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首页> 外文期刊>Journal of experimental zoology, Part A. Comparative experimental biology >Comparative analysis of methods for determining bite force in the spiny dogfish Squalus acanthias.
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Comparative analysis of methods for determining bite force in the spiny dogfish Squalus acanthias.

机译:比较确定刺棘鱼棘齿棘鱼咬力方法的分析。

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摘要

Many studies have identified relationships between the forces generated by the cranial musculature during feeding and cranial design. Particularly important to understanding the diversity of cranial form amongst vertebrates is knowledge of the generated magnitudes of bite force because of its use as a measure of ecological performance. In order to determine an accurate morphological proxy for bite force in elasmobranchs, theoretical force generation by the quadratomandibularis muscle of the spiny dogfish Squalus acanthias was modeled using a variety of morphological techniques, and lever-ratio analyses were used to determine resultant bite forces. These measures were compared to in vivo bite force measurements obtained with a pressure transducer during tetanic stimulation experiments of the quadratomandibularis. Although no differences were found between the theoretical and in vivo bite forces measured, modeling analyses indicate that the quadratomandibularis muscle should be divided into its constituent divisions and digital images of the cross-sections of these divisions should be used to estimate cross-sectional area when calculating theoretical force production. From all analyses the maximum bite force measured was 19.57 N. This relatively low magnitude of bite force is discussed with respect to the ecomorphology of the feeding mechanism of S. acanthias to demonstrate the interdependence of morphology, ecology, and behavior in organismal design.
机译:许多研究已经确定在进食过程中颅骨肌肉组织产生的力与颅骨设计之间的关系。了解咬合形式在脊椎动物之间的多样性特别重要,因为它可以作为一种生态性能的度量,因此要了解咬合力的大小。为了确定弹力支中咬合力的准确形态学替代方法,使用多种形态学技术对多刺fish鱼棘角棘(Aqualithias)棘突和四肢肌肉的理论力产生进行了建模,并使用杠杆比分析确定了产生的咬合力。将这些量度与在四肢和前胫骨的强直性刺激实验期间使用压力传感器获得的体内咬合力测量结果进行了比较。尽管理论上和体内的咬合力之间没有发现差异,但是模型分析表明应将四肢和前肢肌分成其组成部分,并且当出现以下情况时,应使用这些部分的横截面数字图像来估算横截面积。计算理论力的产生。从所有分析中,测得的最大咬力为19.57N。针对棘皮棘球the的摄食机制的生态形态讨论了这种相对较低的咬力,以证明形态,生态和行为在生物设计中的相互依赖性。

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