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Bite Force in the Extant Coelacanth Latimeria: The Role of the Intracranial Joint and the Basicranial Muscle

机译:现有腔棘鱼的咬合力:颅内关节和基层肌肉的作用。

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摘要

The terrestrialization process involved dramatic changes in the cranial anatomy of vertebrates. The braincase, which was initially divided into two portions by the intracranial joint in sarcopterygian fishes, became consolidated into a single unit in tetrapods and lungfishes [1-3]. The coelacanth Latimeria is the only extant vertebrate that retains an intracranial joint, which is associated with a unique paired muscle: the basicranial muscle. The intracranial joint has long been thought to be involved in suction feeding by allowing an extensive elevation of the anterior portion of the skull, followed by its rapid depression driven by the basicranial muscle [4-7]. However, we recently challenged this hypothesis [8, 9], and the role of the basicranial muscle with respect to the intracranial joint thus remains unclear. Using 3D biomechanical modeling, we show here that the basicranial muscle and the intracranial joint are involved in biting force generation. By flexing the anterior portion of the skull at the level of the intracranial joint, the basicranial muscle increases the overall bite force. This likely allows Latimeria to feed on a broad range of preys [10, 11] and coelacanths to colonize a wide range of environments during their evolution [4]. The variation in the morphology of the intracranial joint observed in Devonian lobe-finned fishes would have impacted to various degrees their biting performance and might have permitted feeding specializations despite the stability in their lower jaw morphology [12].
机译:陆地化过程涉及脊椎动物的颅骨解剖学的巨大变化。脑箱最初在翼龙目鱼类中被颅内关节分为两部分,后来在四足动物和肺鱼中被整合为一个单元[1-3]。腔棘鱼Latimeria是唯一保留颅内关节的现存脊椎动物,该颅内关节与独特的成对肌肉相关:基层肌肉。长期以来,人们一直认为颅内关节参与了吸食,它允许颅骨的前部大量抬高,然后由基础颅骨肌肉驱动其快速下陷[4-7]。然而,我们最近对这一假说提出了质疑[8,9],因此尚不清楚基础颅内肌肉在颅内关节中的作用。使用3D生物力学建模,我们在这里显示了基本的颅骨肌肉和颅内关节参与了咬力的产生。通过使颅骨的前部在颅内关节处弯曲,基础颅骨肌肉会增加总体咬合力。这有可能使Latimeria捕食种类繁多的猎物[10,11]和腔棘鱼在其进化过程中定居在各种环境中[4]。在泥盆纪鱼鳍鱼中观察到的颅内关节形态变化会在不同程度上影响其咬食性能,尽管其下颌形态稳定,但可能允许进食专长[12]。

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