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Feeding mechanics and bite force modelling of the skull of Dunkleosteus terrelli, an ancient apex predator

机译:远古捕食者Dunkleosteus terrelli头骨的进食力学和咬力建模

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摘要

Placoderms are a diverse group of armoured fishes that dominated the aquatic ecosystems of the Devonian Period, 415–360 million years ago. The bladed jaws of predators such as Dunkleosteus suggest that these animals were the first vertebrates to use rapid mouth opening and a powerful bite to capture and fragment evasive prey items prior to ingestion. Here, we develop a biomechanical model of force and motion during feeding in Dunkleosteus terrelli that reveals a highly kinetic skull driven by a unique four-bar linkage mechanism. The linkage system has a high-speed transmission for jaw opening, producing a rapid expansion phase similar to modern fishes that use suction during prey capture. Jaw closing muscles power an extraordinarily strong bite, with an estimated maximal bite force of over 4400 N at the jaw tip and more than 5300 N at the rear dental plates, for a large individual (6 m in total length). This bite force capability is the greatest of all living or fossil fishes and is among the most powerful bites in animals.
机译:斑纹鱼类是在415-3.6亿年前的泥盆纪时期水生生态系统中占主导地位的各种装甲鱼类。食肉动物(如Dunkleosteus)的锯齿状颚骨表明,这些动物是最早在吞食前使用快速张口和强有力的咬合来捕获和破碎逃避的猎物的脊椎动物。在这里,我们开发了在Dunkleosteus terrelli进食期间的力和运动的生物力学模型,该模型揭示了由独特的四连杆机构驱动的高动力学头骨。连杆系统具有用于张开颚的高速传动装置,可产生快速扩张阶段,类似于在捕获猎物时使用吸力的现代鱼类。颌骨闭合的肌肉为特别强的咬合提供了强大的咬合力,对于一个大个体(总长度为6μm),估计的最大咬合力在颚尖处超过4400 N,在后牙板超过5300N。这种咬力能力是所有活鱼或化石鱼中最大的,并且是动物中最有力的咬伤之一。

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