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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Differences in microstructural characteristics of dense HA and HA coating.
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Differences in microstructural characteristics of dense HA and HA coating.

机译:致密的HA和HA涂层的微观结构特征的差异。

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摘要

Two implant types of hydroxyapatite (HA) currently are available for dental implants: dense HA-cemented titanium (Ti) and HA-coated. It has been shown in previous reports that there are differences in the chemical and mechanical stabilities between the dense HA and HA coated. The differences are thought to be due to structural differences between the two ceramic types. The aim of this study was to investigate the differences in microstructural characteristics of currently available dense HA and HA coated implants before implantation and at periods of 3 weeks and 10 months after implantation in canine bone. X-ray diffractometry, infrared analysis, transmission electron microscopy, and energy dispersive X-ray analysis were used. The dense HA is composed of crystal grains, with a well crystallized structure of HA, closely bound to each other and approximately 0.4-0.6 micron in size. Implantation did not change the original sintered structure of the dense HA. The HA coating was composed of an amorphous phase with a Ca/P ratio of 1.46 and a crystal phase consisting of oxyhydroxyapatite, tricalcium phosphate, tetracalcium phosphate, and CaO, with a Ca/P ratio of 1.57. In the amorphous phase, compared to other portions in the amorphous phase, there were some layers with lower atomic density and with no significant difference in Ca/P ratio. After implantation, the crystallization of super fine crystals of approximately 4-5 nm in thickness occurred in the amorphous phase, and with time it progressed and spread from the surface to the deeper portion of the HA coating. A Ca/P ratio of 1.58 in the crystallized portion was close to the ratio (1.60) in the dense HA, suggesting that the super fine crystals were HA. This crystallization cannot significantly decrease the solubility of the amorphous phase portion and poses risks of stress accumulation within the coating and a decrease of binding strength between the HA coating and the substrate.
机译:当前,两种类型的羟基磷灰石(HA)植入物可用于牙科植入物:致密的HA胶结钛(Ti)和HA涂层。在以前的报告中已经表明,致密的HA和HA涂层之间在化学和机械稳定性方面存在差异。认为差异是由于两种陶瓷类型之间的结构差异。这项研究的目的是调查目前可用的致密HA和HA涂层植入物在植入前以及犬骨植入后3周和10个月的微观结构特征的差异。使用了X射线衍射,红外分析,透射电子显微镜和能量色散X射线分析。致密的HA由晶粒组成,具有良好结晶的HA结构,彼此紧密结合,尺寸约为0.4-0.6微米。植入并没有改变致密HA的原始烧结结构。 HA涂层由Ca / P比为1.46的非晶相和由氧羟基磷灰石,磷酸三钙,磷酸四钙和CaO组成的晶相组成,Ca / P比为1.57。在非晶相中,与非晶相中的其他部分相比,存在一些原子密度较低且Ca / P比无显着差异的层。注入后,在非晶相中发生了厚度约为4-5 nm的超细晶体的结晶,随着时间的流逝,它逐渐从HA涂层的表面扩散到更深的部分。结晶部分中的Ca / P比为1.58,与致密HA中的Ca / P比接近(1.60),表明超细晶体为HA。这种结晶不能显着降低非晶相部分的溶解度,并且存在在涂层内积累应力和降低HA涂层与基材之间的结合强度的风险。

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