从面具到肌肉:绘制 Nycticebus 的面部结构图。

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY
A. Weldon, A. M. Burrows, W. Wirdateti, T. P. Nugraha, N. Supriatna, Timothy D. Smith, K. A. I. Nekaris
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引用次数: 0

摘要

哺乳动物的面部肌肉是咀嚼和非语言交流面部表情的基础。我们对灵长类动物面部表情的了解主要来自于猴科动物(猴和猿),而对狐猴科动物(狐猴和长尾猴)面部表情的了解仍不全面。我们采用传统的解剖方法和新颖的三维面部扫描技术,检查了三种狐猴(Nycticebus coucang、Nycticebus javanicus和Nycticebus menagensis)的六个标本的面部肌肉,绘制了详细的面部肌肉图谱,并将这些结果与另一种夜间活动的链臀目动物--大丛林猴(Otolemur spp.)进行了比较。我们观察到了 19 块肌肉,这些肌肉在 Nycticebus 标本中没有差异。在Nycticebus和Otolemur身上共观察到17块肌肉,它们在附着和功能上差别不大,但在运动方向上有一些差别。在口腔区域,我们注意到了口角下压肌的存在,其他灵长类物种中也有这种肌肉的报道,但奥托勒马尔却没有。剩下的肌肉是一种以前未被描述过的收缩鼻肌,位于鼻翼外侧区域,可能负责收缩鼻孔。我们认为这一新描述的肌肉可能与绒毛器官的功能有关,也与鼻腔肌肉在嗅觉交流中的重要性有关。我们讨论了这种综合方法如何实现对小型复杂肌肉的成像。我们进一步讨论了 Nycticebus spp.的面部解剖与它们独特的生理和行为生态学之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

From masks to muscles: Mapping facial structure of Nycticebus

From masks to muscles: Mapping facial structure of Nycticebus

Facial musculature in mammals underlies mastication and nonverbal communicative facial displays. Our understanding of primate facial expression comes primarily from haplorrhines (monkeys and apes), while our understanding of strepsirrhine (lemurs and lorises) facial expression remains incomplete. We examined the facial muscles of six specimens from three Nycticebus species (Nycticebus coucang, Nycticebus javanicus, and Nycticebus menagensis) using traditional dissection methodology and novel three-dimensional facial scanning to produce a detailed facial muscle map, and compared these results to another nocturnal strepsirrhine genus, the greater bushbaby (Otolemur spp.). We observed 19 muscles with no differences among Nycticebus specimens. A total of 17 muscles were observed in both Nycticebus and Otolemur, with little difference in attachment and function but some difference in directionality of movement. In the oral region, we note the presence of the depressor anguli oris, which has been reported in other primate species but is absent in Otolemur. The remaining muscle is a previously undescribed constrictor nasalis muscle located on the lateral nasal alar region, likely responsible for constriction of the nares. We propose this newly described muscle may relate to vomeronasal organ functioning and the importance of the use of nasal musculature in olfactory communication. We discuss how this combined methodology enabled imaging of small complex muscles. We further discuss how the facial anatomy of Nycticebus spp. relates to their unique physiology and behavioral ecology.

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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
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