使用 SEM 和 EDX 分析钛牙科植入物的表面形态和化学成分。

IF 1.9
Bioinformation Pub Date : 2024-08-31 eCollection Date: 2024-01-01 DOI:10.6026/973206300200926
Mohammed Mathar
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引用次数: 0

摘要

钛种植体的化学成分和表面形态对牙科种植体的骨结合特性影响较大。因此,本研究对市售钛牙科种植体的表面形态和化学成分进行了检测。(BioLine 牙科种植体系列--单片种植体(A)和螺旋种植体(B))。化学成分用能量色散 X 射线光谱法(EDX)测定,表面形态用扫描电子显微镜法(SEM)观察。使用 EDX 方法测定钛植入体化学成分的结果显示,钛(Ti)是单片抗压植入体平原区和顶部区域的主要表面成分,分别占 89.71% 和 71.55%。铁(Fe)-66.60 重量%,铬(Cr)-18.34 重量%,以及 O(19.90 重量%)和 Al(12.43 重量%)被认为是螺旋种植体表面的主要元素。利用扫描电子显微镜方法观察表面形态和制造工艺对种植体表面的影响发现,两个样品的顶面区域侧视图上都有直径为 10 微米至 20 微米的类似不规则表面,而平底区域侧视图上的直径为 10 微米。样品 A 在顶端视图上显示出一些无定形结构和颗粒状痕迹,而样品 B 在顶端视图上显示出严重的研磨和剪切痕迹,直径在 10 微米到 20 微米之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface morphology and chemical composition analysis of titanium dental implants using SEM and EDX.

The chemical content and surface morphology of titanium implants have a greater impact on the osseointegration characteristic of dental implants. Therefore this study was done to examine the surface morphology and chemical composition of commercially available titanium dental implants. (BioLine Dental Implants Series-single piece (A) and spiral implants (B)). The chemical composition was determined by the Energy Dispersive X-ray Spectroscopy (EDX) method and the surface morphology was performed by Scanning Electron Microscopy (SEM) method. The results for chemical composition of titanium implants using EDX method revealed that titanium (Ti) constitutes the major surface components on the plain and top land area of the single piece compressive implants which is 89.71 weight% and 71.55 weight % respectively. Iron (Fe)-66.60 weight % is considered as major element along with chromium (Cr)-18.34 weight %on the plain area of spiral implants and O (19.90 weight %) and Al (12.43 weight %) on the top land area of spiral implants. The surface morphology and impact of the manufacturing process on the implant surface using SEM method revealed that the similar surface irregularities with diameter ranging from 10 µm to 20 µm on the side view of the top land area and diameter of 10 µm on the side view of plain area for both the samples. Sample A showed some amorphous structures with grainy marks on the apical view whereas Sample B showed heavy grinding and shear marks on the apical view at diameter ranging from 10 µm to 20µm.

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来源期刊
Bioinformation
Bioinformation MATHEMATICAL & COMPUTATIONAL BIOLOGY-
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