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Biomechanical and Histological Analysis of Titanium (Machined and Treated Surface) Versus Zirconia Implant Materials: An In Vivo Animal Study

机译:钛(加工处理和处理表面)与氧化锆植入物材料的生物力学和组织学分析:体内动物研究

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摘要

Objectives: The aim of this study was to perform an in vivo histological comparative evaluation of bone formation around titanium (machined and treated surface) and zirconia implants. For the present study were used 50 commercially pure titanium implants grade IV, being that 25 implants with a machined surface (TiM group), 25 implants with a treated surface (TiT group) and, 25 implants were manufactured in pure zirconia (Zr group). The implants (n = 20 per group) were installed in the tibia of 10 rabbits. The implants distribution was randomized (n = 3 implants per tibia). Five implants of each group were analyzed by scanning electron microscopy and an optical laser profilometer for surface roughness characterization. Six weeks after the implantation, 10 implants for each group were removed in counter-torque for analysis of maximum torque value. The remaining samples were processed, included in historesin and cut to obtain non-decalcified slides for histomorphological analyses and histomorphometric measurement of the percentage of bone-implant contact (BIC%). Comparisons were made between the groups using a 5% level of significance (p < 0.05) to assess statistical differences. The results of removal torque values (mean ± standard deviation) showed for the TiM group 15.9 ± 4.18 N cm, for TiT group 27.9 ± 5.15 N cm and for Zr group 11.5 ± 2.92 N cm, with significant statistical difference between the groups (p < 0.0001). However, the BIC% presented similar values for all groups (35.4 ± 4.54 for TiM group, 37.8 ± 4.84 for TiT group and 34.0 ± 6.82 for Zr group), with no statistical differences (p = 0.2171). Within the limitations of the present study, the findings suggest that the quality of the new bone tissue formed around the titanium implants present a superior density (maturation) in comparison to the zirconia implants.
机译:目的:本研究的目的是要执行的骨形成围绕钛(机械加工和处理的表面)和氧化锆植入物的体内组织学对比评价。对于本研究中使用50个商用纯钛植入物IV级,在于25层的植入物25个植入物以纯的氧化锆制造的加工面(TIM组),25层的植入物具有经处理的表面(TIT组)和,(Zr的组) 。植入物(每组n = 20)分别安装在10只兔胫骨。植入物的分布是随机的(每组n = 3个的胫骨植入物)。每个组的五个植入物通过扫描电子显微镜和表面粗糙度特性的光学激光表面光度仪进行分析。植入六周后,植入物10中的每个组反扭矩除去最大转矩值的分析。剩余的样品进行处理,包括在ヒ并切割以获得用于组织形态学分析和骨 - 植入物接触(BIC%)的百分比的组织形态计量学测量非脱钙滑动。比较使用的显着性水平为5%(P <0.05),以评估统计学差异的组之间进行比较。去除扭矩值的结果(平均值±标准偏差)显示为TIM组15.9±4.18Ñ厘米,对于TIT组27.9±5.15Ñ厘米和Zr的组11.5±2.92Ñ厘米,与组之间显著统计学差异(p <0.0001)。然而,BIC%呈现相似的值对于所有组(35.4±4.54对TIM基,37.8±4.84对TIT组和Zr的组34.0±6.82),没有统计学差异(p = 0.2171)。在本研究的局限性,这些发现表明,围绕钛种植体形成的新骨组织的质量相比于氧化锆植入物呈现优异的密度(成熟)。

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