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Substrate diameter and compliance affect the gripping strategies and locomotor mode of climbing boa constrictors

机译:基质直径和柔度会影响爬蟒蛇的抓地策略和运动模式

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摘要

Arboreal habitats pose unique challenges for locomotion as a result of their narrow cylindrical surfaces and discontinuities between branches. Decreased diameter of branches increases compliance, which can pose additional challenges, including effects on stability and energy damping. However, the combined effects of substrate diameter and compliance are poorly understood for any animal. We quantified performance, kinematics and substrate deformation while boa constrictors (Boa constrictor) climbed vertical ropes with three diameters (3, 6 and 9 mm) and four tensions (0.5, 1.0, 1.5 and 2.0 body weights). Mean forward velocity decreased significantly with both decreased diameter and increased compliance. Both diameter and compliance had numerous effects on locomotor kinematics, but diameter had larger and more pervasive effects than compliance. Locomotion on the largest diameter had a larger forward excursion per cycle, and the locomotor mode and gripping strategy differed from that on the smaller diameters. On larger diameters, snakes primarily applied opposing forces at the same location on the rope to grip. By contrast, on smaller diameters forces were applied in opposite directions at different locations along the rope, resulting in increased rope deformation. Although energy is likely to be lost during deformation, snakes might use increased surface deformation as a strategy to enhance their ability to grip.
机译:树木栖身的栖息地由于其狭窄的圆柱形表面和分支之间的不连续性而给运动带来了独特的挑战。分支直径的减小会增加顺应性,这可能带来其他挑战,包括对稳定性和能量阻尼的影响。但是,对于任何动物,人们对基质直径和顺应性的综合影响了解甚少。我们量化了性能,运动学和基底变形,同时蟒蛇收缩器(Boa收缩器)爬升了具有三个直径(3、6和9 mm)和四个张力(0.5、1.0、1.5和2.0体重)的垂直绳索。平均前进速度随着直径的减小和顺应性的增加而明显降低。直径和顺应性对运动运动学都有许多影响,但是直径比顺应性具有更大和更广泛的影响。最大直径的运动每个周期的向前偏移较大,运动模式和抓握策略与较小直径的运动不同。在较大直径时,蛇主要在绳索的相同位置施加相反的力以进行抓紧。相反,在较小直径的情况下,沿绳索在不同位置以相反的方向施加力,导致绳索变形增加。尽管在变形过程中可能会损失能量,但蛇可能会使用增加的表面变形作为增强抓地力的策略。

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