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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Postural role of lateral axial muscles in developing bottlenose dolphins (Tursiops truncatus).
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Postural role of lateral axial muscles in developing bottlenose dolphins (Tursiops truncatus).

机译:外侧轴状肌在发育宽吻海豚中的姿势作用(Tursiops truncatus)。

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Foetal dolphins (Tursiops truncatus) are bent ventrolaterally, such that the tailflukes and lower jaw are juxtaposed. The lateral flexibility required en utero may compromise the efficiency of the dorsoventral oscillations required of the swimming neonate. The m. intertransversarius caudae dorsalis (IT) is the most laterally placed epaxial muscle. Bilateral contractions of the IT could limit lateral deformations of the flexible tailstock of the early neonate. We test the hypothesis that the IT is functioning as a postural muscle in neonates by examining its morphological, histological and biochemical properties. The neonatal IT has a relatively large cross-sectional area and bending moment, as well as a large proportion of slow-twitch fibres and elevated myoglobin concentrations. Our results demonstrate that the IT is functionally capable of performing this specific postural function in neonatal dolphins. In later life-history stages, when postural control is no longer needed, the IT serves to fine-tune the position of the tailstock during locomotion. The changing function of the adult IT is concomitant with changes in morphology and biochemistry, and most notably, with an increase in the proportion of fast-twitch fibres. We suggest that these changes reflect strong selective pressure to improve locomotor abilities by limiting lateral deformations during this critical life-history stage.
机译:胎儿海豚(Tursiops truncatus)腹侧弯曲,使尾鳍和下颌并列。子宫内所需的侧向柔韧性可能会损害游泳新生儿所需的背腹振动的效率。该米。横贯马尾间肌(IT)是最外侧放置的腓肠肌。 IT的双侧收缩可能会限制早期新生儿的柔性尾架的侧向变形。通过检查其形态,组织学和生化特性,我们检验了IT在新生儿中充当姿势肌肉的假设。新生儿IT的横截面积和弯矩相对较大,并且慢肌纤维比例较高,肌红蛋白浓度较高。我们的结果表明,IT在功能上能够在新生儿海豚中执行这种特定的姿势功能。在以后的生活史阶段中,当不再需要姿势控制时,IT可以在移动过程中微调尾架的位置。成人IT的功能变化伴随着形态和生化的变化,最显着的是,快弹纤维比例的增加。我们建议,这些变化反映出强大的选择性压力,可以通过在这个关键的生命历史阶段限制横向变形来提高运动能力。

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