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蒙古晚白垩世窃蛋龙类恐龙纤细窃螺龙(兽脚亚目,手盗龙类)的颅骨气腔化与听觉感知

Cranial pneumatization and auditory perceptions of the oviraptorid dinosaur Conchoraptor gracilis (Theropoda, Maniraptora) from the Late Cretaceous of Mongolia.

作者信息

Kundrát Martin, Janácek Jirí

机构信息

Redpath Museum-Biology Department, McGill University, 859 Sherbrooke Street West, Montreal, Quebec, H3A 2K6, Canada.

出版信息

Naturwissenschaften. 2007 Sep;94(9):769-78. doi: 10.1007/s00114-007-0258-7. Epub 2007 May 25.

DOI:10.1007/s00114-007-0258-7
PMID:17530209
Abstract

The distribution of air-filled structures in the craniofacial and neurocranial bones of the oviraptorid ZPAL MgD-I/95, discovered at the Hermiin Tsav locality, Mongolia, is restored. Based on the complete obliteration of most of the cranial sutures, the specimen is identified as an adult individual of Conchoraptor gracilis Barsbold 1986. Except for the orbitosphenoids and epipterygoids, the preserved bones of the neurocranium are hollow. Three types of tympanic recess are present in Conchoraptor, a characteristic shared with troodontids, dromaeosaurids, and avian theropods. The contralateral middle ear cavities are interconnected by the supraencephalic pathway that passes through the dorsal tympanic recesses, the posterodorsal prootic sinuses and the parietal sinus. The spatial arrangements of the middle ear cavity and a derived neurocranial pneumatic system in Conchoraptor indicate enhancements of acoustic perception in the lower-frequency registers and of auditory directionality. We further speculate that this improvement of binaural hearing could be explained as an adaptation required for accurate detection of prey and/or predators under conditions of low illumination. The other potentially pneumatic structures of the Conchoraptor cranium include (1) recessus-like irregularities on the dorsal surface of the nasal and frontal bones (a putative oviraptorid synapomorphy; pos); (2) a subotic recess; (3) a sub-condylar recess; and (4) a posterior condylar recess (pos).

摘要

在蒙古赫尔米因察夫地点发现的窃蛋龙类标本ZPAL MgD-I/95的颅面骨和脑颅骨中充满空气结构的分布得以复原。基于大多数颅缝完全闭合,该标本被鉴定为1986年巴尔斯博尔德所命名的纤巧窃螺龙的成年个体。除眶蝶骨和翼蝶骨外,脑颅骨的保存骨骼是中空的。窃螺龙存在三种类型的鼓室隐窝,这是与伤齿龙科、驰龙科和鸟类兽脚亚目恐龙共有的特征。对侧中耳腔通过穿过背侧鼓室隐窝、后上方耳前窦和顶窦的脑上通路相互连通。窃螺龙中耳腔和衍生的脑颅骨气腔系统的空间排列表明其在低频范围内听觉感知和听觉方向性有所增强。我们进一步推测,这种双耳听力的改善可以解释为在低光照条件下准确探测猎物和/或捕食者所需的一种适应。窃螺龙头骨的其他潜在气腔结构包括:(1)鼻骨和额骨背表面的类似隐窝的不规则结构(一种假定的窃蛋龙类共衍征;共衍征);(2)耳下隐窝;(3)髁下隐窝;以及(4)后髁隐窝(共衍征)。

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