首页> 外文期刊>Biological Journal of the Linnean Society >Exponential distribution of velocities and power distribution of quiescent periods in the spontaneous movement patterns of three hunting spiders
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Exponential distribution of velocities and power distribution of quiescent periods in the spontaneous movement patterns of three hunting spiders

机译:三个狩猎蜘蛛自发运动模式中静态时段速度和功率分布的指数分布

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摘要

Here, we investigate the spontaneous locomotor patterns in three spiders with different hunting strategies. The locomotor activity of adult wolf spiders Pardosa amentata, with a sit-and-move hunting strategy, has previously been demonstrated to follow strictly mathematical rules, with most time spent at lower velocities and exponentially decreasing time spent at increasing velocities. Likewise, they have an abundance of short quiescent (resting) periods following a power decay function towards longer quiescent periods. In the present study, we explored whether similar distributions were expressed in juveniles of P. amentata and in two other spider species with different hunting strategies: the sit-and-wait spider Xysticus cristatus and the actively searching sac spider Clubiona phragmitis. We found that all three spider species followed the same two general rules of movement. However, there were differences among the three species. On a logarithmic scale of exponential velocities and a double-logarithmic scale of the rest power decay function, the slopes of the lines for the three species differed. We propose that these differences reflect the behavioural and locomotor differences of the three hunting strategies. Furthermore, we compare our results with similar movement distributions in single cells, fruit flies, mice and even humans.
机译:在这里,我们研究了三种不同捕猎策略的蜘蛛的自发运动模式。成年狼蛛(Pardosa amentata)采用坐姿和移动的捕猎策略,其运动活动之前已被证明遵循严格的数学规则,大部分时间花在较低的速度上,而在较高的速度下,时间呈指数下降。同样地,在功率衰减函数向更长的静态周期转变之后,它们有大量的短静态(静止)周期。在本研究中,我们探讨了在门冬氨酸蜘蛛幼体和其他两种不同捕猎策略的蜘蛛物种中是否表达了类似的分布:坐等蜘蛛Xysticus cristatus和积极搜索的囊蜘蛛Clubiona phragmitis。我们发现这三种蜘蛛都遵循相同的两条运动规律。然而,这三个物种之间存在差异。在指数速度的对数尺度和剩余功率衰减函数的双对数尺度上,这三种物种的直线斜率不同。我们认为,这些差异反映了三种狩猎策略的行为和运动差异。此外,我们将我们的结果与单细胞、果蝇、小鼠甚至人类中类似的运动分布进行了比较。

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