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The role of leg touchdown for the control of locomotor activity in the walking stick insect

机译:腿部触地对控制手杖昆虫运动能力的作用

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摘要

Much is known on how select sensory feedback contributes to the activation of different motoneuron pools in the locomotor control system of stick insects. However, even though activation of the stance phase muscles depressor trochanteris, retractor unguis, flexor tibiae and retractor coxae is correlated with the touchdown of the leg, the potential sensory basis of this correlation or its connection to burst intensity remains unknown. In our experiments, we are using a trap door setup to investigate how ground contact contributes to stance phase muscle activation and burst intensity in different stick insect species, and which afferent input is involved in the respective changes. While the magnitude of activation is changed in all of the above stance phase muscles, only the timing of the flexor tibiae muscle is changed if the animal unexpectedly steps into a hole. Individual and combined ablation of different force sensors on the leg demonstrated influence from femoral campaniform sensilla on flexor muscle timing, causing a significant increase in the latencies during control and air steps. Our results show that specific load feedback signals determine the timing of flexor tibiae activation at the swing-to-stance transition in stepping stick insects, but that additional feedback may also be involved in flexor muscle activation during stick insect locomotion. With respect to timing, all other investigated stance phase muscles appear to be under sensory control other than that elicited through touchdown.
机译:在粘虫运动控制系统中,选择的感觉反馈如何促进不同的运动神经元池的激活已广为人知。然而,即使姿态阶段的肌肉压迫性转子粗隆,牵开器unguis,胫骨屈肌和牵开器coxae的激活与腿的触地相关,但这种相关性的潜在感觉基础或其与爆发强度的关系仍然未知。在我们的实验中,我们使用活板门装置来研究地面接触如何在不同的昆虫类昆虫中促进姿态阶段的肌肉活化和爆发强度,以及传入的输入与各自的变化有关。尽管上述所有姿态阶段肌肉的激活幅度都发生了变化,但如果动物出乎意料地步入洞中,则只有胫腓屈肌的时机发生变化。腿部不同力传感器的单独消融和联合消融证明了股状坎帕尼样感觉对屈肌定时的影响,从而导致控制和气步时延显着增加。我们的结果表明,特定的负载反馈信号确定了步进昆虫中从摆动到姿势过渡时屈肌胫骨激活的时机,但是在昆虫运动过程中,屈肌激活也可能涉及其他反馈。关于时间安排,所有其他经过调查的姿态阶段肌肉似乎都受到了感官控制,而不是通过触地引起的。

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