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九带犰狳(哺乳纲,异关节总目)中异关节脊椎的功能形态学

The functional morphology of xenarthrous vertebrae in the armadillo Dasypus novemcinctus (Mammalia, Xenarthra).

作者信息

Gaudin T J, Biewener A A

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Illinois 60637.

出版信息

J Morphol. 1992 Oct;214(1):63-81. doi: 10.1002/jmor.1052140105.

Abstract

In order to assess the mechanical properties of xenarthrous vertebrae, and to evaluate the role of xenarthrae as fossorial adaptations, in vitro bending tests were performed on posterior thoracic and lumbar vertebral segments excised from specimens of the armadillo Dasypus novemcinctus and the opossum Didelphis virginiana, the latter being used to represent the primitive mammalian condition. The columns of the two species were subjected to dorsal, ventral, and lateral bending, as well as torsion, in order to determine their stiffness in each of these directions. During these tests, bone strains in the centra of selected vertebrae were determined using rosette strain gages. Overall stiffness of the armadillo backbone at physiologically relevant displacement levels was significantly higher than that of the opossum for both dorsal and lateral bending. The two species also exhibited significant differences in angular displacement of individual vertebrae and in vertebral strain magnitudes and orientations in these two directions. No significant differences were observed when the columns of the two species were subjected to torsion or to ventral bending. Our results suggest that some, but not all, of the mechanical differences between the two species are due to the presence of xenarthrae. For example, removal of the xenarthrae from selected vertebrae (L2-L4) changes strain orientation and shear, but not strain magnitudes. Comparisons with functional data from other digging mammals indicate that the modified mechanical properties of the Dasypus column are consistent with an interpretation of xenarthrae as digging adaptations and lend support to the idea that the order Xenarthra represents an early offshoot of placental mammals specialized for fossoriality.

摘要

为了评估异关节椎骨的力学性能,并评估异关节作为适应穴居生活的作用,对从犰狳九带犰狳(Dasypus novemcinctus)和负鼠弗吉尼亚负鼠(Didelphis virginiana)标本上切除的胸段和腰段后部椎体节段进行了体外弯曲试验,后者用于代表原始哺乳动物的情况。对这两个物种的脊柱柱进行了背侧、腹侧和侧向弯曲以及扭转试验,以确定它们在每个方向上的刚度。在这些试验中,使用应变片式应变计测定选定椎体中心的骨应变。在生理相关位移水平下,犰狳脊柱的整体刚度在背侧和侧向弯曲方面均显著高于负鼠。这两个物种在单个椎体的角位移以及这两个方向上的椎体应变大小和方向上也表现出显著差异。当对这两个物种的脊柱柱进行扭转或腹侧弯曲时,未观察到显著差异。我们的结果表明,这两个物种之间的一些但并非所有力学差异是由于异关节的存在。例如,从选定的椎体(L2-L4)上移除异关节会改变应变方向和剪切力,但不会改变应变大小。与其他挖掘哺乳动物的功能数据比较表明,犰狳脊柱柱改变后的力学性能与将异关节解释为挖掘适应相一致,并支持了异关节目代表专门适应穴居生活的胎盘哺乳动物早期分支的观点。

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