Suppr超能文献

吸食性鱼类的轴向形态与三维神经颅运动学

Axial morphology and 3D neurocranial kinematics in suction-feeding fishes.

作者信息

Jimenez Yordano E, Camp Ariel L, Grindall Jonathan D, Brainerd Elizabeth L

机构信息

Department of Ecology and Evolutionary Biology, Brown University, 80 Waterman Street, Providence, RI 02912, USA

Friday Harbor Laboratories, University of Washington, 620 University Road, Friday Harbor, WA 98250, USA.

出版信息

Biol Open. 2018 Sep 20;7(9):bio036335. doi: 10.1242/bio.036335.

Abstract

Many suction-feeding fish use neurocranial elevation to expand the buccal cavity for suction feeding, a motion necessarily accompanied by the dorsal flexion of joints in the axial skeleton. How much dorsal flexion the axial skeleton accommodates and where that dorsal flexion occurs may vary with axial skeletal morphology, body shape and the kinematics of neurocranial elevation. We measured three-dimensional neurocranial kinematics in three species with distinct body forms: laterally compressed , fusiform , and dorsoventrally compressed The area just caudal to the neurocranium occupied by bone was 42±1.5%, 36±1.8% and 22±5.5% (mean±s.e.m.; 3, 6, 4) in the three species, respectively, and the epaxial depth also decreased from to Maximum neurocranial elevation for each species was 11, 24 and 37°, respectively, consistent with a hypothesis that aspects of axial morphology and body shape may constrain neurocranial elevation. Mean axis of rotation position for neurocranial elevation in , and was near the first, third and fifth intervertebral joints, respectively, leading to the hypothesis of a similar relationship with the number of intervertebral joints that flex. Although future work must test these hypotheses, our results suggest the relationships merit further inquiry.

摘要

许多吸食式鱼类利用神经颅抬高来扩张口腔以进行吸食,这种动作必然伴随着轴向骨骼关节的背屈。轴向骨骼能容纳多少背屈以及背屈发生的位置可能会因轴向骨骼形态、身体形状和神经颅抬高的运动学而有所不同。我们测量了三种具有不同身体形态的物种的三维神经颅运动学:侧扁形、梭形和背腹扁平形。在这三个物种中,神经颅后方被骨骼占据的区域分别为42±1.5%、36±1.8%和22±5.5%(平均值±标准误;分别为3、6、4个样本),并且轴上肌深度也从[原文此处缺失数据]减小到[原文此处缺失数据]。每个物种的最大神经颅抬高分别为11°、24°和37°,这与轴向形态和身体形状的某些方面可能会限制神经颅抬高的假设一致。在[原文此处缺失物种名]、[原文此处缺失物种名]和[原文此处缺失物种名]中,神经颅抬高的平均旋转轴位置分别靠近第一、第三和第五个椎间关节,这导致了与屈曲的椎间关节数量存在类似关系的假设。尽管未来的工作必须检验这些假设,但我们的结果表明这些关系值得进一步探究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34e0/6176947/9ed7c64f1366/biolopen-7-036335-g1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验