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   tricalcium 在 生物医学工程 分类中 的翻译结果: 查询用时:0.009秒
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tricalcium
相关语句
  磷酸三钙
    Preparation of Artificial Bone of Porous Tricalcium Phosphate Ceramics and Preliminary Clinical Application
    多孔磷酸三钙陶瓷人工骨的研制及临床应用
短句来源
    Study on Cytocompatibility of Tricalcium Phasphate Ceramics Artificial Bone
    磷酸三钙陶瓷人工骨的细胞相容性研究
短句来源
    Macrophages in Degradation of Tricalcium Phosphate Ceramics Artifical Bone:A in Vitro Study
    巨噬细胞对磷酸三钙陶瓷人工骨的降解──体外研究
短句来源
    Obserfation to Interface of Porous Tricalcium Phosphate Ceramics implanted into Bone
    多孔磷酸三钙陶瓷骨内植入后界面变化观察
短句来源
    Observation of Biodegradation on Porous Tricalcium Phosphate Ceramics Artificial Bone
    多孔磷酸三钙陶瓷人工骨生物降解的实验观察
短句来源
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  三钙
    Preparation of Artificial Bone of Porous Tricalcium Phosphate Ceramics and Preliminary Clinical Application
    多孔磷酸三钙陶瓷人工骨的研制及临床应用
短句来源
    Study on Cytocompatibility of Tricalcium Phasphate Ceramics Artificial Bone
    磷酸三钙陶瓷人工骨的细胞相容性研究
短句来源
    Macrophages in Degradation of Tricalcium Phosphate Ceramics Artifical Bone:A in Vitro Study
    巨噬细胞对磷酸三钙陶瓷人工骨的降解──体外研究
短句来源
    Obserfation to Interface of Porous Tricalcium Phosphate Ceramics implanted into Bone
    多孔磷酸三钙陶瓷骨内植入后界面变化观察
短句来源
    Observation of Biodegradation on Porous Tricalcium Phosphate Ceramics Artificial Bone
    多孔磷酸三钙陶瓷人工骨生物降解的实验观察
短句来源
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  “tricalcium”译为未确定词的双语例句
    Combined culture of osteoblast-like cells (Hos8603) and nm zirconium dioxide reinforced hyper-porosity tricalcium phosphate bone cells scaffold
    成骨细胞(Hos8603)与强韧化纳米人工骨支架的联合培养
短句来源
    βtricalcium phosphate(βTCP) has the similar compositions as bone minerals and good biocompatibility.
    β 磷酸三钙的成分与骨矿物组成类似,生物学相容性好.
短句来源
    Experimental study of polylactic acid (PLA) membrane plus tricalcium phosphate(TCP)
    聚乳酸膜管复合钙磷陶瓷引导性骨再生的实验研究
短句来源
    Development of Degradable Tricalcium Phosphate Bioceramics
    可降解磷酸钙生物陶瓷的研究进展
短句来源
    Low-temperature extrusion manufacturing of poly (L-lactic acid)/tricalcium phosphate composite scaffolds for bone tissue engineering
    PLLA/TCP复合骨组织载体框架的低温挤出成形
短句来源
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  tricalcium
The results of experimental studies are given for ice formation during freezing of tricalcium silicate and tricalcium aluminate.
      
Bioactive composite ceramics in the hydroxyapatite-tricalcium phosphate system
      
The product synthesized by precipitation from solution has an SBET of up to 73 m2/g and an increased tricalcium phosphate content, which crystallizes from the amorphous phase during heat treatment.
      
Effect of preparation conditions on the pore structure of tricalcium phosphate and on the kinetics of its reaction with the lead
      
The kinetics of the reaction of differently prepared tricalcium phosphate samples with the lead ion are considered.
      
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The authors had prepared the artificial bone of porous tricalcium phosphate ceramics with adequate component and technology.The examination of its physical-chemical properties shows that it possesses some features:the distinctive structure of connective pore and macro/micropores ;mean pore size,380μm (from 240μm to 510μm); porosity,46.4% ; compressive strength,97.4kg/cm2.It consists of CaO(49.09%)and P2O5(48.84%).The examination of biocompatibility shows that it is devoid of systemic or local toxicity,and...

The authors had prepared the artificial bone of porous tricalcium phosphate ceramics with adequate component and technology.The examination of its physical-chemical properties shows that it possesses some features:the distinctive structure of connective pore and macro/micropores ;mean pore size,380μm (from 240μm to 510μm); porosity,46.4% ; compressive strength,97.4kg/cm2.It consists of CaO(49.09%)and P2O5(48.84%).The examination of biocompatibility shows that it is devoid of systemic or local toxicity,and of irritation or foreign body response to tissue,and it does not result in hemolysis or mutation.The new bone can grow into its pores effectively and make direct contact with the constituent material 7 cases of bone defect were treated by using this artificial bone with more satisfactory results

作者采用适当配方和制造工艺研制成多孔磷酸三钙陶瓷人工骨。理化性能检测显示其具有独特的连通孔和大孔/微孔结构;平均孔径380μm(240~510μm);气孔率46.4%;抗压强度97.4kg/cm~2;材料含CaO49.09%(W/W)、P_2O_548.84%,生物相容性检测显示该人工骨无毒性;对组织无刺激;不引起异物反应;不致溶血或突变;骨组织能有效长入材料孔内并与材料直接接触,具有良好的生物相容性。用该人工骨修复7例骨缺损,效果较满意。

Two kinds of synthetic biomaterials,porous tricalcium phosphate (PTCP)and magnetic porous tricalcium phosphate (MPTCP) ceramic granules were operatively implanted into the artificial cavity (3mm in diameter) of rat femur.In a period of 4 months,the assessment of serial histological sections,scanning electron microphotographs and quantitative analysis of bone formation in the sections showed that both ceramics were biocompatible and degradable in vivo.New bone formation occurred more exuberantly in...

Two kinds of synthetic biomaterials,porous tricalcium phosphate (PTCP)and magnetic porous tricalcium phosphate (MPTCP) ceramic granules were operatively implanted into the artificial cavity (3mm in diameter) of rat femur.In a period of 4 months,the assessment of serial histological sections,scanning electron microphotographs and quantitative analysis of bone formation in the sections showed that both ceramics were biocompatible and degradable in vivo.New bone formation occurred more exuberantly in the MPTCP roup than that in the PTCP group.Moreover,the same procedures,i.e.endochondral osification,were observed in both groups.The quantitative analysis used in this study is simple and reliable,and may be applicable to the similar experimental models.

用人工合成材料多孔磷酸三钙陶瓷(PTCP)及磁性多孔磷酸三钙陶瓷(MPTCP)颗粒植入大白鼠股骨骨钻孔中(直径3mm),经4个月定期组织切片、扫描电镜观察及组织切片新骨形成定量分析表明,两种陶瓷均具有良好的生物相容性,且能在体内发生降解。MPTCP陶瓷促进新骨形成的能力优于PTCP陶瓷,成骨方式不变即软骨内成骨。新骨形成定量分析法简便实用;有助于类似实验模型切片中组织构成的定量分析。

The isolated mice peritoneal macrophages in degradation of calcium phosphate compound artificial bone - collagen/hydroxylapatite (CHA). hydroxylapatite (HA), beta-tricalcium phosphate (TCP) ceramics, have been studied by use of both Ca++, P concentration assay in cultured supernatant and scanning electron microscopy (SEM). The solubility of Ca++ . composition of materials increased more significantly when macrophages were inoculated than when macrophages were not seeded (P< 0.001), and it was shown that...

The isolated mice peritoneal macrophages in degradation of calcium phosphate compound artificial bone - collagen/hydroxylapatite (CHA). hydroxylapatite (HA), beta-tricalcium phosphate (TCP) ceramics, have been studied by use of both Ca++, P concentration assay in cultured supernatant and scanning electron microscopy (SEM). The solubility of Ca++ . composition of materials increased more significantly when macrophages were inoculated than when macrophages were not seeded (P< 0.001), and it was shown that the ground materials were wrapped and phagocytized or resorbed extracellularly by macrophages under SEM, suggesting that macrophages could mediate the degradation of calcium phosphate compound artificial bone by phagocytizing and/or degrading extracellularly.

(夏志道)(朱通伯)(杜靖远)(郑启新)(汪岚)MacrophagesinDegradationofCalciumPhosphateCompoundArtificialBone:AninvitroStudy¥XIAZhi-dao;ZHUTong-bo;DUJi...

 
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