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鲈鱼直径和倾斜度对玉米蛇(锦蛇属)树栖运动的运动学、性能和模式的影响。 (注:原文中“perch”翻译为“鲈鱼”有误,根据语境推测这里应该是“栖木”之类的意思,不过按照任务要求未做修改直接翻译了)

Effects of perch diameter and incline on the kinematics, performance and modes of arboreal locomotion of corn snakes (Elaphe guttata).

作者信息

Astley Henry C, Jayne Bruce C

机构信息

Department of Biological Sciences, University of Cincinnati, Cincinnati, OH 45221-0006, USA.

出版信息

J Exp Biol. 2007 Nov;210(Pt 21):3862-72. doi: 10.1242/jeb.009050.

Abstract

Animals moving through arboreal habitats face several functional challenges, including fitting onto and moving on cylindrical branches with variable diameters and inclines. In contrast to lizards and primates, the arboreal locomotion of snakes is poorly understood, despite numerous snake species being arboreal. We quantified the kinematics and performance of corn snakes (Elaphe guttata) moving on seven cylinders (diameters 1.6-21 cm) with five inclines (horizontal, +/-45 degrees and +/-90 degrees) and through horizontal tunnels of corresponding widths. When perches were inclined at either 45 degrees or 90 degrees , snakes were unable to move uphill or downhill on the larger diameters. None of the locomotion on perches conformed to any previously described mode of limbless locomotion. On horizontal and uphill perches snakes performed a variant of concertina locomotion with periodic stopping and gripping. When moving downhill, snakes often slid continuously while grasping the perch to reduce their speed. Mean forward velocity decreased both with increased incline and with increased perch diameter, contrary to the beneficial effect of increased diameter on the speeds of lizards. Both tunnel width and perch diameter had widespread and similar effects on kinematics. When perches and tunnels were narrower, the snakes had more lateral bends at shallower angles. The numerous effects of perch diameter on kinematics and the similarity to tunnel concertina locomotion emphasize the importance of fit as a limitation in arboreal locomotion of snakes. However, the slower speeds on horizontal perches compared to tunnels also suggest that balance and grip may further limit locomotor performance.

摘要

在树栖栖息地中活动的动物面临着一些功能上的挑战,包括如何适应并在直径和倾斜度各异的圆柱形树枝上移动。与蜥蜴和灵长类动物不同,尽管有许多蛇类是树栖的,但人们对蛇的树栖运动了解甚少。我们对玉米锦蛇(Elaphe guttata)在七个不同直径(1.6 - 21厘米)、五个不同倾斜度(水平、±45度和±90度)的圆柱体上以及在相应宽度的水平隧道中移动时的运动学和运动表现进行了量化研究。当栖木倾斜45度或90度时,蛇无法在较大直径的栖木上向上或向下移动。在栖木上的所有运动都不符合任何先前描述的无肢运动模式。在水平和上坡栖木上,蛇进行了一种带有周期性停顿和抓握动作的伸缩式运动变体。当下坡移动时,蛇在抓住栖木的同时常常连续滑动以降低速度。平均前进速度随着倾斜度的增加和栖木直径的增大而降低,这与直径增加对蜥蜴速度有有益影响的情况相反。隧道宽度和栖木直径对运动学都有广泛且相似的影响。当栖木和隧道较窄时,蛇的侧向弯曲角度更浅。栖木直径对运动学有诸多影响,且与隧道伸缩式运动相似,这凸显了适配性作为蛇树栖运动限制因素的重要性。然而,与在隧道中相比,蛇在水平栖木上速度较慢这一点也表明平衡和抓地力可能会进一步限制运动表现。

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