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implants
相关语句
  种植体
    Experiment Study on Effects of Strorage Time in Vitro to the Healing of NVBG with Implants
    离体时间对非血管化骨移植同期种植体植入愈合影响的实验研究
短句来源
    The Construction of Nano-hydroxyapatite/fluorohydroxyapatite/titania Functionally Gradient Coating on the Surface of Titanium Implants
    纳米羟基磷灰石/含氟磷灰石/TiO_2梯度涂层对钛种植体表面改性的研究
短句来源
    EXPERIMENTAL STUDY ON THE COMBINING MECHNISM OF INTERFACE BETWEEN BOVINE BONE MORPHOGENETIG PROTEIN/BIOAGTIVE CERAMICCOATED POROUS TITANIUM IMPLANTS AND BONE
    牛骨形成蛋白、生物陶瓷/微孔钛种植体—骨界面结合机理的实验研究
短句来源
    Experimental Study of BMP-compowited Osseointergarted Implants
    BMP与骨融合式种植体复合的实验研究
短句来源
    Morphologic Observation and Quantitative Histology Study on the Implant-Bone Interface of Nonsubmerged and Submerged Endosseous Implants in Dogs
    非埋植型和埋植型骨内牙种植体—骨组织界面形态学观察和定量组织学研究
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  “implants”译为未确定词的双语例句
    Study of Onlay Bone Grafts and Nonvascularized Bone Grafts with Placement of Implants Simultaneously
    下颌骨表面贴附植骨同期种植及非血管化骨移植同期种植的研究
短句来源
    A Study on the Stress Distributive Patterns at the Bone Interface Around Artificial Dental Implants
    人工种植牙—骨界面应力分布规律的研究
短句来源
    EFFECTS OF PLASTER-OF-PARIS PARTICULATE IMPLANTS IN MANDIBULAR BONE CAVITY: AN EXPERIMENTAL STUDY
    下颌骨骨腔煅石膏颗粒植入效果的实验研究
短句来源
    The Clinical Application of Dense Bioactive Ceramics as Immediate Root-shaped Implants
    致密型生物活性陶瓷作立即牙根种植的临床应用
短句来源
    The Clinical Effect and Animal Experiment of Ti and Ti-Alloy as Endodontic-Endosseous Implants
    钛及钛合金牙髓腔-骨内植入体的临床疗效及动物实验
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  implants
This provides a foundation for the 3D reconstruction and accurate fabrication of the customized implants.
      
The implants were harvested after in vivo incubation for 4, 8 and 12 weeks.
      
Multifunction Nanostructural Coatings for Load-bearing Implants
      
Bioactive ceramic tantalum-doped films for implants
      
The article deals with of the regularities of auditory word recognition in noise by preschool children (healthy and with speech development disorders) and patients with cochlear implants.
      
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From 1980 to 1984,congenital microgenia of 12 cases was reconstructed withsolid silicone implant.The implant was placed anterior to the mental region,exceptone in submental region.In order to obviate dead space and undue tension,a supra-periosteal pocket just large enough to accommodate the silicone implant was created.Itis necessary to anchor the implant to the periosteum with one or two buried suturesto prevent displacement of the implant due to laxity of the skin with increasing...

From 1980 to 1984,congenital microgenia of 12 cases was reconstructed withsolid silicone implant.The implant was placed anterior to the mental region,exceptone in submental region.In order to obviate dead space and undue tension,a supra-periosteal pocket just large enough to accommodate the silicone implant was created.Itis necessary to anchor the implant to the periosteum with one or two buried suturesto prevent displacement of the implant due to laxity of the skin with increasing age.This technique of chin augmentation is simpler than the onlay bone graft oradvancement of the lower portion of the mandible by horizontal osteotomy.All 12cases were without any complication and obtained satisfactory cosmetic results.

1980年6月起,作者等采用硅橡胶充填整复轻、中度小颌畸形12例(起初7例用块状硅橡胶雕刻成型,后5例用成型硅橡胶制品)。本法较自体髂骨充填法或锯断部分下颌缘的下颌骨前移术简单易行。12例均无不良反应,整复后外形满意。

Of the late two years,in order to find out a kind of dental implanting materialwhich would possess both the very good properties of biological compatibility,the chemical compatibility and the mechanical compatibility,an animal experi-mental preselection was accomplished by our research team with six kinds of im-planting material chosen from four main sorts of oral implanting material(met-al,ceramic,high polymer and carbon),As the result of the Preselection,thematerial……bio-ceramic was chosen by our...

Of the late two years,in order to find out a kind of dental implanting materialwhich would possess both the very good properties of biological compatibility,the chemical compatibility and the mechanical compatibility,an animal experi-mental preselection was accomplished by our research team with six kinds of im-planting material chosen from four main sorts of oral implanting material(met-al,ceramic,high polymer and carbon),As the result of the Preselection,thematerial……bio-ceramic was chosen by our team as the main specialization inresearch,and thus one of the implanting materials was developed and preparedby us,It is zirconium hydroxyapatite ceramic we have accomplished an anim-al test with the above material and made the result of the test a comparasion with titanium alloys(Tc4 and Tc9),multicrystal alumina with high density,monocrystal alumina,titanium alloys coating with alumina,carbon isotropefor-ming under lower temperature,polysulphone and so forth implanting materials.The key point of the test was always kept by us at studying the interface bet-ween the bone and the implant.

为了寻求生物相容性、化学相容性和力学相容性均好的种植材料,在口腔四大类种植材料(金属、陶瓷、碳素、高分子)中,选用6种材料作了动物实验预选。根据预选结果,选定以生物陶瓷为主攻方向,从而研制成功锆磷灰石陶瓷,以之进行了理化性能、生物学性能、及动物实验考查,合平种植要求。并以考查结果与钛合金、多晶氧化铝、单晶氧化铝、钛合金喷涂氧化铝、低温各向同性碳、聚砜种植作了比较,主要性能均较其它几种比较材料为优。经临床初试,锆磷灰石陶瓷的种植效果也较好,其界面为骨性结合。

Many implant studies have reported good short term success,but long termfailure.Branemark's study of osseo-integrated implants is the only one that hassurvived scientific scruting based on routine clinical use of implants for over 15years combined with sound biological analysis and scientific testing.

许多关于种植体的研究都报道了良好的短期疗效,但是远期效果较差。本文介绍的 Branemark骨整合种植体应用临床常规方法,进行了长达15年以上的临床实践,作了完整的生物学分析和科学实验,是一整套经过科学实践检验的人工种植牙的理论和方法。

 
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