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A load-based mechanism for inter-leg coordination in insects

机译:基于负载的昆虫腿间协调机制

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摘要

Animals rely on an adaptive coordination of legs during walking. However, which specific mechanisms underlie coordination during natural locomotion remains largely unknown. One hypothesis is that legs can be coordinated mechanically based on a transfer of body load from one leg to another. To test this hypothesis, we simultaneously recorded leg kinematics, ground reaction forces and muscle activity in freely walking stick insects (Carausius morosus). Based on torque calculations, we show that load sensors (campaniform sensilla) at the proximal leg joints are well suited to encode the unloading of the leg in individual steps. The unloading coincides with a switch from stance to swing muscle activity, consistent with a load reflex promoting the stance-to-swing transition. Moreover, a mechanical simulation reveals that the unloading can be ascribed to the loading of a specific neighbouring leg, making it exploitable for inter-leg coordination. We propose that mechanically mediated load-based coordination is used across insects analogously to mammals.
机译:动物在行走过程中依靠腿的自适应协调。然而,在自然运动过程中,协调作用的具体机制仍是未知之数。一种假设是,可以基于身体负荷从一条腿转移到另一条腿来机械地协调腿。为了验证这一假设,我们同时记录了自由行走的竹节虫(Carausius morosus)的腿运动学,地面反作用力和肌肉活动。基于扭矩计算,我们显示了在近端腿关节处的负荷传感器(坎帕尼式感觉器)非常适合在各个步骤中对腿部的卸载进行编码。卸载与从姿势到摆动肌肉活动的切换相吻合,这与促进姿势向摆动过渡的负荷反射一致。此外,机械仿真表明,卸载可归因于特定相邻腿的载荷,从而使其可用于腿间协调。我们建议类似于哺乳动物,跨昆虫使用机械介导的基于负载的协调。

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