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Scaling of bite force in the blacktip shark Carcharhinus limbatus

机译:黑鳍鲨Carcharhinus limbatus中的咬力缩放

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Although bite force is a frequently studied performance measure of feeding ecology, changes in bite force over ontogeny have rarely been investigated. Biting by the blacktip shark Carcharhinus limbatus was theoretically modeled over ontogeny to investigate the scaling of bite force, the morphological basis of the observed scaling relationship, the ecological consequences of ontogenetic changes in performance, and whether cranial morphometrics can be used as an accurate proxy for bite force. Theoretical bite force, which was positively allometric with respect to total length (TL), ranged from 32 N (61 cm TL) to 423 N (152 cm TL) at the anterior tips of the jaws and from 107 (61 cm TL) to 1083 N (152 cm TL) at the posterior teeth. This observation is attributed to positive allometry in the mechanical advantage of the jaw-adducting mechanism and the cross-sectional area of all four jaw-adducting muscles. Theoretical bite force was accurately predicted by cranial morphometrics including prebranchial length and head width as well. Although positive allometry of bite force in C. limbatus would seem to indicate an ecological necessity for this phenomenon, dietary analyses do not necessarily indicate any ontogenetic shift in prey types requiring larger bite forces. The positively allometric increase in theoretical bite force may be associated with numerous other selective pressures including maintenance of an apical position within the ecosystem.
机译:尽管咬力是喂养生态学的一项经常被研究的性能指标,但是咬痕力随个体发育的变化很少被研究。理论上在个体发育上对黑鳍鲨Carcharhinus limbatus的咬合进行了建模,以研究咬合力的尺度,所观察到的尺度关系的形态学基础,个体发育性能的生态后果以及颅骨形态计量学是否可以用作以下方面的精确替代物:咬力。理论咬合力相对于总长度(TL)呈正等速分布,在颚的前部尖端范围从32 N(61 cm TL)到423 N(152 cm TL),从107(61 cm TL)到后牙1083 N(152 cm TL)。该观察结果归因于积极的异形测量法在下颌内收肌机制的机械优势以及所有四类上颌内muscle肌的横截面积方面。理论上的咬合力可以通过颅骨形态测量法准确地预测,包括前支气管长度和头部宽度。尽管在角缘卷柏中咬力的正向异形似乎表明该现象的生态学必要性,但饮食分析并不一定表明需要更大咬力的猎物类型中发生了任何遗传变化。理论咬合力的正向异速增长可能与许多其他选择性压力相关,包括维持生态系统内的根尖位置。

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