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昆虫中的脉搏率识别:振荡神经元作用的证据

Pulse-rate recognition in an insect: evidence of a role for oscillatory neurons.

作者信息

Bush Sarah L, Schul Johannes

机构信息

Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2006 Feb;192(2):113-21. doi: 10.1007/s00359-005-0053-x. Epub 2005 Sep 2.

Abstract

Various mechanisms have been proposed as the neural basis for pulse-rate recognition in insects and anurans, including models employing high- and low-pass filters, autocorrelation, and neural resonance. We used the katydid Tettigonia cantans to test these models by measuring female responsiveness on a walking compensator to stimuli varying in temporal pattern. Each model predicts secondary responses to certain stimuli other than the standard conspecific pulse rate. Females responded strongly to stimuli with a pulse-rate equal to half the standard rate, but not to stimuli with double the standard rate. When every second pulse or interval was varied in length, females responded only when the resulting stimuli were rhythmic with respect to the period of the standard signal. These results provide evidence rejecting the use of either high-/low-pass filter networks or autocorrelation mechanisms. We suggest that rate recognition in this species relies on the resonant properties of neurons involved in signal recognition. According to this model, signals with a pulse rate equal to the resonant frequency of the neurons stimulate the female to respond. The results are discussed with regard to both neural and evolutionary implications of resonance as a mechanism for signal recognition.

摘要

关于昆虫和无尾两栖类动物脉搏率识别的神经基础,已经提出了各种机制,包括采用高通和低通滤波器、自相关和神经共振的模型。我们利用纺织娘来测试这些模型,通过在步行补偿器上测量雌性对时间模式不同的刺激的反应。每个模型都预测了对某些刺激的次级反应,而不是标准的同种脉搏率。雌性对脉搏率等于标准率一半的刺激有强烈反应,但对标准率两倍的刺激没有反应。当每隔一个脉冲或间隔的长度发生变化时,雌性只在产生的刺激相对于标准信号的周期具有节律性时才做出反应。这些结果提供了证据,否定了使用高通/低通滤波器网络或自相关机制。我们认为,该物种的速率识别依赖于参与信号识别的神经元的共振特性。根据这个模型,脉搏率等于神经元共振频率的信号会刺激雌性做出反应。本文将从共振作为信号识别机制的神经学和进化意义两个方面对结果进行讨论。

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