Département d'Ecologie et de Gestion de la Biodiversité, Museum National d'Histoire Naturelle, 57 rue Cuvier, Case postale 55, 75231, Paris Cedex 5, France.
Arch Oral Biol. 2009 Aug;54(8):772-82. doi: 10.1016/j.archoralbio.2009.05.002. Epub 2009 May 30.
Uromastyx lizards are basal agamid lizards that are characterized by an herbivorous diet and a robust akinetic skull. Recently, lizards in general, and Uromastyx lizards in particular, have become a model system for mechanical analyses of skull function. However, quantitative models of skull function are hampered by a lack of knowledge on the activation patterns of jaw and hyolingual muscles. Moreover, in vivo bite force or strain data, essential to test the validity of these modelling efforts, are lacking. Here we provide data on the muscle activation patterns and bite forces in the lizard Uromastyx acanthinurus. Our results show that muscle recruitment patterns during intra-oral transport and swallowing, are qualitatively similar to those observed for other lizards. Whereas during the slow opening phase the hyolingual muscles show a pronounced activity, the fast opening phase is characterised by strong activity in the jaw opener and the tongue and hyoid retractors. During fast closing the jaw closers become active and at the end of this phase, the jaw closers become silent momentarily before showing a renewed and strong activity during the slow closing/power stroke phase. Measurements of bite forces indicate bite force levels similar to those of agamid lizards of similar size, and similar to those predicted based on recent modelling efforts. These data should allow further refinement and validation of recently published models of biting in lizards of the genus Uromastyx.
岩蜥是基础鬣蜥目蜥蜴,其特征是食草性饮食和强健的无关节头骨。最近,蜥蜴一般,特别是岩蜥,已成为用于头骨功能机械分析的模型系统。然而,头骨功能的定量模型受到对头骨和舌下肌肉激活模式缺乏了解的阻碍。此外,缺乏对这些建模工作进行测试的关键的活体咬合力或应变数据。在这里,我们提供蜥蜴 Uromastyx acanthinurus 的肌肉激活模式和咬合力数据。我们的结果表明,在口腔内运输和吞咽过程中,肌肉募集模式与其他蜥蜴观察到的模式定性相似。虽然在缓慢张开阶段,舌下肌肉表现出明显的活动,但在快速张开阶段,颚开口肌和舌和舌骨牵引肌的活动很强。在快速关闭过程中,颚关闭肌变得活跃,在这个阶段结束时,颚关闭肌会暂时停止活动,然后在缓慢关闭/动力冲程阶段重新表现出强烈的活动。咬合力测量表明,咬合力水平与体型相似的鬣蜥目蜥蜴相似,并且与基于最近建模工作预测的水平相似。这些数据应该允许对最近发表的 Uromastyx 属蜥蜴的咬合力模型进行进一步的改进和验证。