重点是:爪形影响粗糙基材上的摩擦相互作用

IF 1.6 3区 生物学 Q2 ZOOLOGY Zoology Pub Date : 2023-04-01 DOI:10.1016/j.zool.2023.126078
Alexandra M. Pamfilie , Austin M. Garner , Anthony P. Russell , Ali Dhinojwala , Peter H. Niewiarowski
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引用次数: 0

摘要

爪是有缘羊膜的常见解剖特征,有助于实现多种功能,包括捕获猎物、移动和附着。先前对鸟类和非鸟类爬行动物的研究发现,栖息地使用与爪子形态之间存在相关性,这表明爪子形状的变化允许在不同的微栖息地中发挥有效作用。爪形态如何或是否影响附着性能,特别是在与手指其他部位隔离的情况下,很少受到关注。为了研究爪形对摩擦相互作用的影响,我们分离了保存的古巴骑士(Anolis equestris)标本的爪,通过几何形态计量学量化了爪形的变化,并测量了表面粗糙度不同的四种不同基质上的摩擦。我们发现,爪形的多个方面影响摩擦相互作用,但仅限于凹凸大到足以与爪机械联锁的基底。在这种基底上,爪尖的直径是摩擦的最重要预测因素,较窄的爪尖比较宽的爪尖引起更大的摩擦相互作用。我们还发现,爪的曲率、长度和深度会影响摩擦,但这些关系取决于基底的表面粗糙度。我们的研究结果表明,尽管爪形在蜥蜴的有效附着能力中起着关键作用,但其相对重要性取决于基质。描述机械功能和生态功能对于全面理解爪形变化至关重要。
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Get to the point: Claw morphology impacts frictional interactions on rough substrates

Claws are a common anatomical feature among limbed amniotes and contribute to a variety of functions including prey capture, locomotion, and attachment. Previous studies of both avian and non-avian reptiles have found correlations between habitat use and claw morphology, suggesting that variation in claw shape permits effective functioning in different microhabitats. How, or if, claw morphology influences attachment performance, particularly in isolation from the rest of the digit, has received little attention. To examine the effects of claw shape on frictional interactions, we isolated the claws of preserved specimens of Cuban knight anoles (Anolis equestris), quantified variation in claw morphology via geometric morphometrics, and measured friction on four different substrates that varied in surface roughness. We found that multiple aspects of claw shape influence frictional interactions, but only on substrates for which asperities are large enough to permit mechanical interlocking with the claw. On such substrates, the diameter of the claw’s tip is the most important predictor of friction, with narrower claw tips inducing greater frictional interactions than wider ones. We also found that claw curvature, length, and depth influence friction, but that these relationships depend on the substrate’s surface roughness. Our findings suggest that although claw shape plays a critical role in the effective clinging ability of lizards, its relative importance is dependent upon the substrate. Description of mechanical function, as well as ecological function, is critical for a holistic understanding of claw shape variation.

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来源期刊
Zoology
Zoology 生物-动物学
CiteScore
3.90
自引率
0.00%
发文量
37
审稿时长
70 days
期刊介绍: Zoology is a journal devoted to experimental and comparative animal science. It presents a common forum for all scientists who take an explicitly organism oriented and integrative approach to the study of animal form, function, development and evolution. The journal invites papers that take a comparative or experimental approach to behavior and neurobiology, functional morphology, evolution and development, ecological physiology, and cell biology. Due to the increasing realization that animals exist only within a partnership with symbionts, Zoology encourages submissions of papers focused on the analysis of holobionts or metaorganisms as associations of the macroscopic host in synergistic interdependence with numerous microbial and eukaryotic species. The editors and the editorial board are committed to presenting science at its best. The editorial team is regularly adjusting editorial practice to the ever changing field of animal biology.
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