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首页> 外文期刊>The Journal of Experimental Biology >The contribution of mineral to the material properties of vertebral cartilage from the smooth-hound shark Mustelus californicus
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The contribution of mineral to the material properties of vertebral cartilage from the smooth-hound shark Mustelus californicus

机译:矿物对光滑鲨Mustelus californicus椎软骨材料特性的贡献

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摘要

Elasmobranch vertebral cartilage has a substantial mineral fraction (39-55%) and the arrangement of mineral varies among species. We examined vertebrae from one shark species, Mustelus californicus, to determine mineral content, the effect of mineral on material properties and the viscoelastic response of vertebral cartilage. We serially demineralized vertebrae and compressively tested them to failure at varying strain rates. Mineral in vertebral cartilage varies within individuals, intraspecifically and interspecifically; this is in contrast to bone, in which significant variation in mineral content is pathological or an interspecific effect. Within Mustelus, vertebrae with larger mineral fractions were significantly stiffer and stronger; however when variation is assessed across species, the structure has a larger effect. Shark vertebral cartilage did not show a substantial viscoelastic response at biologically relevant strain rates, validating the use of quasistatic testing for this material.
机译:弹bra椎软骨具有大量的矿物质成分(39-55%),并且矿物质的排列因物种而异。我们检查了一种鲨鱼物种,即鼬鼬(Mustelus californicus)的椎骨,以确定矿物质含量,矿物质对材料特性的影响以及椎软骨的粘弹性响应。我们对椎骨进行脱矿质处理,并在不同的应变率下对其进行压缩测试以使其失效。椎软骨内的矿物质在个体内,种内和种间是不同的。这与骨骼相反,骨骼中的矿物质含量显着变化是病理性或种间效应。在Mustelus中,具有较大矿物质含量的椎骨明显更硬,更坚固。但是,当评估物种间的差异时,结构会产生更大的影响。鲨鱼椎软骨在生物学相关的应变速率下没有显示出实质性的粘弹性反应,这证明了对该材料进行准静态测试的有效性。

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