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猫科动物及其他典型食肉动物中可收缩爪子的形态与功能。

The form and function of retractile claws in the Felidae and other representative carnivorans.

作者信息

Gonyea W, Ashworth R

出版信息

J Morphol. 1975 Feb;145(2):229-38. doi: 10.1002/jmor.1051450208.

Abstract

Recent behavioral studies have shown the primary organ of prehension used in capturing prey to be the claw equipped forelimbs. In light of its functional importance, the claw retractile mechanism for 15 felid species is described and its function studied . The anatomy of the claw retractile mechanism for felids is then compared to that of other carnivorans. For felids,claw retraction is mechanically possible due to the unique shape of the middle and distal phalanges. Claw retraction, however, is a function of the dorsal elastic ligaments and not of the forearm extensor muscles. The resistance provided by these ligaments allows for flexion of the wrist and digital joints without claw protrusion. Moreover, co-contraction of both forearm flexor and extensor muscles is necessary to produce claw protrusion. The functional anatomy of claw retraction for felids differs considerably from that of most other carnivorans. However, the claw retractile mechanism for some advanced viverrids is structurally similar to that of the felids. For these viverrids prey seizing, as in the felids, has become a function of the forelimbs. For the other families of carnivorans, the jaws and not the forelimbs are used as the primary organ of prehension and the anatomy of the claw retractile mechanism reflects functional demands placed on it other than grasping and holding prey.

摘要

最近的行为研究表明,用于捕获猎物的主要抓握器官是配备爪子的前肢。鉴于其功能重要性,本文描述了15种猫科动物的爪子伸缩机制并对其功能进行了研究。然后将猫科动物的爪子伸缩机制的解剖结构与其他食肉动物的进行了比较。对于猫科动物来说,由于中趾骨和末趾骨的独特形状,爪子的收缩在机械上是可行的。然而,爪子的收缩是背侧弹性韧带的功能,而不是前臂伸肌的功能。这些韧带提供的阻力使得手腕和指关节能够弯曲而爪子不会伸出。此外,前臂屈肌和伸肌的共同收缩对于爪子的伸出是必要的。猫科动物爪子收缩的功能解剖结构与大多数其他食肉动物有很大不同。然而,一些高等灵猫科动物的爪子伸缩机制在结构上与猫科动物相似。对于这些灵猫科动物来说,像猫科动物一样,捕食已经成为前肢的功能。对于其他食肉动物家族来说,主要的抓握器官是颌而不是前肢,爪子伸缩机制的解剖结构反映了除抓握和抓住猎物之外对其的功能需求。

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