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力学和运动学在确定鱼类体尾鳍游泳过程中脊柱刚度贡献方面的重要性。

Importance of mechanics and kinematics in determining the stiffness contribution of the vertebral column during body-caudal-fin swimming in fishes.

作者信息

Nowroozi Bryan N, Brainerd Elizabeth L

机构信息

Center for Advanced Surgical and Interventional Technology (CASIT), Department of Bioengineering, University of California, Los Angeles, CA 90095, USA.

Department of Ecology and Evolutionary Biology, Brown University, Providence, RI 02912, USA.

出版信息

Zoology (Jena). 2014 Feb;117(1):28-35. doi: 10.1016/j.zool.2013.10.003. Epub 2013 Dec 4.

Abstract

Whole-body stiffness in fishes has important consequences for swimming mode, speed and efficiency, but the contribution of vertebral column stiffness to whole-body stiffness is unclear. In our opinion, this lack of clarity is due in part to the lack of studies that have measured both in vitro mechanical properties of the vertebral column as well as in vivo vertebral kinematics in the same species. Some lack of clarity may also come from real variation in the mechanical role of the vertebral column across species. Previous studies, based on either mechanics or kinematics alone, suggest species-specific variation in vertebral column locomotor function that ranges from highly stiff regimes that contribute greatly to whole-body stiffness, and potentially act as a spring, to highly compliant regimes that only prohibit excessive flexion of the intervertebral joints. We review data collected in combined investigations of both mechanics and kinematics of three species, Myxine glutinosa, Acipenser transmontanus, and Morone saxatilis, to illustrate how mechanical testing within the context of the in vivo kinematics more clearly distinguishes the role of the vertebral column in each species. In addition, we identify species for which kinematic data are available, but mechanical data are lacking. We encourage further investigation of these species to fill these mechanical data gaps. Finally, we hope these future combined analyses will identify certain morphological, mechanical, or kinematic parameters that might be associated with certain vertebral column functional regimes with respect to body stiffness.

摘要

鱼类的全身僵硬对游泳模式、速度和效率具有重要影响,但脊柱僵硬对全身僵硬的贡献尚不清楚。我们认为,这种不明确部分是由于缺乏对同一物种的脊柱体外力学特性和体内脊柱运动学进行测量的研究。一些不明确也可能源于不同物种间脊柱力学作用的实际差异。以往的研究仅基于力学或运动学,表明脊柱运动功能存在物种特异性差异,范围从对全身僵硬有很大贡献并可能起到弹簧作用的高刚度状态,到仅防止椎间关节过度弯曲的高顺应性状态。我们回顾了在对盲鳗、太平洋鲟和条纹鲈这三个物种的力学和运动学联合研究中收集的数据,以说明在体内运动学背景下进行力学测试如何更清楚地区分每个物种中脊柱的作用。此外,我们确定了有运动学数据但缺乏力学数据的物种。我们鼓励对这些物种进行进一步研究以填补这些力学数据空白。最后,我们希望这些未来的联合分析能够确定某些与脊柱在身体僵硬方面的特定功能状态相关的形态、力学或运动学参数。

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