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现存兔形目动物(哺乳纲)锤骨的前突。

The anterior process of the malleus in extant Lagomorpha (Mammalia).

作者信息

Maier Wolfgang, Tröscher Adrian, Ruf Irina

机构信息

Institut für Evolution und Ökologie, Eberhard-Karls-Universität Tübingen, Auf der Morgenstelle 28, 72076, Tübingen, Germany.

Abteilung Messelforschung und Mammalogie, Senckenberg Forschungsinstitut und Naturmuseum Frankfurt, Senckenberganlage 25, 60325, Frankfurt am Main, Germany.

出版信息

J Morphol. 2018 Jan;279(1):132-146. doi: 10.1002/jmor.20759. Epub 2017 Oct 25.

DOI:10.1002/jmor.20759
PMID:29068074
Abstract

The anterior anchoring of the malleus of 30 extant species of Lagomorpha (rabbits, hares, pikas) has been studied on the basis of histological serial sections and µCT-scans. It is shown that former studies of Oryctolagus, Lepus, and Ochotona are incomplete, because the rostral part of the processus anterior of the malleus is always lacking due to damage of this extremely delicate structure. Our study shows that in perinatal stages of Leporidae the praearticulare develops a prominent processus internus that fits into a groove at the ventral side of the tegmen tympani; this "tongue and groove"-arrangement may act as a hinge. In adult stages, the rostral end of the praearticulare fuses synostotically with the medial process of the ectotympanic. Torsional strain produced by rotation around the axis of the middle ear ossicles at sound transmission must, therefore, be experienced by the extremely thin but highly elastic bony pedicle of the processus internus praearticularis. The free ending processus anterior of a late fetal Ochotona shows a short processus internus praearticularis, which does not articulate with the tegmen tympani. During postnatal development the middle ear of Ochotona becomes considerably remodelled: not only does excessive pneumatization of the tegmen tympani and tympanic cavity wall occur, but the short processus anterior is fused synostotically to a bone trabecula of the tegmen tympani meshwork. The thin and elastic bone bridges are not equivalent in Leporidae and Ochotonidae, that is, they must have evolved convergently. Fleischer's classification with Oryctolagus possessing a "freely mobile type" of middle ear ossicles cannot be supported by our observations. The same holds true for Ochotona, which does not represent a "freely mobile type" either. Thus, we suggest for the lagomorph middle ear ossicles a new category: the "bone elasticity type."

摘要

基于组织学连续切片和显微计算机断层扫描(µCT扫描),对30种现存兔形目动物(兔子、野兔、鼠兔)的锤骨前固定进行了研究。结果表明,以前对穴兔属、兔属和鼠兔属的研究并不完整,因为锤骨前突的喙部总是缺失,这是由于这个极其脆弱的结构受损所致。我们的研究表明,在兔科动物的围产期阶段,前关节骨会发育出一个突出的内侧突,该内侧突嵌入鼓室盖腹侧的一个凹槽中;这种“舌槽”结构可能起到铰链的作用。在成年阶段,前关节骨的喙端与外耳道骨的内侧突骨性融合。因此,在声音传播时围绕中耳听小骨轴旋转所产生的扭转应变,必定会由前关节骨内侧突极其纤细但极具弹性的骨蒂来承受。一只晚期胎儿鼠兔的锤骨前突自由端显示出一个短的前关节骨内侧突,它不与鼓室盖相连。在出生后的发育过程中,鼠兔的中耳发生了显著的重塑:不仅鼓室盖和鼓腔壁出现过度气化,而且短的锤骨前突与鼓室盖网状结构的一个骨小梁骨性融合。兔科和鼠兔科的细弹性骨桥并不相同,也就是说,它们必定是趋同进化而来的。我们的观察结果不支持弗莱舍尔将穴兔属中耳听小骨归为“自由活动型”的分类方法。鼠兔属也不代表“自由活动型”。因此,我们建议将兔形目动物的中耳听小骨归为一个新的类别:“骨弹性型”。

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