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首页> 外文期刊>The Journal of Experimental Biology >PECTORAL FIN LOCOMOTION IN THE STRIPED SURFPERCH .1. KINEMATIC EFFECTS OF SWIMMING SPEED AND BODY SIZE
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PECTORAL FIN LOCOMOTION IN THE STRIPED SURFPERCH .1. KINEMATIC EFFECTS OF SWIMMING SPEED AND BODY SIZE

机译:条纹冲浪中的上鳍运动。1。游泳速度和身体尺寸的运动效应

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Swimming trials at increasing velocity were used to determine the effects of steady swimming speed on pectoral fin kinematics for an ontogenetic series of striped surfperch Embiotoca lateralis, ranging from 6 to 23 cm in standard length (SL), The fin stroke cycle consisted of a propulsive period, the duration of fin abduction and adduction, and a 'refractory' period, during which the fin remained adducted against the body, Pectoral fin-beat frequency (f(p)) measured as the inverse of the entire stride period, as in past studies, increased curvilinearly with speed. Frequency, calculated as the reciprocal of the propulsive period alone, increased linearly with speed, as shown previously for tail-beat frequency of fishes employing axial undulation. Fin-beat amplitude, measured as the vertical excursion of the pectoral fin tip during abduction, increased over a limited range of low speeds before reaching a plateau at 0.35-0.40 SL. Pectoral fin locomotion was supplemented by intermittent caudal fin undulation as swimming speed increased, At the pectoral-caudal gait transition speed (U-p-c), frequency and amplitude attained maxima, suggesting that the fin musculature reached a physiological limit. The effects of body size on swimming kinematics differed according to the method used for expressing speed, At a given absolute speed, small fish used higher stride frequencies and increased frequency at a faster rate than large fish, In contrast, the relationship between f(p) and length-specific speed (SL s(-1)) had a greater slope for large fish and crossed that for small fish at high speeds. We recommend that comparisons across size be made using speeds expressed as a percentage of U-p-c, at which kinematic variables influencing thrust are size-independent. [References: 39]
机译:以增加的速度进行游泳试验来确定稳定游泳速度对一系列条纹状冲浪者Embiotocalateralis的个体发育系列的胸鳍运动学的影响,标准长度(SL)范围为6至23 cm。周期,鳍的外展和内收的持续时间,以及“不应期”,在此期间,鳍保持对身体的内向,胸鳍搏动频率(f(p))是整个跨步周期的倒数,如过去的研究随着速度呈曲线增加。频率(仅作为推进期的倒数计算)随速度线性增加,如先前使用轴向起伏的鱼的尾拍频率所示。鳍搏动幅度(以外展期间胸鳍尖端的垂直偏移测量)在有限的低速范围内增加,然后在0.35-0.40 SL达到平稳。随着游泳速度的增加,胸鳍的运动得到了间歇性尾鳍的波动的补充。在胸-尾步态转换速度(U-p-c)下,频率和幅度达到最大值,表明鳍的肌肉组织达到了生理极限。身体大小对游泳运动学的影响根据用于表示速度的方法而有所不同。在给定的绝对速度下,小鱼比大鱼使用更高的步幅频率和更快的频率,相反,f(p )和特定长度的速度(SL s(-1))对于大型鱼具有较大的斜率,而对于小型鱼则具有较高的斜率。我们建议使用表示为U-p-c的百分比的速度进行跨尺寸的比较,在该速度下,影响推力的运动学变量与尺寸无关。 [参考:39]

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