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首页> 外文期刊>The Journal of Experimental Biology >Locomotor-feeding coupling during prey capture in a lizard (Gerrhosaurus major): effects of prehension mode
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Locomotor-feeding coupling during prey capture in a lizard (Gerrhosaurus major): effects of prehension mode

机译:蜥蜴(大腕龙)捕获猎物期间的自进食耦合:偏好模式的影响

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摘要

In tetrapods, feeding behaviour in general, and prey capture in particular, involves two anatomical systems: the feeding system and the locomotor system. Although the kinematics associated with the movements of each system have been investigated in detail independently, the actual integration between the two systems has received less attention. Recently, the independence of the movements of the jaw and locomotor systems was reported during tongue-based prey capture in an iguanian lizard (Anolis carolinensis), suggesting a decoupling between the two systems. Jaw prehension, on the other hand, can be expected to be dependent on the movements of the locomotor system to a greater degree. To test for the presence of functional coupling and integration between the jaw and locomotor systems, we used the cordyliform lizard Gerrhosaurus major as a model species because it uses both tongue and jaw prehension. Based on a 3-D kinematic analysis of the movements of the jaws, the head, the neck and the forelimbs during the approach and capture of prey, we demonstrate significant correlations between the movements of the trophic and the locomotor systems. However, this integration differs between prehension modes in the degree and the nature of the coupling. In contrast to our expectations and previous data for A. carolinensis, our data indicate a coupling between feeding and locomotor systems during tongue prehension. We suggest that the functional integration between the two systems while using the tongue may be a consequence of the relatively slow nature of tongue prehension in this species.
机译:在四足动物中,一般的进食行为,尤其是捕获猎物涉及两个解剖系统:进食系统和运动系统。尽管已经独立地详细研究了与每个系统的运动相关的运动学,但是两个系统之间的实际集成却很少受到关注。最近,据报道在鬣蜥蜥蜴(Anolis carolinensis)的基于舌头的猎物捕获过程中,下颚和运动系统运动的独立性,表明这两个系统之间存在脱钩。另一方面,可以预料下颌的偏爱在更大程度上取决于运动系统的运动。为了测试颌骨和运动系统之间是否存在功能性耦合和整合,我们使用了虫形蜥蜴Gerrhosaurus major作为模型物种,因为它同时使用了舌头和颌骨。基于对进近和捕获猎物期间颌,头部,颈部和前肢运动的3D运动学分析,我们证明了营养系统和运动系统之间的显着相关性。但是,这种整合方式在耦合模式的程度和本质上在理解模式之间是不同的。与我们的预期和先前对A. carolinensis的数据相反,我们的数据表明在舌头抓握期间进食和运动系统之间存在耦合。我们建议在使用舌头时,两个系统之间的功能整合可能是该物种中舌头握持相对缓慢的结果。

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