首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >A cladistic and comparative analysis of kinematic components of the fast-start of fishes, with a note on body size constraints
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A cladistic and comparative analysis of kinematic components of the fast-start of fishes, with a note on body size constraints

机译:对鱼类快速启动的运动学组成部分进行分类分析和比较分析,并注意体型限制

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摘要

The fast-start is an ecologically relevant behavior pattern in fishes. The present article analyses the distribution of five continuous kinematic traits (latency for response initiation, time to maximum angular velocity, time to maximum displacement velocity, maximum angular velocity, and maximum displacement velocity) in eight of the eleven species described in Eaton (66:65-81, 1977). Phylogenetic generalized least square estimation of ancestor states demonstrated evolutionary changes in maximum angular velocity and maximum displacement velocity, consistent with species differences in the same variables. These changes in maximum velocity are also correlated (phylogenetically independent contrasts) with the mean body sizes of all species, pointing to the possibility that body size was an evolutionary constraint on maximum velocities. The conservation of the other traits suggest that they are mainly constrained by neural control, and a trade-off between neural and body size-constraints is proposed ex hypothesi.
机译:快速启动是鱼类中与生态相关的行为模式。本文分析了伊顿(Eaton)中描述的11个物种中的八个物种中五个连续运动学特征的分布(响应启动潜伏期,最大角速度所需的时间,最大位移速度所需的时间,最大角速度和最大位移速度)(66: 65-81,1977)。系统进化的祖先状态最小二乘估计表明,最大角速度和最大位移速度的演化变化与相同变量中的物种差异一致。最大速度的这些变化也与所有物种的平均体型相关(系统发育上独立的对比),这表明体型是最大速度的进化约束。其他特征的保留表明它们主要受神经控制的约束,并且在假设条件下提出了在神经约束和身体大小约束之间进行权衡的问题。

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