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首页> 外文期刊>The Journal of Experimental Biology >Flexibility in locomotor-feeding integration during prey capture in varanid lizards: effects of prey size and velocity
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Flexibility in locomotor-feeding integration during prey capture in varanid lizards: effects of prey size and velocity

机译:varanid蜥蜴捕获猎物时运动自给整合的灵活性:猎物大小和速度的影响

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Feeding movements are adjusted in response to food properties, and this flexibility is essential for omnivorous predators as food properties vary routinely. In most lizards, prey capture is no longer considered to solely rely on the movements of the feeding structures (jaws, hyolingual apparatus) but instead is understood to require the integration of the feeding system with the locomotor system (i.e. coordination of movements). Here, we investigated flexibility in the coordination pattern between jaw, neck and forelimb movements in omnivorous varanid lizards feeding on four prey types varying in length and mobility: grasshoppers, live newborn mice, adult mice and dead adult mice. We tested for bivariate correlations between 3D locomotor and feeding kinematics, and compared the jaw–neck–forelimb coordination patterns across prey types. Our results reveal that locomotor–feeding integration is essential for the capture of evasive prey, and that different jaw–neck–forelimb coordination patterns are used to capture different prey types. Jaw–neck–forelimb coordination is indeed significantly altered by the length and speed of the prey, indicating that a similar coordination pattern can be finely tuned in response to prey stimuli. These results suggest feed-forward as well as feed-back modulation of the control of locomotor–feeding integration. As varanids are considered to be specialized in the capture of evasive prey (although they retain their ability to feed on a wide variety of prey items), flexibility in locomotor–feeding integration in response to prey mobility is proposed to be a key component in their dietary specialization.
机译:根据食物特性调整进食运动,并且这种灵活性对于杂食性捕食者至关重要,因为食物特性会定期变化。在大多数蜥蜴中,猎物的捕获不再被认为仅依赖于进食结构(颚,口舌设备)的运动,而是被理解为需要将进食系统与运动系统集成在一起(即协调运动)。在这里,我们研究了以长度和活动度不同的四种猎物为食的杂食性瓦拉尼蜥蜴的下颌,颈部和前肢运动之间的协调模式的灵活性:蚱,、活体新生小鼠,成年小鼠和成年死亡小鼠。我们测试了3D运动和进食运动之间的双变量相关性,并比较了不同猎物类型的下颚-颈部-前肢协调模式。我们的结果表明,运动-进食的整合对于捕获逃避的猎物至关重要,并且使用不同的下颚-颈部-前肢协调模式来捕获不同的猎物类型。颌骨-颈部-前肢的协调确实会因猎物的长度和速度而发生显着变化,这表明可以根据猎物的刺激来细调类似的协调模式。这些结果表明运动控制-进给集成控制的前馈和反馈调制。由于varanids被认为专门捕获逃避的猎物(尽管它们保留了以各种猎物为食的能力),因此根据猎物的移动性,运动自给自足整合的灵活性被认为是它们的关键组成部分。饮食专业化。

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