首页> 外文期刊>The Journal of Experimental Biology >X-ray motion analysis of the vertebral column during the startle response in striped bass, Morone saxatilis
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X-ray motion analysis of the vertebral column during the startle response in striped bass, Morone saxatilis

机译:条纹鲈惊恐反应期间椎骨的X射线运动分析

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摘要

Whole-body stiffness has a substantial impact on propulsive wave speed during axial undulatory locomotion in fishes. The connective tissues of the vertebral column may contribute to body stiffness, but without mechanical and kinematic analysis it is unclear whether the in vivo range of motion of intervertebral joints (IVJs) is great enough to stress IVJ tissues, thus generating stiffness. The present study used 2D videoradiography and 3D X-ray reconstruction of moving morphology (XROMM) to quantify vertebral kinematics during the startle response in striped bass (Morone saxatilis). X-ray video revealed two distinct patterns of bending: pattern I begins in the abdominal region and then proceeds to maximum IVJ angles in the caudal region, whereas pattern II begins in the cervical region and proceeds to maximum IVJ angles in the abdominal and then the caudal joints. In pattern II bends, the cervical joints exhibit a greater in vivo range of motion than previously reported in other species. XROMM analysis of caudal IVJs suggests primarily lateral bending: mean axial and dorsoventral rotations were less than 2 deg and inconsistent across 51 sequences analyzed from five individuals, whereas mean maximum lateral bending angles were 10.4 +/- 3.57. deg. These angles, combined with previous investigations of mechanical properties, reveal that the maximum angles all occur within the neutral zone of bending, indicating that little stress is experienced about the joint. This suggests that the IVJs of striped bass are quite compliant and likely do not contribute significantly to whole-body stiffness or elastic recoil during swimming in vivo.
机译:在鱼类的轴向波动运动中,全身刚度对推进波速度有很大影响。脊柱的结缔组织可能会导致身体僵硬,但如果没有机械和运动学分析,尚不清楚椎间关节(IVJs)的体内运动范围是否足以承受IVJ组织压力,从而产生僵硬。本研究使用运动形态学(XROMM)的2D放射线照相术和3D X射线重建来量化条纹鲈鱼(Morone saxatilis)的惊吓反应期间的椎体运动学。 X射线视频显示了两种截然不同的弯曲模式:模式I从腹部开始,然后在尾巴区域中达到最大IVJ角度,而模式II从颈椎区域开始,并且在腹部中逐渐达到最大IVJ角度,然后是尾关节。在II型弯曲中,子宫颈关节的体内运动范围比以前在其他物种中报道的要大。对尾静脉IVJ的XROMM分析显示主要是侧弯:平均轴向和背腹旋转小于2度,并且在来自五个个体的51个序列中不一致,而平均最大侧弯角为10.4 +/- 3.57。度这些角度与先前对机械性能的研究相结合,发现最大角度均出现在弯曲的中性区内,这表明在接头处几乎没有应力。这表明条纹鲈鱼的IVJ非常顺从,在体内游泳过程中可能不会显着增加全身僵硬或弹性后坐力。

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