• OVX Group: the bone plate of implant surface was thinner and poor continuity.

    OV X种植体表面结合薄,连续性

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  • This review focuses on the chemical composition and topography on nanoscale implant surface.

    下面种植体表面纳米改性化学成分几何形貌作一综述。

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  • Object: To analyze Relation of Elastic Modulus and Bone-implant Surface Stress Distribution.

    目的分析种植体弹性模量骨界面应力分布关系

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  • Objective: To analyze Relation of Elastic Modulus and Bone-implant Surface Stress Distribution.

    前言:目的:分析螺旋形种植体弹性模量界面应力分布关系

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  • Surface microstructure is a research focus in the area of titanium implant surface modification.

    种植表面形貌钛种植体表面改性研究热点之一。

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  • Objective: To study the effect of zinc supplement on bone-contacting implant surface ratio (BCSR).

    目的探讨微量元素种植体整合率作用

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  • Abstract: Objective: To compare the efficiency of two methods in detecting the osseointegration on titanium implant surface.

    摘要目的探讨最佳反映牙种植体表面结合情况检测方法

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  • The present invention relates to an implant surfaces and treatments for wear reduction, especially discloses methods and devices directed to surface treatment of implants.

    发明涉及植入表面用于降低磨损处理尤其公开了涉及植入表面处理方法器械

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  • This review summarized effects of different implant surface microstructure on osteoblasts at bone-implant interface, in order to guide optimization of implant surface microstructure.

    本文综述种植表面微结构种植体-骨组织界面成骨细胞生物学行为的影响研究和设计种植体表面微结构提供参考。

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  • The Biological properties of titanium implant depend on its surface oxide film.

    植入生物学性能取决于表面氧化的表征。

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  • By using these biologically active binders, the therapeutic agents can be applied to at least one surface of a medical implant without using inert polymer carriers.

    通过使用这些生物活性粘合剂治疗剂不必使用惰性聚合物载体覆盖医疗移植物至少一个表面上

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  • Conclusion Skin graft and alveolar mucosa both formed fiber connective tissue attachment on the surface of implant, which seal the environment between the oral and bone-interface.

    结论口腔环境皮肤牙槽黏膜纤维结缔组织种植体表面附着形成“袖口”,起生物封闭作用。

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  • AIM To study the tarnish induced by Porphyromonas gingivalis 381 on implant denture surface of titanium and ti 75 alloy.

    目的研究牙龈啉菌38175合金种植体表面失泽腐蚀。

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  • CONCLUSION: At the point of stress level recovery of the surface and internal femoral head, the structural bone graft is better than the cancellous bone granule implant.

    结论结构性植入对恢复股骨头表面内部应力水平要优于松质骨

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  • This review of the literature attempts to address the surface treatment method of dental implant.

    本文种植表面改性的方法做一综述

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  • The mechanism and integrating strength of the composite coating with the surface of cobalt alloy dental implant made by a two-step-sintering method were studied in this paper.

    采用两步烧结法烧钛合金种植体表面复合涂层结合强度结合机理

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  • OBJECTIVE: to prepare a bioactive coating on the surface of the titanium alloy implant, and to evaluate one promising strategy to enhance osseointegration.

    目的钛合金种植体表面制备生物活性涂层,寻找一种有效促进骨整合方法。

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  • There exist the charging effects because of charge accumulation at the surface of dielectric, which decrease the dielectric surface potential and the ion implant energy.

    介质表面存在电荷积累引起充电效应降低介质表面电势离子注入能量

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  • The mismatch between ion implant and the surface of a metal creates atomic defects that harden the surface.

    离子注入金属表面之间错配产生了硬化表面的原子瑕疵

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  • As one example, a metallic surface of an implant can be treated to form pits in the surface, followed optionally by a smoothing step to reduce the roughness of the pitted surface.

    作为一个例子植入金属性表面可以处理表面内形成凹坑接着可选地通过光滑化步骤减小所述凹坑的表面的粗糙度

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  • The deflecting electric field method we presented has been proved to be valid for inner surface PIII, and can increase retained dose and implant energy greatly.

    研究表明提出偏转电场进行表面注入处理的有效方法,可以极大提高内表面注入的注入剂量注入能量

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  • Thus the ions are continuously accelerated to implant the sample surface by the change electric field of the sheath, so as to achieve to modify the surface properties.

    层中电场作用下,离子源源不断地加速注入样品表面从而达到改善材料表面性能目的。

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  • Abstract : Objective To investigate the influence of new zirconia implant and surface modified method on the osseointegration to provide evidence for the development and application of the implant .

    摘要目的研究氧化种植体材料涂层处理方法结合影响种植体系统开发应用提供依据。

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  • The biocompatible metal surface of the implant is submitted to electrochemical etching in an electrolyte to which an electric current is applied.

    植入生物相容性金属表面施加电流的电解质溶液中进行电化学蚀刻

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  • The biocompatible metal surface of the implant is submitted to electrochemical etching in an electrolyte to which an electric current is applied.

    植入生物相容性金属表面施加电流的电解质溶液中进行电化学蚀刻

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