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不同表面的负载和未负载种植体的稳定性。

Stability of loaded and unloaded implants with different surfaces.

作者信息

Nergiz Ibrahim, Arpak Nejat, Bostanci Hamid, Scorziello Thomas M, Schmage Petra

机构信息

Clinic of Operative Dentistry and Preventive Dentistry, Center for Dental and Oral Medicine, University of Hamburg, Germany.

出版信息

Int J Oral Maxillofac Implants. 2009 Mar-Apr;24(2):289-98.

Abstract

PURPOSE

To compare the torsional strengths and the effects of functional loading on five different implant surface structures.

MATERIALS AND METHODS

This in vivo longitudinal study of 9 months' duration examined osseointegration in 180 stepped cylindric implants placed into the mandibles of 18 healthy sheepdogs. Implants with five different surface structures were placed (n = 36 in each group): (1) smooth surface; (2) deep profile structure (DPS); (3) titanium plasma sprayed (TPS); (4) hydroxyapatite coated; and (5) sol-gel hydroxyapatite coated (SGHA). All implants were investigated under standardized conditions. At uncovering (3 months), half the implants were loaded with prefabricated crowns for 6 months, and the other half remained unloaded. Removal torque values were evaluated at 3, 6, and 9 months after implant placement. The data were analyzed using analysis of variance and Scheffé correction (alpha < .05).

RESULTS

All smooth-surface and SGHA implants failed in succession during the fourth and ninth months of the study. After 3 months the removal torque resistance of DPS, TPS, and hydroxyapatite-coated implants was significantly higher (P < .001) than that seen in the other two groups. Initially, the removal torque resistance of unloaded hydroxyapatite-coated implants was superior, and the decrease during the observation period was not significant. The increase in removal torque resistance under functional loading was not significant for the DPS implants. A significant increase was found in removal torque resistance for the loaded TPS implants (P < .05). The unloaded DPS and TPS implants showed no change in removal torque levels after the closed healing period of 3 months.

CONCLUSIONS

Successful osseointegration was achieved with DPS, TPS, and hydroxyapatite-coated implants, and smooth-surface and SGHA implants failed. Removal torque resistance was enhanced with controlled functional loading.

摘要

目的

比较五种不同种植体表面结构的抗扭强度以及功能负载对其的影响。

材料与方法

这项为期9个月的体内纵向研究检测了植入18只健康牧羊犬下颌骨的180枚阶梯圆柱形种植体的骨整合情况。植入了具有五种不同表面结构的种植体(每组n = 36):(1)光滑表面;(2)深轮廓结构(DPS);(3)钛等离子喷涂(TPS);(4)羟基磷灰石涂层;(5)溶胶-凝胶羟基磷灰石涂层(SGHA)。所有种植体均在标准化条件下进行研究。在暴露时(3个月),一半的种植体安装预制冠进行6个月的负载,另一半保持无负载状态。在种植体植入后3、6和9个月评估去除扭矩值。使用方差分析和Scheffé校正(α < 0.05)对数据进行分析。

结果

在研究的第四个月和第九个月期间,所有光滑表面和SGHA种植体相继失败。3个月后,DPS、TPS和羟基磷灰石涂层种植体的抗去除扭矩能力明显高于其他两组(P < 0.001)。最初,未负载的羟基磷灰石涂层种植体的抗去除扭矩能力更强,且在观察期内的下降不显著。对于DPS种植体,功能负载下抗去除扭矩能力的增加不显著。负载的TPS种植体的抗去除扭矩能力有显著增加(P < 0.05)。未负载的DPS和TPS种植体在3个月的封闭愈合期后去除扭矩水平没有变化。

结论

DPS、TPS和羟基磷灰石涂层种植体实现了成功的骨整合,而光滑表面和SGHA种植体失败。通过可控的功能负载提高了抗去除扭矩能力。

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