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超越干扰回避反应:电鳗对社会电感觉信号的包络做出反应。

Beyond the Jamming Avoidance Response: weakly electric fish respond to the envelope of social electrosensory signals.

机构信息

Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

J Exp Biol. 2012 Dec 1;215(Pt 23):4196-207. doi: 10.1242/jeb.076513.

Abstract

Recent studies have shown that central nervous system neurons in weakly electric fish respond to artificially constructed electrosensory envelopes, but the behavioral relevance of such stimuli is unclear. Here we investigate the possibility that social context creates envelopes that drive behavior. When Eigenmannia virescens are in groups of three or more, the interactions between their pseudo-sinusoidal electric fields can generate 'social envelopes'. We developed a simple mathematical prediction for how fish might respond to such social envelopes. To test this prediction, we measured the responses of E. virescens to stimuli consisting of two sinusoids, each outside the range of the Jamming Avoidance Response (JAR), that when added to the fish's own electric field produced low-frequency (below 10 Hz) social envelopes. Fish changed their electric organ discharge (EOD) frequency in response to these envelopes, which we have termed the Social Envelope Response (SER). In 99% of trials, the direction of the SER was consistent with the mathematical prediction. The SER was strongest in response to the lowest initial envelope frequency tested (2 Hz) and depended on stimulus amplitude. The SER generally resulted in an increase of the envelope frequency during the course of a trial, suggesting that this behavior may be a mechanism for avoiding low-frequency social envelopes. Importantly, the direction of the SER was not predicted by the superposition of two JAR responses: the SER was insensitive to the amplitude ratio between the sinusoids used to generate the envelope, but was instead predicted by the sign of the difference of difference frequencies.

摘要

最近的研究表明,弱电鱼的中枢神经系统神经元对人工构建的电感觉包络有反应,但这些刺激的行为相关性尚不清楚。在这里,我们研究了社会环境是否有可能产生驱动行为的包络。当 Eigenmannia virescens 处于三个或更多的群体中时,它们的伪正弦电场之间的相互作用可以产生“社会包络”。我们为鱼类可能如何对这种社会包络做出反应制定了一个简单的数学预测。为了验证这一预测,我们测量了 E. virescens 对由两个正弦波组成的刺激的反应,每个正弦波都在避碰反应(JAR)的范围之外,当它们被添加到鱼自身的电场中时,会产生低频(低于 10 Hz)的社会包络。鱼会根据这些包络改变其电器官放电(EOD)频率,我们将其称为社会包络反应(SER)。在 99%的试验中,SER 的方向与数学预测一致。SER 在响应测试的最低初始包络频率(2 Hz)时最强,并且依赖于刺激幅度。SER 通常会导致包络频率在试验过程中增加,这表明这种行为可能是一种避免低频社会包络的机制。重要的是,SER 的方向不受两个 JAR 反应的叠加预测:SER 对用于产生包络的正弦波的幅度比不敏感,但与差异频率的符号有关。

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