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首页> 外文期刊>The Journal of Experimental Biology >PECTORAL FIN LOCOMOTION IN THE STRIPED SURFPERCH .2. SCALING SWIMMING KINEMATICS AND PERFORMANCE AT A GAIT TRANSITION
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PECTORAL FIN LOCOMOTION IN THE STRIPED SURFPERCH .2. SCALING SWIMMING KINEMATICS AND PERFORMANCE AT A GAIT TRANSITION

机译:条纹冲浪中的上鳍运动。.2。在步态转换时缩放游泳运动学和性能

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In this study, we report the first allometric equations relating gait parameters and swimming speed to body size for fish employing pectoral fin locomotion, Comparisons of locomotor kinematics and performance among striped surfperch (Teleostei: Embiotocidae) are made at the pectoral-caudal gait transition speed (U-p-c). U-p-c is considered to elicit physiologically equivalent levels of exercise in animals varying over 100-fold in body mass (M(b)) by virtue of dynamically similar pectoral fin movements (constant duty factor, length-specific stride length and fin-beat amplitude) and size-independent propulsive efficiency, At U-p-c, pectoral fin-beat frequency scales in proportion to M(b)(-0.12+/-0.03), a size-dependence consistent with that observed for stride frequency in fishes swimming by axial undulatory propulsion and in many running tetrapods, It is proposed that the similarity in the scaling of frequency in these vertebrate groups reflects an underlying similarity in the allometry of the maximal velocity of muscle shortening, Absolute U-p-c (ms(-1)) generally increases with body size, but the fastest speeds are not exhibited by the largest animals, A pattern of declining performance in fish 23 cm in standard length and longer may be related to their disproportionately small fin areas and aspect ratios, The pronounced negative allometry of U-p-c expressed as standard body lengths per second indicates that a given length-specific speed does not induce comparable levels of activity in large and small fish, Thus, normalization of swimming speed to body length may not be a sufficient correction for kinematic comparisons across size. [References: 81]
机译:在这项研究中,我们报告了使用胸鳍运动将鱼类的步态参数和游泳速度与体型相关的第一个异速方程,在胸尾步态转换速度下,条纹冲浪者的运动运动学和运动性能比较(Teleostei:Embiotocidae) (Upc)。 Upc被认为可以通过动态相似的胸鳍运动(恒定占空比,特定长度的步幅和鳍搏动幅度)在动物体内产生相当于运动100倍(M(b))的生理等效运动水平。与大小无关的推进效率,在Upc,胸鳍节拍频率与M(b)(-0.12 +/- 0.03)成比例,其大小相关性与通过轴向波动推动的游泳步幅频率观察到的一致在许多奔跑的四足动物中,建议在这些脊椎动物组中频率缩放的相似性反映出肌肉缩短最大速度的异速测量法中的潜在相似性,绝对Upc(ms(-1))通常随身体大小而增加,但最大的动物并没有表现出最快的速度。在标准长度23厘米及更长的鱼中,鱼的性能下降模式可能与它们不成比例的小鳍面积和长宽比有关。 atios,以每秒标准体长表示的Upc的明显负向异形体表明,给定的特定长度的速度不会在大小鱼中引起相当水平的活动,因此,将泳速标准化为体长可能还不够跨尺寸运动学比较的校正。 [参考:81]

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