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首页> 外文期刊>The Journal of Experimental Biology >Autotomy-induced effects on the locomotor performance of the ghost crab Ocypode quadrata
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Autotomy-induced effects on the locomotor performance of the ghost crab Ocypode quadrata

机译:对鬼蟹ocypode Quadrata的机车表现的自身传递诱导的影响

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摘要

The voluntary amputation of an appendage, or autotomy, is an effective defensive mechanism that allows an animal to escape aggressive interactions. However, animals may suffer long-term costs that can reduce their overall fitness. Atlantic ghost crabs (Ocypode quadrata) are one of the fastest terrestrial invertebrates, and regularly lose one or more limbs in response to an antagonist encounter. When running laterally at fast speeds, they adopt a quadrupedal gait using their first and second pairs of legs while raising their fourth, and sometimes the third, pair of legs off the ground. This suggests that some limbs may be more important for achieving maximal locomotor performance than others. The goal of this study was to determine whether the loss of certain limbs would affect running performance more than others, and what compensatory strategies were used. Crabs were assigned to four different paired limb removal treatments or the control group and run on an enclosed trackway in their natural habitat. Ghost crabs were found to adjust stride kinematics in response to limb loss. Loss of the second or third limb pairs caused a reduction in running speed by about 25%, suggesting that the remaining intact limbs were unable to compensate for the loss of either limb, either due to a lack of propulsive forces produced by these limbs or issues stemming from re-coupling limb arrangements. Loss of any of the other limbs had no detectable effect on running speed. We conclude that compensatory ability varies depending on the limb that is lost.
机译:阑尾的自愿截肢或自残是一种有效的防御机制,可以让动物逃避攻击性的互动。然而,动物可能会付出长期代价,从而降低其整体健康水平。大西洋幽灵蟹(Ocipode quadra)是速度最快的陆地无脊椎动物之一,经常在遇到对手时失去一条或多条肢体。当以极快的速度横向跑步时,他们采用四足步态,使用第一对和第二对腿,同时将第四对,有时是第三对腿抬离地面。这表明,一些肢体可能比其他肢体对实现最大运动性能更重要。本研究的目的是确定失去某些肢体是否会比其他肢体更影响跑步成绩,以及使用了哪些补偿策略。螃蟹被分配到四个不同的配对肢体切除治疗组或对照组,并在其自然栖息地的封闭轨道上奔跑。研究发现,鬼魂蟹会调整步态以应对肢体缺失。第二或第三对肢体的缺失导致跑步速度降低约25%,这表明剩余的完整肢体无法补偿任何肢体的缺失,原因可能是这些肢体产生的推进力不足,或者是肢体重新连接的问题。其他肢体的缺失对跑步速度没有明显影响。我们得出结论,代偿能力取决于失去的肢体。

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