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鸵鸟(鸵鸟属骆驼鸵鸟)颈部的灵活性及其对极长颈部恐龙重建的影响。

Flexibility along the neck of the ostrich (Struthio camelus) and consequences for the reconstruction of dinosaurs with extreme neck length.

作者信息

Dzemski Gordon, Christian Andreas

机构信息

Institut für Biologie, Department IV, Universität Flensburg, 24943 Flensburg, Germany.

出版信息

J Morphol. 2007 Aug;268(8):701-14. doi: 10.1002/jmor.10542.

Abstract

The gross morphology and the flexibility along the neck of the ostrich (Struthio camelus) were examined using fresh tissue as well as neck skeletons. The results of the morphologic studies were compared with results from observations of living ostriches. The investigation was focused on differences in the morphology and the function between different sections of the neck. Additionally, the function of major dorsal neck ligaments was examined, including measurements of force-strain-relations. Comparative studies of giraffes (Giraffa camelopardalis) and camels (Camelus bactrianus) were conducted to find relations between the flexibility along the neck and the general feeding strategy. The examinations revealed that the neck of the ostrich can be divided into four sections with different functions. The first is the atlas-axis-complex which is responsible for torsion. The adjacent cranial section of the neck is flexible in dorsoventral and lateral directions but this part of the neck is usually kept straight at rest and during feeding. Dorsoventral flexibility is highest in the middle section of the neck, whereas the base of the neck is primarily used for lateral excursions of the neck. For giraffes and camels, the posture and utilization of the neck are also reflected in the flexibility of the neck. For all three species, it is possible to reconstruct the pattern of flexibility of the neck by using the neck skeletons alone. Therefore, it appears reasonable to reconstruct the neck utilization and the feeding strategies of dinosaurs with long necks by deriving the flexibility of the neck from preserved vertebrae. For Diplodocus carnegii the neck posture and the feeding strategy were reconstructed. Two neck regions, one around the 9th neck vertebra and the second at the base of the neck, indicate that Diplodocus, like the ostrich, adopted different neck postures. The neck was probably kept very low during feeding. During interruptions of the feeding, e.g., in an alert, the head could have been lifted in an economic way by raising the cranial section of the neck. During standing and locomotion the head was probably located well above the shoulders.

摘要

利用新鲜组织以及颈部骨骼,对鸵鸟(鸵鸟属骆驼鸵鸟)颈部的大体形态和沿颈部的柔韧性进行了检查。将形态学研究结果与对活鸵鸟观察的结果进行了比较。研究重点在于颈部不同节段之间形态和功能的差异。此外,还检查了颈部主要背侧韧带的功能,包括力 - 应变关系的测量。对长颈鹿(长颈鹿属长颈鹿)和骆驼(双峰驼属双峰驼)进行了比较研究,以找出颈部柔韧性与一般进食策略之间的关系。检查发现,鸵鸟的颈部可分为四个具有不同功能的节段。第一个是寰枢复合体,负责扭转。颈部相邻的头侧节段在背腹侧和外侧方向具有柔韧性,但该部分颈部在休息和进食时通常保持伸直。颈部中间节段的背腹侧柔韧性最高,而颈部基部主要用于颈部的侧向摆动。对于长颈鹿和骆驼,颈部的姿势和使用方式也体现在颈部的柔韧性上。对于这三个物种,仅通过使用颈部骨骼就有可能重建颈部柔韧性的模式。因此,通过从保存的椎骨推导颈部的柔韧性来重建长颈恐龙的颈部使用方式和进食策略似乎是合理的。对于卡内基梁龙,重建了其颈部姿势和进食策略。两个颈部区域,一个在第9颈椎周围,另一个在颈部基部,表明梁龙与鸵鸟一样,采用了不同的颈部姿势。进食时颈部可能保持很低的位置。在进食中断期间,例如在警觉状态下,通过抬起颈部的头侧节段,头部可以以经济的方式抬起。站立和移动时,头部可能位于肩部上方很高的位置。

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