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首页> 外文期刊>The Journal of Experimental Biology >Light level impacts locomotor biomechanics in a secondarily diurnal gecko, Rhoptropus afer
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Light level impacts locomotor biomechanics in a secondarily diurnal gecko, Rhoptropus afer

机译:光照水平影响继发昼夜壁虎Rhoptropus afer的运动生物力学

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Locomotion through complex habitats relies on the continuous feedback from a number of sensory systems, including vision. Animals face a visual trade-off between acuity and light sensitivity that depends on light levels, which will dramatically impact the ability to process information and move quickly through a habitat, making ambient illumination an incredibly important ecological factor. Despite this, there is a paucity of data examining ambient light in the context of locomotor dynamics. There have been several independent transitions from the nocturnal ancestor to a diurnal activity pattern among geckos. We examined how ambient light level impacted the locomotor performance and high-speed three-dimensional kinematics of a secondarily diurnal, and cursorial, gecko (Rhoptropus afer) from Namibia. This species is active under foggy and sunny conditions, indicating that a range of ambient light conditions is experienced naturally. Locomotor speed was lowest in the 'no-light' condition compared with all other light intensities, occurring via a combination of shorter stride length and lower stride frequency. Additionally, the centre of mass was significantly lower, and the geckos were more sprawled, in the no-light condition relative to all of the higher light intensities. Locomotor behaviour is clearly sub-optimal under lower light conditions, suggesting that ecological conditions, such as very dense fog, might preclude the ability to run quickly during predator-prey interactions. The impact of ambient light on fitness should be explored further, especially in those groups that exhibit multiple transitions between diel activity patterns.
机译:通过复杂栖息地的运动依赖于包括视觉在内的许多感觉系统的持续反馈。动物在视敏度和光敏度之间要在视觉上进行权衡,光敏度取决于光的强度,这将极大地影响处理信息和在栖息地中快速移动的能力,从而使环境照明成为极为重要的生态因素。尽管如此,在运动动力学的背景下,很少有数据检查环境光。从夜间祖先到壁虎之间有数个独立的过渡过程。我们研究了环境光水平如何影响纳米比亚次日昼夜游标壁虎(Rhoptropus afer)的运动性能和高速三维运动学。该物种在有雾和阳光充足的条件下活跃,表明自然会经历各种环境光条件。与所有其他光强度相比,运动速度在“无光照”条件下最低,这是由较短的步幅长度和较低的步幅频率共同导致的。另外,相对于所有较高的光强度,在无光照条件下,质心显着降低,壁虎更散开。在较低的光照条件下,运动行为显然是次优的,这表明生态条件(例如浓雾)可能会阻止在捕食者与猎物相互作用期间快速运行的能力。应该进一步探索环境光对健身的影响,特别是在diel活动模式之间表现出多次过渡的那些群体中。

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