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Spatio-temporal gait characteristics of level and vertical locomotion in aground-dwelling and a climbing gecko

机译:地面和壁虎攀爬时水平和垂直运动的时空步态特征

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摘要

The effects of incline (vertical versus horizontal) on spatio-temporal gait characteristics (stride and step length, frequency, duty factor, degree of sprawling) were measured over a range of speeds in a ground-dwelling (Eublepharis macularius) and a climbing (Gekko gecko) species of gecko, Surprisingly, the climbing species also performs very well when moving on the horizontal substratum. In the present experiments, climbing speeds ranged from 0.6 to 1.2 m s(-1), whereas speeds for level locomotion were between 0.6 and 1.8 m s(-1). In contrast, the vertical climbing capacities of the ground-dweller are limited (speeds below 0.1 m s(-1) versus level speeds between 0.2 and 1.1 ms(-1)). In general, me demonstrate that very little adjustment in gait characteristics is made by either species when they are forced to move on their non-habitual substratum. Moreover, gait characteristics differ little between the species despite the clear differences in ecological niche, Higher level or climbing speeds are realized mainly (or exclusively in the case of level locomotion in G. gecko) by increasing stride frequency. Stride lengths and duty factors vary with speed in the ground-dweller, but not in the climbing species. Step length and the degree of sprawling are speed-independent (except for hind-limb sprawling in G. gecko on the level). It is argued that this common strategy suits climbing (fixed spatial variables, no floating phases) rather than level locomotion.
机译:在地面居民(Eublepharis macularius)和攀登(Eublepharis macularius)的各种速度范围内,测量了倾斜(垂直与水平)对时空步态特征(步幅和步长,频率,占空比,蔓延程度)的影响。令人惊讶的是,攀爬物种在水平基底上移动时也表现出色。在目前的实验中,攀爬速度介于0.6到1.2 m s(-1)之间,而水平运动的速度介于0.6到1.8 m s(-1)之间。相反,地面居民的垂直攀爬能力受到限制(速度低于0.1 m s(-1)相对于水平速度介于0.2到1.1 ms(-1)之间)。总的来说,我证明了当任一物种被迫在其非习惯性基底层上移动时,它们在步态特征上的调整很少。此外,尽管生态位存在明显差异,但不同物种之间的步态特征差异不大。主要通过增加步幅频率来实现更高的爬坡速度或攀爬速度(或仅在壁虎的水平移动情况下)。在地面居民中步幅和占空因数随速度而变化,但在攀援物种中则不随速度而变化。步长和伸展程度与速度无关(除了G. gecko在水平面上的后肢伸展)。有人认为,这种通用策略适合攀登(固定的空间变量,没有浮动阶段)而不是水平移动。

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