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首页> 外文期刊>The Journal of Experimental Biology >Incline and peg spacing have interactive effects on the arboreal locomotor performance and kinematics of brown tree snakes, Boiga irregularis
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Incline and peg spacing have interactive effects on the arboreal locomotor performance and kinematics of brown tree snakes, Boiga irregularis

机译:斜面和钉子间距对棕树蛇(Boiga Regularis)的树木运动能力和运动学具有交互作用

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摘要

Many animals move using lateral undulations, but snakes are noteworthy for using this type of locomotion in an unusual diversity of environments, including trees in which both the spacing and orientation of branches vary considerably. Despite branches providing discrete locations for snakes to generate propulsive forces during lateral undulation, the consequences of branch spacing for the locomotion of snakes are poorly understood. Hence, we determined maximal speeds and kinematics of an arboreal snake (Boiga irregularis) crawling on horizontal and vertical cylinders with pegs that simulated different spacing between secondary branches. Peg spacing, perch orientation and their two-way interaction term had widespread, significant effects on both performance and kinematics. For the horizontal surfaces, maximal locomotor speed occurred with intermediate peg spacing, and it was nearly twice as fast as for both the smallest and largest peg spacings. By contrast, the locomotor speed of snakes on the vertical surfaces was unaffected by peg spacing, and was uniformly slower than that for the horizontal surfaces. For both perch orientations, the number of pegs touched by the snake decreased as peg spacing increased, and while touching only one peg the snakes crawled with apparent ease and steady speed. The snakes crawled vertically with only one peg as quickly as they did using 2-10 pegs. Pegs on a horizontal cylinder are probably important both for propulsion of snakes and prevention of long-axis rolling, whereas pegs protruding from vertical cylinders and those protruding from horizontal planar surfaces are probably used almost exclusively for propulsion.
机译:许多动物使用侧向起伏运动,但在异常多变的环境(包括树木中,树枝的间距和方向有很大不同的树木)中使用这种类型的运动时,蛇是值得注意的。尽管分支为蛇提供了离散的位置以在横向起伏期间产生推进力,但人们对分支间距对蛇的运动的影响知之甚少。因此,我们确定了在水平和垂直圆柱体上爬行的树状蛇(不规则Boiga不规则蟒)的最大速度和运动学特征,其钉子模拟了次级分支之间的不同间距。钉间距,栖息地方向及其双向交互作用项对性能和运动学都有广泛而显着的影响。对于水平表面,最大的运动速度出现在中等的钉间距下,几乎快于最小和最大钉间距的两倍。相比之下,蛇在垂直面上的运动速度不受钉间距的影响,并且始终比水平面上慢。对于两个高位方向,随着钉间距的增加,蛇接触的钉的数量减少,并且在仅接触一个钉时,蛇以明显的轻松和稳定的速度爬行。蛇只用一根钉子垂直爬,就象使用2到10钉子一样快。水平圆柱体上的销钉对推进蛇和防止长轴滚动都可能很重要,而从垂直圆柱体上伸出的销钉和从水平平面上伸出的销钉几乎都可以用于推进。

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