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牙齿-牙周韧带-骨复合体对载荷的反应:小型猪磨牙的 microCT 研究。

Response of the tooth-periodontal ligament-bone complex to load: A microCT study of the minipig molar.

机构信息

Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.

Department of Chemical Research Support, Weizmann Institute of Science, Rehovot, Israel.

出版信息

J Struct Biol. 2019 Feb 1;205(2):155-162. doi: 10.1016/j.jsb.2019.01.002. Epub 2019 Jan 11.

Abstract

One strategy evolved by teeth to avoid irreversible damage is to move and deform under the loads incurred during mastication. A key component in this regard is the periodontal ligament (PDL). The role of the bone underlying the PDL is less well defined. We study the interplay between the PDL and the underlying alveolar bone when loaded in the minipig. Using an Instron loading device we confirmed that the force-displacement curves of the molars and premolars of relatively fresh minipig intact mandibles are similar to those obtained for humans and other animals. We then used this information to obtain 3D images of the teeth before and after loading the tooth in a microCT such that the load applied is in the third linear part of the force displacement curve. We observed that at many locations there is a complimentary topography of the cementum and alveolar bone surface, strongly suggesting an active interplay between the tooth and the bone during mastication. We also observed that the loaded tooth does not come into direct contact with the underlying bone surface. A highly compressed layer of PDL is present between the tooth and the bone. The structure of the bone in the upper furcation region has a unique appearance with little obvious microstructure, abundant pores that have a large size range and at many locations the bone at the PDL interface has a needle-like shape. We conclude that there is a close interaction between the tooth, the PDL and the underlying alveolar bone during mastication. The highly compressed PDL layer that separates the tooth from the bone may fulfill a key shock absorbing function.

摘要

牙齿为避免不可逆损伤而进化出的一种策略是在咀嚼过程中承受的负荷下移动和变形。在这方面,一个关键组成部分是牙周韧带(PDL)。PDL 下方的骨骼的作用定义得不太明确。我们研究了在小猪中加载时 PDL 和下方牙槽骨之间的相互作用。我们使用 Instron 加载设备证实,相对新鲜的小猪完整下颌骨的磨牙和前磨牙的力-位移曲线与从人类和其他动物获得的相似。然后,我们使用这些信息在 microCT 中加载牙齿之前和之后获取牙齿的 3D 图像,使得施加的负载处于力-位移曲线的第三线性部分。我们观察到在许多位置,牙骨质和牙槽骨表面具有互补的形貌,这强烈表明在咀嚼过程中牙齿和骨骼之间存在积极的相互作用。我们还观察到加载的牙齿不会与下方的骨表面直接接触。牙齿和骨骼之间存在一层高度压缩的 PDL。上叉区骨骼的结构具有独特的外观,几乎没有明显的微观结构,丰富的孔隙具有较大的尺寸范围,并且在许多位置,PDL 界面处的骨骼呈针状。我们得出结论,在咀嚼过程中,牙齿、PDL 和下方牙槽骨之间存在紧密的相互作用。将牙齿与骨骼隔开的高度压缩的 PDL 层可能具有关键的减震功能。

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