首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Wing flexibility enhances load-lifting capacity in bumblebees
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Wing flexibility enhances load-lifting capacity in bumblebees

机译:机翼的灵活性增强了大黄蜂的负载能力

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摘要

The effect of wing flexibility on aerodynamic force production has emerged as a central question in insect flight research. However, physical and computational models have yielded conflicting results regarding whether wing deformations enhance or diminish flight forces. By experimentally stiffening the wings of live bumblebees, we demonstrate that wing flexibility affects aerodynamic force production in a natural behavioural context. Bumblebee wings were artificially stiffened in vivo by applying a micro-splint to a single flexible vein joint, and the bees were subjected to load-lifting tests. Bees with stiffened wings showed an 8.6 per cent reduction in maximum vertical aerodynamic force production, which cannot be accounted for by changes in gross wing kinematics, as stroke amplitude and flapping frequency were unchanged. Our results reveal that flexible wing design and the resulting passive deformations enhance vertical force production and load-lifting capacity in bumblebees, locomotory traits with important ecological implications.
机译:机翼柔性对空气动力产生的影响已成为昆虫飞行研究的中心问题。但是,关于机翼变形是增强还是减小了飞行力,物理模型和计算模型产生了矛盾的结果。通过实验性地加强活生大黄蜂的翅膀,我们证明了翅膀的柔韧性会影响自然行为背景下的空气动力产生。大黄蜂的翅膀通过在单个柔性静脉关节上施加微刺而在体内进行人工加固,然后对蜜蜂进行负荷提升测试。翅膀僵硬的蜜蜂显示最大垂直空气动力产生减少了8.6%,这不能通过机翼总运动学的变化来解释,因为冲程幅度和拍打频率没有变化。我们的研究结果表明,灵活的机翼设计和由此产生的被动变形可提高大黄蜂的垂直力产生能力和承重能力,这对具有重要生态意义的机车性状具有重要意义。

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