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The Effects of Biting and Pulling on the Forces Generated during Feeding in the Komodo Dragon (Varanus komodoensis)

机译:咬和拉对科莫多巨蜥(Varanus komodoensis)进食时产生的力的影响

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摘要

In addition to biting, it has been speculated that the forces resulting from pulling on food items may also contribute to feeding success in carnivorous vertebrates. We present an in vivo analysis of both bite and pulling forces in Varanus komodoensis, the Komodo dragon, to determine how they contribute to feeding behavior. Observations of cranial modeling and behavior suggest that V. komodoensis feeds using bite force supplemented by pulling in the caudal/ventrocaudal direction. We tested these observations using force gauges/transducers to measure biting and pulling forces. Maximum bite force correlates with both body mass and total body length, likely due to increased muscle mass. Individuals showed consistent behaviors when biting, including the typical medial-caudal head rotation. Pull force correlates best with total body length, longer limbs and larger postcranial motions. None of these forces correlated well with head dimensions. When pulling, V. komodoensis use neck and limb movements that are associated with increased caudal and ventral oriented force. Measured bite force in Varanus komodoensis is similar to several previous estimations based on 3D models, but is low for its body mass relative to other vertebrates. Pull force, especially in the ventrocaudal direction, would allow individuals to hunt and deflesh with high success without the need of strong jaw adductors. In future studies, pull forces need to be considered for a complete understanding of vertebrate carnivore feeding dynamics.
机译:除咬伤外,据推测,拉动食物所产生的作用力也可能有助于食肉脊椎动物的饲养。我们提出了对科莫多巨蜥Varanus komodoensis的叮咬和拉力的体内分析,以确定它们如何对进食行为做出贡献。对颅骨模型和行为的观察表明,Komodoensis的饲料使用咬合力,并通过沿尾/背尾方向拉动来补充。我们使用测力计/传感器测试了这些观察结果,以测量咬力和拉力。最大的咬合力与体重和总身长相关,这可能是由于肌肉质量增加所致。咬人时表现出一致的行为,包括典型的中尾头部旋转。拉力与全身长度,较长的肢体和较大的颅后运动最相关。这些力都没有与头部尺寸很好地相关。拉动时,科莫多犬V. Komodoensis使用颈部和四肢运动,这些运动与增加的尾和腹侧力有关。在Komodoensis中,测得的咬合力与之前基于3D模型的估计相似,但相对于其他脊椎动物,其体重较低。拉力,尤其是在腹侧方向上的拉力,可使个人无需坚强的下颌内收肌就能成功地进行狩猎和脱身。在以后的研究中,需要考虑拉力来全面了解脊椎动物的食肉动物的进食动力学。

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