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Do bumblebees have signatures? Demonstrating the existence of a speed-curvature power law in Bombus terrestris locomotion patterns

机译:BumbleBees有签名吗? 展示轰炸机运动运动模式中速度曲率幂律的存在

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We report the discovery that Bombus terrestris audax (Buff-tailed bumblebee) locomotor trajectories adhere to a speed-curvature power law relationship which has previously been found in humans, non-human primates and Drosophila larval trajectories. No previous study has reported such a finding in adult insect locomotion. We used behavioural tracking to study walking Bombus terrestris in an arena under different training environments. Trajectories analysed from this tracking show the speed-curvature power law holds robustly at the population level, displaying an exponent close to two-thirds. This exponent corroborates previous findings in human movement patterns, but differs from the three-quarter exponent reported for Drosophila larval locomotion. There are conflicting hypotheses for the principal origin of these speed-curvature laws, ranging from the role of central planning to kinematic and muscular skeletal constraints. Our findings substantiate the latter idea that dynamic power-law effects are robust, differing only through kinematic constraints due to locomotive method. Our research supports the notion that these laws are present in a greater range of species than previously thought, even in the bumblebee. Such power laws may provide optimal behavioural templates for organisms, delivering a potential analytical tool to study deviations from this template. Our results suggest that curvature and angular speed are constrained geometrically, and independently of the muscles and nerves of the performing body.
机译:我们报告发现轰炸Terrestis audax(Bug-Tailed Bulberbee)运动轨迹遵守先前已发现的速度曲率幂律关系,该曲线关系在人类,非人类灵长类动物和果蝇幼虫轨迹中。没有先前的研究报告过成人昆虫运动的发现。我们使用行为跟踪在不同培训环境下的竞技场中研究行走巨弹。从该追踪分析的轨迹显示速度曲率幂律在人口层面持有稳健,呈现接近三分之二的指数。这种指数证实了人类运动模式的先前调查结果,但与果蝇幼虫运动的三季度指数不同。这些速度曲率法的主要来源存在矛盾的假设,从中央规划到运动和肌肉骨骼约束的作用。我们的调查结果证实了动态幂律效应是坚固的后一种想法,只有由于机车方法引起的运动限制。我们的研究支持这些法律在更大范围的物种中存在的概念,比以前在大黄蜂中的思考。这种权力法可以为生物提供最佳的行为模板,提供潜在的分析工具来研究与该模板的偏差。我们的研究结果表明,曲率和角度速度是几何上的限制,并且独立于表演体的肌肉和神经。

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