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翼旋作用在蝗虫回避转向中的作用。

Role of wing pronation in evasive steering of locusts.

机构信息

Faculty of Aerospace Engineering, Technion, Haifa, Israel.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Jul;198(7):541-55. doi: 10.1007/s00359-012-0728-z. Epub 2012 May 1.

Abstract

Evasive steering is crucial for flying in a crowded environment such as a locust swarm. We investigated how flying locusts alter wing-flapping symmetry in response to a looming object approaching from the side. Desert locusts (Schistocerca gregaria) were tethered to a rotatable shaft that allowed them to initiate a banked turn. A visual stimulus of an expending disk on one side of the locust was used to evoke steering while recording the change in wingbeat kinematics and electromyography (EMG) of metathoracic wing depressors. Locusts responded to the looming object by rolling to the contralateral direction. During turning, EMG of hindwing depressors showed an omission of one action potential in the subalar depressor (M129) of the hindwing inside the turn. This omission was associated with increased pronation of the same wing, reducing its angle-of-attack during the downstroke. The link between spike-omission in M129 and wing pronation was verified by stimulating the hindwing depressor muscles with an artificial motor pattern that included the misfire of M129. These results suggest that hindwing pronation is instrumental in rotating the body to the side opposite of the approaching threat. Turning away from the threat would be highly adaptive for collision avoidance when flying in dense swarms.

摘要

逃避转向对于在蝗虫群等拥挤环境中飞行至关重要。我们研究了飞行中的蝗虫如何改变翅膀拍打对称,以应对从侧面逼近的逼近物体。将沙漠蝗虫(Schistocerca gregaria)系在可旋转的轴上,使它们能够开始倾斜转弯。蝗虫一侧的扩展圆盘的视觉刺激用于引发转向,同时记录翅膀运动学和胸翼减震器肌电图(EMG)的变化。蝗虫通过向对侧滚动来应对逼近的物体。在转弯过程中,后翅减震器的 EMG 显示出在转弯内的后翅亚下减震器(M129)中一个动作电位的缺失。这种缺失与同一翅膀的旋前增加有关,在下冲程中降低了其迎角。通过用包括 M129 点火故障在内的人工运动模式刺激后翅减震器肌肉,验证了 M129 缺失与翅膀旋前之间的联系。这些结果表明,后翅旋前有助于将身体旋转到接近威胁的相反侧。当在密集的蝗虫群中飞行时,远离威胁对于避免碰撞是高度适应的。

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