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在平滑和粗糙地面上行走:甲虫 Pachnoda marginata peregrina(鞘翅目,金龟科)的爪回缩肌的活动和时序。

Walking on smooth and rough ground: activity and timing of the claw retractor muscle in the beetle Pachnoda marginata peregrina (Coleoptera, Scarabaeidae).

机构信息

Functional Morphology and Biomechanics, Zoological Institute, University of Kiel, Am Botanischen Garten 1-9, D-24098 Kiel, Germany.

出版信息

J Exp Biol. 2013 Jan 15;216(Pt 2):319-28. doi: 10.1242/jeb.075614. Epub 2012 Sep 20.

Abstract

The activity pattern of the claw retractor muscle of Pachnoda marginata peregrina beetles was examined in this study. We found this muscle to be located in the tibia, without a femoral part, as is the case in other insects. Electromyograms of the muscle revealed a rather similar activity pattern during beetle locomotion on rough and smooth substrates. We recorded units with small and large amplitude, with the smaller unit being active during almost the entire stance phase, and the larger unit active roughly in the first half of stance. Small but significant differences were found in the precise onset and end of activity. Both small and large units began their activity earlier on the rough surface. Although there was no difference at the end of activity in the small unit between surfaces, the large unit ended its activity significantly earlier on the rough substrate. The spike frequencies on both surfaces were also significantly different for small and large units. The small unit showed a higher spike frequency on the smooth surface, while the large unit had a higher spike frequency on the rough surface. From our experiments, we conclude that the muscle is controlled by the same basic activity pattern on different surfaces, with some adjustments that are due to sensory feedback. The adjustments cause differences in onset and end of activity, as well as in spike frequency of the involved muscle units.

摘要

本研究检测了斑股大兜虫(Pachnoda marginata peregrina)的后足挖掘肌的活动模式。我们发现该肌肉位于胫骨中,没有股骨部分,这与其他昆虫的情况相同。对肌肉的肌电图显示,在甲虫在粗糙和光滑的基质上运动时,其活动模式非常相似。我们记录了具有小幅度和大幅度的单元,较小的单元在几乎整个支撑阶段都活跃,而较大的单元在支撑阶段的前半段活跃。在活动的确切开始和结束时,发现了微小但显著的差异。小单元和大单元在粗糙表面上的活动开始时间都更早。尽管小单元在两种表面上的活动结束时没有差异,但大单元在粗糙基质上的活动结束时间明显更早。两种表面上的小单元和大单元的尖峰频率也有明显差异。小单元在光滑表面上的尖峰频率更高,而大单元在粗糙表面上的尖峰频率更高。从我们的实验中,我们得出结论,该肌肉在不同表面上受到相同的基本活动模式控制,由于感觉反馈,进行了一些调整。这些调整导致活动的开始和结束以及涉及的肌肉单元的尖峰频率的差异。

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