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orthopedic implants
相关语句
  骨科植入
     Discussion on the causation and monitoring countermeasure of adverse events of orthopedic implants
     骨科植入医疗器械不良事件原因及监管对策探讨
短句来源
     Adverse events of orthopedic implants are common, the writers discussed common reasons of adverse events of orthopedic implants from several respects, producing on how reduc-ing adverse several of orthopaedic implants have putted forward correspoding monitoring counter-measures.
     针对骨科植入医疗器械不良事件多发的现状,通过对骨科植入医疗器械不良事件多发的原因进行探讨,旨在为减少骨科植入医疗器械不良事件的发生提出相应的监管对策。
短句来源
  “orthopedic implants”译为未确定词的双语例句
     Due to its better wear resistance than that ofα/α+βtitanium,βtitanium is considered as a promising material as the orthopedic implants.
     β型钛合金与α/α+β型钛合金相比,具有较高的耐磨性,是一种很有前途的外科植入用钛合金;
短句来源
     INTERNET-BASED CLINICAL ENGINEERING SYSTEM OF ORTHOPEDIC IMPLANTS
     一个定制式骨科内植物的网上临床工程系统
     Biocompatible carbon/carbon composites have good mechanical properties close to those of bone, which make them great potential as orthopedic implants in human body.
     对骨种植医用碳材料的种类、碳材料对骨组织间的响应及碳/碳复合材料表面生物活化改性研究现状进行了综述。
短句来源
     According to the requirements of quick design, manufacturing and implanting of orthopedic implants, Internet-based Clinical Engineering System of Orthopedic implants is established.
     定制式人工关节这一类的骨科内植物具有市场随机性,产品个体性,需求急迫性与制造资源多样性等特点,为快速响应市场,有效利用分散的资源,建立了一个面向定制式骨科内植物的网上临床工程系统。
  相似匹配句对
     INTERNET-BASED CLINICAL ENGINEERING SYSTEM OF ORTHOPEDIC IMPLANTS
     一个定制式骨科内植物的网上临床工程系统
     Discussion on the causation and monitoring countermeasure of adverse events of orthopedic implants
     骨科植入医疗器械不良事件原因及监管对策探讨
短句来源
     Orthopedic Pain and Treatment
     骨科疼痛及治疗
短句来源
     Research and Progress on Implants
     植入剂的研究与应用
短句来源
     63 implants were placed.
     其余43侧上颌窦共植入63颗种植体,长度10~15mm。
短句来源
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  orthopedic implants
The ASTM F-75 alloy is widely used for orthopedic implants.
      
Critical pitting potentials were estimated from the potentiostatic polarization curves and were found superior to that exhibited by the conventional ASTM-F75 cast alloy used for the manufacture of orthopedic implants.
      
Onset of Surface Damage in Modular Orthopedic Implants: Influence of Normal Contact Loading and Stress-assisted Dissolution
      
It is shown that 08H18N10T steel can be used as a material for orthopedic implants.
      
The coating of magnesia partially stabilized zirconia (Mg-PSZ) with a bioactive glass was investigated for enhancing the bioactivity and bone-bonding ability of Mg-PSZ orthopedic implants.
      
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The film of biocompatible hydroxyapatite(HAP) ceramic on Ti substrate by pulsed laser deposition is a very promising technique for orthopedic implant. In this material, 266 nm laser was used to deposit HAP. We obtained HAP films under temperature around 450℃ in vacuum, Ar, O 2 and H 2O(gas) respectively. The films was investigated by Infra Red spectrum, Raman spectrum, Atomic Force Microscopy. The examination of experiment reveals that the films grow equally with no crack or scratch on its surface....

The film of biocompatible hydroxyapatite(HAP) ceramic on Ti substrate by pulsed laser deposition is a very promising technique for orthopedic implant. In this material, 266 nm laser was used to deposit HAP. We obtained HAP films under temperature around 450℃ in vacuum, Ar, O 2 and H 2O(gas) respectively. The films was investigated by Infra Red spectrum, Raman spectrum, Atomic Force Microscopy. The examination of experiment reveals that the films grow equally with no crack or scratch on its surface. The films was compsed of amorphous HAP and partly crystalline HAP. The experiment also indicates that H 2O play an imprtant orle in films growth.

使用 2 6 6nmNd YAG激光 (脉宽为 4ns ,能量密度 2J/cm2 ) ,以钛合金作衬底 ,在温度为4 0 0~ 4 50℃条件下 ,分别选择真空、Ar、O2 、H2 O气为沉积环境进行HAP薄膜的制备 ,并通过红外光谱、Raman光谱、原子力显微镜对所获得的HAP薄膜进行表征。测量分析表明 :在该温度下 ,我们用脉冲激光法沉积出的HAP薄膜均匀性良好 ,表面无剥蚀和层断 ,薄膜呈非晶态和结晶态的混合物 ;水蒸汽的存在对HAP薄膜结晶程度有重要影响。

Due to their similar elastic modulus to bone,excellent biocompatibility and corrosion resistance in biological environment,pure titanium and its alloys have been widely used in clinic.The development and re-search status of the biomedical titanium alloys was reviewed in this article with the illumination of biocom-patibility mechanism of titanium.In addition,the research status of the surface modification of titanium alloys and their composites was discussed briefly.The excellent biocompatibility of pure...

Due to their similar elastic modulus to bone,excellent biocompatibility and corrosion resistance in biological environment,pure titanium and its alloys have been widely used in clinic.The development and re-search status of the biomedical titanium alloys was reviewed in this article with the illumination of biocom-patibility mechanism of titanium.In addition,the research status of the surface modification of titanium alloys and their composites was discussed briefly.The excellent biocompatibility of pure titanium and its alloys owes to the oxide layer on their surfaces.Due to its better wear resistance than that ofα/α+βtitanium,βtitanium is considered as a promising material as the orthopedic implants.To enhance the bioactivity two effective ways are expected.One is to seek a more perfect surface modification technology for obtaining high quality coatings,and the other is to fabricate a composite by incorporating bioactive phases into titanium alloys.

纯钛及其合金以其与骨相近似的弹性模量、良好的生物相容性及在生物环境下优良的抗腐蚀性等在临床上得到了越来越广泛的应用.综述了医用钛合金的发展和研究现状,阐述了钛的生物相容性原理,同时简单评述了钛及其合金表面改性与钛基复合材料的研究现状.分析表明:纯钛及其合金具有出色的生物相容性主要归功于表面附着的氧化层;β型钛合金与α/α+β型钛合金相比,具有较高的耐磨性,是一种很有前途的外科植入用钛合金;寻求更为理想的表面改性工艺从而获得高质量的涂层,或将生物活性相添加进钛合金基体中制备成复合材料是提高医用钛合金生物活性的两种有效途径.

Titanium alloys are widely- used in medical applications as orthopedic implant materials. This paper reviews the present state of the art in this field. The current status of research on the surface characteristics of hioactivity materials,and surface modification and hiocompatibility of titanium alloys are summarized. Further consi-deations of the development and applications of new titanium alloy biomaterials are also presented.

Ti合金作为生物植入材料已应用于医学领域。综述了国内外Ti合金生物材料研究领域的最新进展,包括生物活性材料的微观特性、Ti合金表面改性和生物相容性。

 
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