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Thermoregulatory morphodynamics of honeybee swarm clusters

机译:蜜蜂群簇的热调控形态动力学

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摘要

During reproductive swarming, honeybee clusters of more than 10,000 individuals that hang from structures in the environment (e.g. tree branches) are exposed to diumal variations in ambient temperature for up to a week. Swarm clusters collectively modulate their morphology in response to these variations (i.e. expanding/ contracting in response to heating/cooling) to maintain their internal temperature within a tolerable range and to avoid exhausting their honey stores prematurely. To understand the spatiotemporal aspects of thermoregulatory morphing, we measured the change in size, shape and internal temperature profiles of swarm clusters in response to dynamic temperature ramp perturbations. Swarm clusters showed a two-fold variation in their volume/density when heated from 15 degrees C to 30 degrees C. However, they did not reach an equilibrium size or shape when held at 30 degrees C for 5 h, long after the core temperature of the cluster had stabilized. Furthermore, the changes in cluster shape and size were hysteretic, contracting in response to cooling faster than expanding in response to heating. Although the base contact diameter of the cluster increased continuously when the swarm was heated, the change in length of the swarm (base to tip) over time was nonmonotonic. Consequently, the aspect ratio of the swarm fluctuated continuously even when held at a constant temperature. Taken together, our results quantify the hysteretic and anisotropic morphological responses of swarm clusters to ambient temperature variations while suggesting that both mechanical constraints and heat transfer govern their thermoregulatory morphodynamics.
机译:在繁殖期间,悬挂在环境中结构(例如树枝)上的超过 10,000 只蜜蜂集群暴露在环境温度的差异下长达一周。蜂群簇会根据这些变化(即响应加热/冷却而膨胀/收缩)共同调节其形态,以将其内部温度保持在可容忍的范围内,并避免过早耗尽其蜂蜜储备。为了了解热调节变形的时空方面,我们测量了集群集群的大小、形状和内部温度分布的变化,以响应动态温度斜坡扰动。当从15°C加热到30°C时,群状簇的体积/密度变化了两倍。然而,当它们在30°C下保持5小时时,它们并没有达到平衡的大小或形状,这是在星团的核心温度稳定很久之后。此外,团簇形状和大小的变化是滞后的,响应冷却的收缩速度快于响应加热的膨胀速度。尽管当蜂群被加热时,星团的基部接触直径不断增加,但蜂群长度(基部到尖端)随时间的变化是非单调的。因此,即使在恒定温度下,群的纵横比也会持续波动。综上所述,我们的结果量化了群体团簇对环境温度变化的滞后和各向异性形态响应,同时表明机械约束和传热控制着它们的热调节形态动力学。

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