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一条腿卸载的感觉信号跟随另一条腿的站立起始:蟑螂行走中负载的转移与突发协调。

Sensory signals of unloading in one leg follow stance onset in another leg: transfer of load and emergent coordination in cockroach walking.

作者信息

Zill Sasha N, Keller Bridget R, Duke Elizabeth R

机构信息

Dept. of Anatomy and Pathology, Joan C. Edwards School of Medicine, Marshall University, Huntington, WV 25704, USA.

出版信息

J Neurophysiol. 2009 May;101(5):2297-304. doi: 10.1152/jn.00056.2009. Epub 2009 Mar 4.

Abstract

The transfer of load from one leg to another is an essential component in walking, but sense organs that signal this process have rarely been identified. We used high-speed digital imaging and neurophysiological recordings to characterize activities of tibial campaniform sensilla, receptors that detect forces via cuticular strains, in the middle legs of cockroaches during walking. Previous studies demonstrated that the distal tibial sensilla discharge when body load is suddenly decreased in freely standing animals. Sensory recordings during walking showed that distal receptors in the middle leg fired an intense burst near the end of the stance phase. We tested the hypothesis that initiation of distal firing resulted from the action of other legs entering stance. Analysis of leg movements in slow walking showed that sensory bursts in the middle leg closely followed stance onset of the ipsilateral hind leg while the ipsilateral front leg entered stance earlier in phase. Similar phases of leg movement were found in slow walking in experiments in which animals had no implanted recording wires. Those studies also demonstrated that the opposite middle leg entered stance earlier in phase. Measurements of leg positions in walking showed that the hind leg tarsus was placed closest to the middle leg, in keeping with a "targeting" strategy. Triggering of distal bursts in the middle leg by mechanical action of the hind leg could facilitate the onset of swing in the middle leg through local reflex effects and contribute to emergent coordination of leg movements in metachronal gaits.

摘要

从一条腿到另一条腿的负荷转移是行走过程中的一个重要组成部分,但很少有能表明这一过程的感觉器官被识别出来。我们使用高速数字成像和神经生理学记录来描述蟑螂中腿上胫节钟形感器的活动,这些感受器通过表皮应变来检测力。先前的研究表明,在自由站立的动物中,当身体负荷突然降低时,胫节远端的感器会放电。行走过程中的感觉记录显示,中腿远端的感受器在站立期接近结束时会发出强烈的脉冲。我们测试了一个假设,即远端放电的起始是由其他腿进入站立状态的动作引起的。对慢走时腿部运动的分析表明,中腿的感觉脉冲紧随同侧后腿的站立开始,而同侧前腿在阶段上更早进入站立状态。在没有植入记录导线的动物的慢走实验中也发现了类似的腿部运动阶段。那些研究还表明,相对的中腿在阶段上更早进入站立状态。对行走时腿部位置的测量表明,后腿跗节离中腿最近,这符合一种“靶向”策略。后腿的机械作用触发中腿远端的脉冲,可能通过局部反射效应促进中腿摆动的开始,并有助于在相继步态中实现腿部运动的紧急协调。

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