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矿化硬组织的机械功能设计。

The design of mineralised hard tissues for their mechanical functions.

作者信息

Currey J D

机构信息

Department of Biology, University of York, PO Box 373, York YO10 5YW, UK.

出版信息

J Exp Biol. 1999 Dec;202(Pt 23):3285-94. doi: 10.1242/jeb.202.23.3285.

Abstract

Most hard tissues have as their primary purpose to be stiff. Outside the arthropods, mineralisation of a soft organic matrix is the almost universal method of producing high stiffness. However, stiffening brings with it the undesirable mechanical result of brittleness (lack of toughness). The mineralisation of some tissues, such as bone and dentine, can be modified rather easily, in evolutionary terms, to produce the optimum mix of stiffness with bending strength (which, except at the highest mineralisations, go together) on one hand and toughness on the other hand. However, in most other tissues, such as mollusc shell, echinoderm skeleton, brachiopod shell, barnacle shell and enamel, mineralisation is almost all-or-none, and no subtle gradations seem possible. In such cases, other features, such as architecture, must be modified to produce a useful skeleton. Not only the mechanical properties of the skeletal tissue, but its cost, mass and time taken for production will, biologists tend to assume, be balanced by natural selection to produce a satisfactory result. However, such complexity makes it difficult to be sure that we understand the extent to which mineralised skeletal materials are the best possible solution to the problems facing the animals and that we are not just telling 'Just-So' stories. Furthermore, there are some skeletal materials that do not seem to make much sense at the moment, although no doubt all will become clear eventually.

摘要

大多数硬组织的主要目的是具有硬度。在节肢动物之外,对柔软有机基质进行矿化是产生高硬度的几乎通用的方法。然而,硬化随之带来了脆性(缺乏韧性)这一不良的机械结果。从进化的角度来看,一些组织(如骨骼和牙本质)的矿化可以相当容易地进行调整,以产生一方面硬度与抗弯强度(除了在最高矿化程度时,二者是相伴而生的)的最佳组合,另一方面是韧性的最佳组合。然而,在大多数其他组织中,如软体动物壳、棘皮动物骨骼、腕足动物壳、藤壶壳和牙釉质,矿化几乎是全有或全无的,似乎不可能有细微的渐变。在这种情况下,必须改变其他特征(如结构)以产生有用的骨骼。生物学家倾向于认为,不仅骨骼组织的机械性能,而且其成本、质量和生成所需时间,都会通过自然选择达到平衡,从而产生令人满意的结果。然而,这种复杂性使得我们难以确定我们在多大程度上理解矿化骨骼材料是动物所面临问题的最佳解决方案,以及我们是否只是在讲“天方夜谭”式的故事。此外,目前有些骨骼材料似乎没什么意义,尽管毫无疑问最终一切都会明了。

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