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波形电鱼中的波形辨别、相位敏感性及干扰规避

Waveform discrimination, phase sensitivity and jamming avoidance in a wave-type electric fish.

作者信息

Kramer B

机构信息

Zoological Institute, University of Regensburg, D-93040 Regensburg, Germany.

出版信息

J Exp Biol. 1999 May;202(# (Pt 10)):1387-98. doi: 10.1242/jeb.202.10.1387.

DOI:10.1242/jeb.202.10.1387
PMID:10210679
Abstract

The electric organ discharge (EOD) of most species of the freshwater knifefishes (Gymnotiformes) of South America is of the wave, not the pulse, type. Wave EODs are usually of constant frequency and amplitude, and show a bewildering multitude of species-characteristic waveforms. The EOD of Eigenmannia is sexually dimorphic in waveform and in the intensity of its higher harmonics. In a go/no go paradigm, trained food-rewarded fish discriminated between these waveforms, and naive (untrained) fish showed a significant preference. To determine whether spectral or waveform (time) cues are used by the fish, artificial stimuli of identical amplitude spectrum were synthesized that differed only in phase relationship between their harmonics, i.e. waveform, and the fish discriminated even among these stimulus waveforms (i.e. spectral cues are not required). Our sensory model predicts that, for successful waveform detection, a minimum frequency difference is required between the stimulus and the EOD. As expected, trained fish confused test stimuli of different waveform that were frequency-clamped and phase-locked to the EOD (frequency difference 0 Hz). Opening the electronic feedback loop immediately restored discrimination performance on an on/off basis, and a strong jamming avoidance response (JAR; a frequency shift away from the stimulus) accompanied every behavioural decision (to go for a food reward). The strong habituation of the JAR that occurs in response to stimuli of no behavioural consequence (the usual test situation) was not seen in the present experiments. The proposed sensory model (which is based on time-marking T electroreceptors) is supported by these experiments, and a biological function for the JAR - subserving EOD waveform discrimination is shown to be useful in a social context.

摘要

南美洲大多数淡水刀鱼(裸背电鳗目)的电器官放电(EOD)属于波型,而非脉冲型。波型EOD通常具有恒定的频率和振幅,并呈现出种类繁多、各具特色的波形。艾氏电鳗的EOD在波形及其高次谐波强度方面存在性别二态性。在一个“是/否”范式中,经过训练的以食物为奖励的鱼能够区分这些波形,而未受过训练的(天真的)鱼则表现出明显的偏好。为了确定鱼是利用频谱线索还是波形(时间)线索,合成了具有相同振幅谱的人工刺激,这些刺激仅在谐波之间的相位关系上有所不同,即波形不同,而鱼甚至能够区分这些刺激波形(即不需要频谱线索)。我们的感官模型预测,为了成功检测波形,刺激与EOD之间需要有最小频率差。正如预期的那样,经过训练的鱼会混淆频率钳制并与EOD锁相的不同波形的测试刺激(频率差为0赫兹)。立即打开电子反馈回路可在开/关基础上恢复辨别性能,并且每次行为决策(去获取食物奖励)都伴随着强烈的避干扰反应(JAR;频率从刺激处移开)。在本实验中未观察到对无行为后果的刺激(通常的测试情况)所产生的JAR的强烈习惯化现象。这些实验支持了所提出的感官模型(基于时间标记T型电感受器),并且表明JAR在社会背景下有助于EOD波形辨别这一生物学功能是有用的。

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引用本文的文献

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2
Behavioral responses to jamming and 'phantom' jamming stimuli in the weakly electric fish Eigenmannia.弱电鱼裸背电鳗对干扰和“幻影”干扰刺激的行为反应。
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Sep;193(9):927-41. doi: 10.1007/s00359-007-0246-6. Epub 2007 Jul 3.
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Dynamics of jamming avoidance in echolocating bats.
回声定位蝙蝠中避免干扰的动态过程。
Proc Biol Sci. 2004 Jul 22;271(1547):1467-75. doi: 10.1098/rspb.2004.2750.