Goyens Jana, Dirckx Joris, Aerts Peter
University of Antwerp, Laboratory of Functional Morphology, Universiteitsplein 1, Antwerp 2610, Belgium University of Antwerp, Laboratory of Biophysics and BioMedical Physics, Groenenborgerlaan 171, Antwerp 2020, Belgium
University of Antwerp, Laboratory of Biophysics and BioMedical Physics, Groenenborgerlaan 171, Antwerp 2020, Belgium.
J Exp Biol. 2016 Sep 15;219(Pt 18):2955-2961. doi: 10.1242/jeb.141614. Epub 2016 Jul 19.
The jaws of different species of stag beetles show a large variety of shapes and sizes. The male jaws are used as weapons in fights, and they may exert a very forceful bite in some species. We investigated in 16 species whether and how the forcefulness of their bite is reflected in their jaw morphology. We found a large range of maximal muscle forces (1.8-33 N; factor of 18). Species investing in large bite muscles also have disproportionately large jaw volumes. They use this additional jaw volume to elongate their jaws, increasing their chances of winning in battles. The fact that this also decreases the mechanical advantage is largely compensated for by elongated in-levers. As a result, high muscle forces are correlated with elevated bite forces (0.27-7.6 N; factor of 28). Despite the large difference in the forcefulness of their bite, all investigated species experience similar Von Mises stresses in their jaws while biting (29-114 MPa; factor of 4.0; calculated with finite element simulations). Hence, stag beetles have successfully adapted their jaw anatomy according to their bite force in fights.
不同种类锹甲的颚展现出多种多样的形状和大小。雄性的颚在争斗中用作武器,在某些种类中它们可能会使出非常有力的一咬。我们研究了16个物种的咬力大小是否以及如何在其颚的形态中体现出来。我们发现其最大肌肉力量范围很大(1.8至33牛;相差18倍)。投入大量咬肌的物种其颚的体积也大得不成比例。它们利用这额外的颚部体积来拉长颚,增加在战斗中获胜的几率。这也会降低机械优势这一事实在很大程度上被拉长的输入杠杆所弥补。结果,高肌肉力量与更高的咬力相关(0.27至7.6牛;相差28倍)。尽管它们咬力的差异很大,但所有被研究的物种在咬东西时其颚部所承受的等效应力相似(29至114兆帕;相差4.0倍;通过有限元模拟计算得出)。因此,锹甲已经根据其争斗中的咬力成功地调整了它们的颚部结构。