综合这些结果表明,在青蛙中,音谷聆听的益处受到时间模式识别潜在神经机制的限制。这些限制对嘈杂社交环境中雄性信号策略的进化具有重要意义。