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烟草天蛾蛹分段受限的杜松子陷阱行为中的多节段运动活动。

Multisegmental motor activity in the segmentally restricted gin trap behavior in Manduca sexta pupae.

作者信息

Lemon W C, Levine R B

机构信息

Arizona Research Laboratories, University of Arizona, Tucson 85721, USA.

出版信息

J Comp Physiol A. 1997 Jun;180(6):611-9. doi: 10.1007/s003590050077.

Abstract

Stimulation of sensory neurons innervating hairs in the gin traps on the abdomen of Manduca sexta pupae evokes a rapid bending of the abdomen that is restricted to one or more of the three articulating posterior segments. However, electrical stimulation of the gin trap sensory nerve in an isolated abdominal nerve cord evokes characteristic motor neuron activity in every abdominal segment. To determine if the segmentally distributed motor activity also occurred in intact animals and how it contributed to the segmentally restricted reflex movement, mechanical stimulation of the sensory hairs in intact animals was used to evoke reflex responses that were recorded as electromyograms synchronized with video recordings of the behavior. Motor activity was monitored during movements to determine if there was activity in many segments when the movement was restricted to one segment. Coordinated muscle activity was evoked throughout the abdomen in response to stimulation of any of the three gin traps, even when movement was restricted to one segment. Differences in the timing of ipsilateral and contralateral motor activity among segments allowed the closing of gin traps to be segmentally restricted. These findings suggest that the neural circuit underlying the gin trap reflex is distributed throughout the abdominal nerve cord. This network generates a complex, yet coordinated, motor pattern with muscular activity in many abdominal segments that produces a localized bending reflex.

摘要

刺激烟草天蛾蛹腹部夹钳陷阱中支配刚毛的感觉神经元,会引发腹部的快速弯曲,这种弯曲仅限于三个可活动的后段中的一个或多个。然而,在分离的腹部神经索中对夹钳陷阱感觉神经进行电刺激,会在每个腹部节段引发特征性的运动神经元活动。为了确定节段性分布的运动活动是否也发生在完整动物中,以及它如何导致节段性受限的反射运动,利用机械刺激完整动物中的感觉刚毛来引发反射反应,并将其记录为与行为视频记录同步的肌电图。在运动过程中监测运动活动,以确定当运动仅限于一个节段时,多个节段是否有活动。响应于三个夹钳陷阱中任何一个的刺激,整个腹部都会引发协调的肌肉活动,即使运动仅限于一个节段。节段间同侧和对侧运动活动时间的差异使得夹钳陷阱的关闭受到节段性限制。这些发现表明,夹钳陷阱反射的神经回路分布在整个腹部神经索中。这个网络产生了一个复杂但协调的运动模式,许多腹部节段都有肌肉活动,从而产生局部弯曲反射。

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