Bergmann Phillip, Irschick Duncan J
Department of Ecology and Evolutionary Biology, Tulane University, New Orleans, 70118, USA.
J Exp Biol. 2006 Apr;209(Pt 8):1404-12. doi: 10.1242/jeb.02155.
We studied performance and kinematics of the diurnal gekkonid lizard Phelsuma dubia while running vertically on a smooth surface at different temperatures. Trials were conducted at 5 degrees C intervals from 15 degrees C to 35 degrees C. High-speed video recordings and digitization were used to obtain measures of instantaneous velocity, acceleration, deceleration and mass-specific power output and maximal values for each were taken as performance measures. Kinematic variables were also obtained from high-speed video recordings and included stride length and duration, step (stance phase) length and duration, and duty factor. Maximal instantaneous velocity, acceleration and deceleration increased by a factor of approximately 1.7 between 15 degrees C and 25 degrees C, and less so (approximately 1.2x) between 25 degrees C and 35 degrees C. Mass-specific power output was more temperature-sensitive, increasing 2.5x up to 25 degrees C and a further 1.4x above that temperature. Stride length increased 1.5x over the entire temperature interval studied, while stride duration decreased by a factor of 1.9, suggesting that velocity is modulated by changes in both stride length and duration in P. dubia. Duty factor was not significantly influenced by temperature. Stride length was the only kinematic measure to be influenced by stride number, with second steps from a standstill being longer than first steps. We discuss the significance of velocity and acceleration being affected in a similar manner by temperature, and that speed is modulated by both changes in stride length and duration.
我们研究了昼行性壁虎杜氏残趾虎(Phelsuma dubia)在不同温度下于光滑表面垂直奔跑时的性能和运动学特征。试验在15℃至35℃之间以5℃的间隔进行。通过高速视频记录和数字化处理来获取瞬时速度、加速度、减速度和质量比功率输出的测量值,并将每个参数的最大值作为性能指标。运动学变量也从高速视频记录中获取,包括步长和步幅持续时间、步(支撑相)长和步幅持续时间以及占空比。在15℃至25℃之间,最大瞬时速度、加速度和减速度增加了约1.7倍,而在25℃至35℃之间增加幅度较小(约1.2倍)。质量比功率输出对温度更为敏感,在25℃时增加2.5倍,高于该温度时再增加1.4倍。在所研究的整个温度区间内,步长增加了1.5倍,而步幅持续时间减少了1.9倍,这表明杜氏残趾虎的速度是通过步长和步幅持续时间的变化来调节的。占空比不受温度的显著影响。步长是唯一受步数影响的运动学指标,从静止状态开始的第二步比第一步长。我们讨论了速度和加速度受温度影响方式相似的意义,以及速度是如何通过步长和步幅持续时间的变化来调节的。