Norman A P
Department of Zoology, University of Cambridge, UK.
J Comp Physiol A. 1996 Aug;179(2):195-205. doi: 10.1007/BF00222786.
Campaniform sensilla monitor the forces generated by the leg muscles during the co-contraction phase of locust (Schistocerca gregaria) kicking and jumping and re-excite the fast extensor (FETi) and flexor tibiae motor neurones, which innervate the leg muscles. Sensory signals from a campaniform sensillum on the proximal tibia were compared in newly moulted locusts, which do not kick and jump, and mature locusts which readily kick and jump. The activity pattern of FETi during co-contraction was mimicked by stimulating the extensor tibiae muscle. Less force was generated and the spike frequency of the sensory neurone from the sensillum was significantly lower in newly moulted compared to mature locusts. Depolarisation of both FETi and flexor motor neurones as a result of sensory feedback was consequently less in newly moulted than in mature locusts. The difference in the depolarisation was greater than the decrease in the afferent spike frequency suggesting that the central connections of the afferents are modulated. The depolarisation could generate spikes in FETi and maintain flexor spikes in mature but not in newly moulted locusts. This indicates that feedback from the anterior campaniform sensillum comprises a significant component of the drive to both FETi and flexor activity during co-contraction in mature animals and that the changes in this feedback contribute to the developmental change in behaviour.
钟形感器监测蝗虫(沙漠飞蝗)踢腿和跳跃的协同收缩阶段腿部肌肉产生的力量,并重新激发支配腿部肌肉的快速伸肌(FETi)和胫节屈肌运动神经元。比较了刚蜕皮的、不会踢腿和跳跃的蝗虫以及容易踢腿和跳跃的成熟蝗虫胫节近端一个钟形感器的感觉信号。通过刺激胫节伸肌模拟了协同收缩期间FETi的活动模式。与成熟蝗虫相比,刚蜕皮的蝗虫产生的力量较小,来自感器的感觉神经元的尖峰频率显著较低。因此,由于感觉反馈导致的FETi和屈肌运动神经元的去极化在刚蜕皮的蝗虫中比在成熟蝗虫中要少。去极化的差异大于传入尖峰频率的降低,这表明传入神经元的中枢连接受到了调制。这种去极化可以在成熟蝗虫的FETi中产生尖峰并维持屈肌尖峰,但在刚蜕皮的蝗虫中则不能。这表明来自前钟形感器的反馈在成熟动物的协同收缩期间是驱动FETi和屈肌活动的一个重要组成部分,并且这种反馈的变化有助于行为的发育变化。