首页> 外文期刊>The Journal of Experimental Biology >Intricate but tight coupling of spiracular activity and abdominal ventilation during locust discontinuous gas exchange cycles
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Intricate but tight coupling of spiracular activity and abdominal ventilation during locust discontinuous gas exchange cycles

机译:蝗虫不连续气体交换循环期间的复杂但紧密偶然刺激性和腹部通风

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摘要

Discontinuous gas exchange (DGE) is the best studied among insect gas exchange patterns. DGE cycles comprise three phases, which are defined by their spiracular state: closed, flutter and open. However, spiracle status has rarely been monitored directly; rather, it is often assumed based on CO2 emission traces. In this study, we directly recorded electromyogram (EMG) signals from the closer muscle of the second thoracic spiracle and from abdominal ventilation muscles in a fully intact locust during DGE. Muscular activity was monitored simultaneously with CO2 emission, under normoxia and under various experimental oxic conditions. Our findings indicate that locust DGE does not correspond well with the commonly described three-phase cycle. We describe unique DGE-related ventilation motor patterns, coupled to spiracular activity. During the open phase, when CO2 emission rate is highest, the thoracic spiracles do not remain open; rather, they open and close rapidly. This fast spiracle activity coincides with in-phase abdominal ventilation, while alternating with the abdominal spiracle and thus facilitating a unidirectional air flow along the main trachea. A change in the frequency of rhythmic ventilation during the open phase suggests modulation by intratracheal CO2 levels. A second, slow ventilatory movement pattern probably serves to facilitate gas diffusion during spiracle closure. Two flutter-like patterns are described in association with the different types of ventilatory activity. We offer a modified mechanistic model for DGE in actively ventilating insects, incorporating ventilatory behavior and changes in spiracle state.
机译:不连续的气体交换(DGE)是昆虫油交换模式中的最佳研究。 DGE循环包括三个阶段,其由它们的刺鞘状态定义:关闭,颤动和开放。但是,Spulcle状态很少直接监测;相反,通常基于CO2发射迹线假设。在这项研究中,我们直接从第二胸道螺旋的较近肌肉中的肌电图(EMG)信号,在DGE期间完全完整的蝗虫中的腹部通风肌肉。在常氧和各种实验氧化条件下,在CO 2发射同时监测肌肉活性。我们的研究结果表明,蝗虫DGE与通常描述的三相循环不符合良好。我们描述了独特的DGE相关的通风电机图案,加上刺鞘活动。在开放阶段,当二氧化碳排放率最高时,胸螺旋血管不保持开放;相反,他们迅速打开和关闭。这种快速的螺旋活动与相位的腹部通气吻合,同时与腹部螺旋交替,从而促进沿着主气管的单向空气流动。开放阶段期间节律通气频率的变化表明腹腔内CO2水平的调节。第二个,慢性通风运动模式可能用于促进螺旋封闭期间的气体扩散。与不同类型的通气活性结合描述了两个颤动的图案。我们为积极通风的昆虫进行了修改的机制模型,包括透气行为和螺旋状态的变化。

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