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楔齿蜥(Sphenodon punctatus,爬行纲:喙头目)的咀嚼:运动系统的结构与活动

Mastication in the tuatara, Sphenodon punctatus (reptilia: Rhynchocephalia): Structure and activity of the motor system.

作者信息

Gorniak G C, Rosenberg H I, Gans Carl

机构信息

Division of Biological Sciences, The University of Michigan, Ann Arbor, Michigan 48109.

出版信息

J Morphol. 1982 Mar;171(3):321-353. doi: 10.1002/jmor.1051710307.

DOI:10.1002/jmor.1051710307
PMID:30089350
Abstract

The masticatory pattern of Sphenodon punctatus, the sole remaining rhynchocephalian, now restricted to islands off the coast of New Zealand, has been analyzed by detailed anatomy, cinematography, cinefluoroscopy, and electromyography. Food reduction consists of a closing, crushing bite followed by a propalineal sliding of the dentary row between the maxillary and palatine ones. The large, fleshy tongue can be protruded to pick up small prey, and also plays a major role in prey manipulation. The rotational closing movement of the jaw, supporting the basic crushing movement, is induced by the main adductor musculature. It is followed by a propalineal anterior displacement relying heavily on the action of the M. pterygoideus. The fiber lengths of the several muscles reflect the extent of shortening. The most obvious modification appears in the M. pterygoideus, which contains a central slip of pinnately arranged short fibers that act a period different from that of the rest of the muscle; their action increases the power during the terminal portion of the propalineal phase. This also allows the animal to use its short teeth in an effective shearing bite that cuts fragments off large prey. The action of single cusped dentary teeth acting between the maxillary and palatine tooth rows provides a translational crushing-cutting action that may be an analog of the mammalian molar pattern. However, this strictly fore-aft slide does not incorporate capacity for later development of lateral movement.

摘要

斑点楔齿蜥是喙头目现存的唯一物种,现仅分布于新西兰沿海岛屿,其咀嚼模式已通过详细解剖、电影摄影、荧光透视和肌电图进行了分析。食物处理过程包括一次闭合、挤压咬合,随后齿骨排在上颌和腭骨排之间进行向前滑动。肉质的大舌头可以伸出以抓取小型猎物,并且在猎物操控中也起着主要作用。下颌的旋转闭合运动由主要的内收肌引发,支撑着基本的挤压运动。随后是主要依靠翼状肌作用的向前移位。几块肌肉的纤维长度反映了缩短程度。最明显的变化出现在翼状肌中,它包含一条中央羽状排列的短纤维束,其作用时期与肌肉其他部分不同;它们的作用在向前阶段的末期增加了力量。这也使动物能够用其短齿进行有效的剪切咬合,从大型猎物上咬下碎片。单尖齿骨齿在上颌和腭骨齿列之间的作用提供了一种平移挤压切割作用,这可能类似于哺乳动物的臼齿模式。然而,这种严格的前后滑动并不具备后期发展出侧向运动的能力。

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