骨组织的微观结构和功能。第一部分:适应机制

T. Traini, E. Gherlone, P. Capparè
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引用次数: 1

摘要

目的对骨微观结构的适应机制及其在口腔应用中的功能进行综述。材料与方法详细评价了骨微观解剖学与骨生理学理论发展史之间的关系。结果现代骨生理学理论与区域加速现象、犹他范式和力学稳态假说相统一。骨建模和重塑可以响应多种刺激,包括细胞激活和动态加载的量子概念。最后,在异种移植物不完全可吸收生物材料的增强型骨中植入植入物的情况下,应考虑到种植体周围骨的机械能力降低。结论静载荷在比例范围内不影响骨吸收。为了促进种植体床准备后和种植体放置期间的“局部加速现象”,应通过任何冲洗程序保存血凝块。渐进加载程序应用于植入具有不完全吸收行为的异种移植物生物材料的增强型骨。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstruttura e funzione del tessuto osseo. Parte I: meccanismi di adattamento

Objectives

The aim of this study is to carry out a review of the bone micro-structure adaptive mechanisms and function in relation to dental applications.

Materials and methods

The relationship between bone micro-anatomical aspects and history of theoretical bone physiology has been evaluated in detail.

Results

The modern theory of the physiology of bone is consistent with the integration among regional acceleratory phenomenon, Utah paradigm, and mechanostat hypothesis. Bone modeling and remodeling can respond to pleiotropic stimuli, including quantum concept of cell activation and dynamic loading. Finally, in the case of implants inserted in augmented bone with xenograft not completely resorbable biomaterials, a reduced mechanical competence of the peri-implant bone should be taken into account.

Conclusions

The static load, within the limits of proportionality, does not affect bone resorption. To facilitate the “local acceleratory phenomenon” after implant bed preparation and during implant placement the blood clot should be preserved by any irrigation procedure. Progressive loading procedures should be used for implants placed in augmented bone with xenograft biomaterials with incomplete resorption behavior.

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