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一种水生蝾螈(鳗螈)肌隔的形态学与力学研究

Morphology and mechanics of myosepta in a swimming salamander (Siren lacertina).

作者信息

Azizi Emanuel, Gillis Gary B, Brainerd Elizabeth L

机构信息

Organismic and Evolutionary Biology Program and Biology Department, University of Massachusetts, 611 North Pleasant Street, Amherst, MA 01003-9297, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2002 Dec;133(4):967-78. doi: 10.1016/s1095-6433(02)00223-4.

Abstract

In contrast to the complex, three-dimensional shape of myomeres in teleost fishes, the lateral hypaxial muscles of salamanders are nearly planar and their myosepta run in a roughly straight line from mid-lateral to mid-ventral. We used this relatively simple system as the basis for a mathematical model of segmented musculature. Model results highlight the importance of the mechanics of myosepta in determining the shortening characteristics of a muscle segment. We used sonomicrometry to measure the longitudinal deformation of myomeres and the dorsoventral deformation of myosepta in a swimming salamander (Siren lacertina). Sonomicrometry results show that the myosepta allow some dorsoventral lengthening, indicating an amplification of myomere shortening that is greater than that produced by muscle fiber angle alone (10% muscle fiber shortening produces 28.7% myomere shortening). Polarized light and DIC microscopy of isolated hypaxial myosepta revealed that the collagen fiber orientation in hypaxial myomeres is primarily mediolateral. The mediolateral collagen fiber orientation, combined with our finding that the hypaxial myosepta lengthen dorsoventrally during swimming, suggests that one possible function of hypaxial myosepta in S. lacertina is to increase the strain amplification of the muscle fibers by reducing the mediolateral bulging of the myomeres and redirecting the bulging toward the dorsoventral direction.

摘要

与硬骨鱼类中复杂的三维肌节形状不同,蝾螈的外侧轴下肌几乎是平面的,其肌隔从中外侧到腹中部大致呈直线延伸。我们以这个相对简单的系统为基础建立了一个分段肌肉组织的数学模型。模型结果突出了肌隔力学在决定肌肉节段缩短特性方面的重要性。我们使用超声微测技术来测量游泳蝾螈(六鳃鳗)肌节的纵向变形和肌隔的背腹向变形。超声微测结果表明,肌隔允许一定程度的背腹向延长,这表明肌节缩短的放大程度大于仅由肌纤维角度产生的放大程度(10%的肌纤维缩短产生28.7%的肌节缩短)。对分离的轴下肌隔进行偏振光和微分干涉对比显微镜观察发现,轴下肌节中的胶原纤维取向主要是中外侧的。中外侧胶原纤维取向,再加上我们发现轴下肌隔在游泳时背腹向延长,这表明六鳃鳗轴下肌隔的一个可能功能是通过减少肌节的中外侧膨出并将膨出重新导向背腹方向来增加肌纤维的应变放大。

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