Sharpening our understanding of saber-tooth biomechanics

IF 2.1 4区 医学 Q2 ANATOMY & MORPHOLOGY
Tahlia Pollock, Philip S. L. Anderson
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引用次数: 0

Abstract

Saber-teeth are a striking example of convergent evolution in vertebrate predators, having evolved multiple times in mammals and their early ancestors. While there is broad consensus that saber-toothed taxa employed a distinct biting strategy compared to conical-toothed carnivores, like the lion, the precise mechanics and variability of this bite remain debated. In this review, we integrate current knowledge of pointed tooth mechanics and puncture mechanics to explore predatory function, focusing on the canine shear-bite hypothesis. We quantify the key morphological characteristics of saber-teeth–elongation, slenderness, curvature, sharpness, and cross-sectional shape in a sample of saber-and conical-toothed taxa. Using the morphological diversity observed and insights from experimental studies, we examine the capacity of saber-teeth to perform the canine shear-bite, contrasting them with the clamp-and-hold bite of extant carnivores with conical canines. Our findings indicate that the morphological characteristics associated with extreme saber-tooth forms, as seen in Smilodon, suggest the prioritization of deeper puncture and slicing actions and limiting of lateral loads, favorable for a canine shear-bite. However, we also demonstrate that these morphological characteristics exist on a continuum accross saber-toothed taxa suggesting greater functional diversity beyond the shear-bite versus clamp-and-hold bite dichotomy. While this study refines our understanding of saber-tooth function, key gaps remain, particularly regarding the role of cross-sectional shape, curvature, and serrations in puncture mechanics.

Abstract Image

加深了我们对剑齿生物力学的理解。
剑齿是脊椎动物捕食者趋同进化的一个显著例子,在哺乳动物及其早期祖先身上进化了多次。虽然人们普遍认为,与狮子等锥形齿食肉动物相比,剑齿类动物采用了独特的咬伤策略,但这种咬伤的精确机制和可变性仍存在争议。在这篇综述中,我们结合现有的尖齿力学和穿刺力学来探索掠食性功能,重点是犬科动物的剪切咬合假说。我们量化了剑齿和圆锥齿分类群样本的剑齿伸长、长细度、曲率、锐度和横截面形状的关键形态学特征。利用观察到的形态多样性和实验研究的见解,我们研究了剑齿进行犬科动物剪切咬的能力,并将它们与现存的具有锥形犬科动物的夹紧咬合进行了对比。我们的研究结果表明,与剑齿虎极端剑齿形式相关的形态学特征表明,更深层的穿刺和切片动作优先,以及限制侧向载荷,有利于犬类剪切咬伤。然而,我们也证明了这些形态特征在剑齿类群中是连续存在的,这表明在剪切咬和夹紧咬的二元分类之外,剑齿类群的功能多样性更大。虽然这项研究完善了我们对剑齿功能的理解,但关键的差距仍然存在,特别是关于横截面形状,曲率和锯齿在穿刺力学中的作用。
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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
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