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斑胸草雀(Taeniopygia guttata)翼展变化和翼不对称的能量消耗。

The energetic cost of variations in wing span and wing asymmetry in the zebra finch Taeniopygia guttata.

作者信息

Hambly C, Harper E J, Speakman J R

机构信息

Aberdeen Centre for Energy Regulation and Obesity, School of Biological Sciences, University of Aberdeen, Aberdeen AB24 2TZ, Scotland, UK.

出版信息

J Exp Biol. 2004 Oct;207(Pt 22):3977-84. doi: 10.1242/jeb.01235.

Abstract

Asymmetry is a difference in the sizes of bilaterally paired structures. Wing asymmetry may have an effect on the kinematics of flight, with knock-on effects for the energetic cost of flying. In this study the 13C-labelled bicarbonate technique was used to measure the energy expended during the flight of zebra finches Taeniopygia guttata, prior to and after experimental manipulation to generate asymmetry and a change in wing span by trimming the primary feathers. In addition, simultaneous high-speed video footage enabled differences in flight kinematics such as flight speed, wing amplitude, up- and downstroke duration and wing beat frequency to be examined. In 10 individuals, the primary feathers on the right wing were trimmed first, by 0.5 cm, and then by an additional 0.5 cm in six of these individuals. In a separate 'control' group (N=7), approximately 0.25 cm was trimmed off the primary feathers of both wings, to produce the same reduction in wing span as 0.5 cm trimmed from one wing, while maintaining symmetry. When birds were manipulated to become asymmetric they maintained flight speed. They also increased the left wing amplitude and decreased the right up- and downstroke durations to counteract the changes in wing shape, which meant that they had an increase in wing beat frequency. When the wing area was reduced while maintaining symmetry, birds flew with slower flight speed. In this case wing amplitude did not change and wing upstroke slightly decreased, causing an increased wing beat frequency. The mean flight cost in the pre-manipulated birds was 1.90+/-0.1 W. There was a slight increase in flight cost with both of the asymmetry manipulations (0.5 cm, increase of 0.04 W; 1.0 cm, increase of 0.12 W), neither of which reached statistical significance. There was, however, a significantly increased flight cost when the wing span was reduced without causing asymmetry (increase of 0.45 W; paired t-test T=2.3, P=0.03).

摘要

不对称是指双侧配对结构在大小上的差异。翅膀不对称可能会影响飞行的运动学,进而对飞行的能量消耗产生连锁效应。在本研究中,采用13C标记的碳酸氢盐技术来测量斑胸草雀(Taeniopygia guttata)在实验操作前后飞行过程中消耗的能量。实验操作包括通过修剪初级飞羽来制造不对称以及改变翼展。此外,同步高速视频记录能够检测飞行运动学方面的差异,如飞行速度、翅膀振幅、上下拍动持续时间以及翅膀拍击频率。在10只个体中,先将右翼的初级飞羽修剪0.5厘米,然后其中6只个体再额外修剪0.5厘米。在一个单独的“对照组”(N = 7)中,将两翼的初级飞羽各修剪约0.25厘米,以使翼展减少量与从单翼修剪0.

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