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首页> 外文期刊>Journal of Comparative Physiology A >Preparing for escape: an examination of the role of the DCMD neuron in locust escape jumps
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Preparing for escape: an examination of the role of the DCMD neuron in locust escape jumps

机译:准备逃生:检查DCMD神经元在蝗虫逃生跳跃中的作用

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Many animals begin to escape by moving away from a threat the instant it is detected. However, the escape jumps of locusts take several hundred milliseconds to produce and the locust must therefore be prepared for escape before the jumping movement can be triggered. In this study we investigate a locust’s preparations to escape a looming stimulus and concurrent spiking activity in its pair of uniquely identifiable looming-detector neurons (the descending contralateral movement detectors; DCMDs). We find that hindleg flexion in preparation for a jump occurs at the same time as high frequency DCMD spikes. However, spikes in a DCMD are not necessary for triggering hindleg flexion, since this hindleg flexion still occurs when the connective containing a DCMD axon is severed or in response to stimuli that cause no high frequency DCMD spikes. Such severing of the connective containing a DCMD axon does, however, increase the variability in flexion timing. We therefore propose that the DCMD contributes to hindleg flexion in preparation for an escape jump, but that its activity affects only flexion timing and is not necessary for the occurrence of hindleg flexion.
机译:许多动物从发现威胁的那一刻开始就远离威胁,开始逃脱。但是,蝗虫的逃逸跳跃需要几百毫秒的时间才能产生,因此,在触发跳跃运动之前,必须为蝗虫做好逃生的准备。在这项研究中,我们调查了蝗虫在其唯一可识别的隐身检测器神经元对(降落的对侧运动检测器; DCMD)中逃避了隐约刺激和同时发生的尖峰活动的准备。我们发现,准备跳跃的后腿屈曲与高频DCMD尖峰同时发生。但是,DCMD的尖峰不是触发后腿弯曲所必需的,因为当包含DCMD轴突的结缔体被切断或响应于不引起高频DCMD尖峰的刺激时,该后腿弯曲仍然会发生。然而,这种包含DCMD轴突的连接物的切断确实增加了屈曲时机的可变性。因此,我们提出,DCMD有助于逃生跳跃的后腿屈曲,但其活动仅影响屈曲时机,对于后腿屈曲的发生不是必需的。

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