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首页> 外文期刊>The Journal of Experimental Biology >The bite force-gape relationship as an avenue of biomechanical adaptation to trophic niche in two salmonid fishes
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The bite force-gape relationship as an avenue of biomechanical adaptation to trophic niche in two salmonid fishes

机译:咬合力 - Gape的关系作为生物力学适应两种沙明鱼类的生物力学适应途径

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All skeletal muscles produce their largest forces at a single optimal length, losing force when stretched or shortened. In vertebrate feeding systems, this fundamental force-length relationship translates to variation in bite force across gape, which affects the food types that can be eaten effectively. We measured the bite force-gape curves of two sympatric species: king salmon (Oncorhynchus tshawytscha) and pink salmon (Oncorhynchus gorbuscha). Cranial anatomical measurements were not significantly different between species; however, peak bite forces were produced at significantly different gapes. Maximum bite force was achieved at 67% of maximum gape for king salmon and 43% of maximum gape for pink salmon. This may allow king salmon to use greater force when eating large or elusive prey. In contrast, pink salmon do not require high forces at extreme gapes for filter feeding. Our results illustrate that the bite force-gape relationship is an important ecophysiological axis of variation.
机译:所有骨骼肌都在单个最佳长度下产生最大的力,在拉伸或缩短时失去力量。在脊椎动物饲养系统中,这种基本力长度关系转化为斑驳的变化,它影响了可以有效食用的食物类型。我们测量了两种合并症的咬伤曲线:王三文鱼(oncorhynchus tsawytscha)和粉红色的鲑鱼(oncorhynchus gorbuscha)。物种之间的颅骨解剖测量没有显着差异;然而,在显着不同的间隙下产生峰值咬合力。最大咬伤力以王鲑鱼的最大长篇大为67%,粉红鲑鱼的最高43%的43%。这可能让鲑鱼在吃大或难以捉摸的猎物时使用更大的力量。相比之下,粉红色的鲑鱼不需要在极端间隙中以用于过滤喂养的高力。我们的结果表明,咬合力 - Gape的关系是重要的生态生理学轴。

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