首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Control of climbing behavior in the cockroach, Blaberus discoidalis. II. Motor activities associated with joint movement
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Control of climbing behavior in the cockroach, Blaberus discoidalis. II. Motor activities associated with joint movement

机译:控制蟑螂Blaberus discoidalis的攀爬行为。二。与关节运动有关的运动活动

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Deathhead cockroaches employ characteristic postural strategies for surmounting barriers. These include rotation of middle legs to re-direct leg extension and drive the animal upward. However, during climbing the excursions of the joints that play major roles in leg extension are not significantly altered from those seen during running movements. To determine if the motor activity associated with these actions is also unchanged, we examined the electromyogram activity produced by the slow trochanteral extensor and slow tibial extensor motor neurons as deathhead cockroaches climbed over obstacles of two different heights. As they climbed, activity in the slow trochanteral extensor produced a lower extension velocity of the coxal-trochanteral joint than the same frequency of slow trochanteral extensor activity produces during horizontal running. Moreover, the pattern of activity within specific leg cycles was altered. During running, the slow trochanteral extensor generates a high-frequency burst prior to foot set-down. This activity declines through the remainder of the stance phase. During climbing, motor neuron frequency no longer decreased after foot set-down, suggesting that reflex adjustments were made. This conclusion was further supported by the observation that front leg amputees generated even stronger slow trochanteral extensor activity in the middle leg during climbing movements. [References: 40]
机译:死头蟑螂采用独特的姿势策略来克服障碍。这些措施包括旋转中腿以重新定向腿部伸展并推动动物向上运动。但是,在攀爬过程中,在腿部伸展中起主要作用的关节的偏移与跑步运动中所见的偏移没有明显变化。为了确定与这些动作相关的运动活动是否也未改变,我们研究了当死头蟑螂越过两个不同高度的障碍物时,慢速转子粗伸肌和慢速胫骨伸肌运动神经元产生的肌电图活动。当他们攀爬时,慢转子运动伸肌的活动产生的髋臼-转子关节的伸展速度低于水平跑步过程中产生的相同频率的慢转子肌伸肌的活动。此外,特定腿部周期内的活动模式已改变。在跑步过程中,缓慢的转子粗隆伸肌会在脚部放下之前产生高频脉冲。在剩余的站立阶段中,该活动下降。在攀爬过程中,脚放下后运动神经元频率不再降低,表明进行了反射调节。观察发现,在攀爬运动中,前腿截肢者在中腿产生了更强的慢转子粗隆伸活动,这一结论得到了进一步的支持。 [参考:40]

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