复合骨

  • 网络Composite bone;Compound Bone
复合骨复合骨
  1. 生物力学测试证实复合骨抗拉力低于自体骨,9周和12周时两组差异有显著性(P0.05)。

    Biomechanics test revealed that compound bone had lower anti-pull strength than autogenous bone , there were prominent difference between two groups ( P0.05 ) .

  2. 大段复合骨修复四肢骨缺损携带监测皮岛的临床意义

    Clinical significance of monitoring - flap in massive compound bone grafts for repairing massive bone defects in extremities

  3. 目的:分析和评价以无机牛骨(deproteinizednaturalbovinemineral,Bio-oss)作为载体材料复合骨形成蛋白(BoneMorphogenicProtein,BMP)修复牙种植体周围骨缺损的效果。

    Objectives : Evaluate the effect of regeneration of bone defect around dental implant by Bio-oss combined with Bone morphogenic protein .

  4. 结果表明,在玻璃微粉粒度为2.55μm,加入量为10%(wt)时,复合骨水泥的性能较单纯磷酸盐骨水泥有明显提高。

    The results show that adding 10 % ( wt ) bio-glass can increase the compressive strength of composite bone cement when glass particle size is 2 . 55 nm .

  5. 目的:本课题利用新型多孔钛铌合金试件为骨组织再生工程构架,观察复合骨形态发生蛋白(BoneMorphogeneticProtein,BMP)的多孔钛铌合金试件在体外体内表现出来的特性。

    Object : The subject aims for using the new porous titanium-niobium alloy specimens as bone tissue regeneration project framework , to observe the characteristics shown in vitro and in vivo of porous titanium-niobium alloy specimen composited with bone morphogenetic protein .

  6. 结果:术后2周,DBM/CPC复合骨水泥组可见间充质细胞增殖、聚集并包绕DBM骨粒。

    Result : In the DBM / CPC bone cement group , the beginning of vascularization and the proliferating mesenchymal cells inside demineralized bone fragments were observed at 2 weeks .

  7. 结论:DBM/CPC复合骨水泥有较强的异位诱导成骨能力,诱导新骨的形成伴随着材料的降解,可以有效弥补单纯使用CPC时降解速度太慢和无骨诱导能力的不足。

    Conclusion : The DBM / CPC bone cements had good potentiality of ectopic bone induction , and the new bone formed accompanied by the degradation of the material , this can efficiently overcome the shortcoming of CPC .

  8. CPC加松质骨颗粒后的复合骨水泥显示了诱人的骨形成能力,在4个月时即已基本骨降解,而此时的CPC仅在其界面少量降解。

    The compound cement demonstrate a luring bone formation capacity , the compound cement is degraded to the large at 4 month in the dogs ' vertebral body , while at this time pure CPC only has a small quality degradation at its border .

  9. 术中以自制器械分别制造山羊双后肢股骨内髁负重区直径5mm、深3mm的复合骨软骨缺损各一处。

    Prior to the BMSCs harvest , osteochondral defects , 5 mm in diameter and 3 mm in depth , were created in the femoral medial condyles of both the goat 's hind limbs .

  10. 方法:(1)制备三种n-HA含量(40wt%、50wt%、60wt%,重量比)的可注射性n-HA/PA66复合骨水泥,对其固化时间、压缩强度、抗稀散性及残余百分比进行测定。

    Methods : ( 1 ) Making three kinds of Injectable n-HA / PA66 composite cement , the weight ratio of n-HA in cement were about 40wt % , 50wt % , 60wt % . The setting time , compressive strength , anti-washout and remnant percentage were examined .

  11. 骨诱导性载体复合骨形态发生蛋白的双重成骨作用

    Double Osteogenic Roles of Osteoinductive Carriers Combined with Bone Morphogenetic Protein

  12. 用复合骨形成蛋白加碘仿盖髓的动物实验

    Animal experiment research of pulp capping by BMP - iodoform compound

  13. 4周时,表现为复合骨;

    At 4 weeks , compact cortical bones were found .

  14. 复合骨环行前路腰椎椎间融合术治疗腰椎滑脱症

    Treatment of Spondylolisthesis by Anterior Lumbar Interbody Fusion With Composite Cortical Ring

  15. 生物玻璃&磷酸盐复合骨水泥的研究

    Study on Bio - glass - Phosphate Composite Bone Cement

  16. 掺锶硫酸钙复合骨修复材料的制备及体外特性研究

    In Vitro Study of Strontium-Calcium Sulfate Compounds as Bioactive Bone Grafted Substitute

  17. 牛煅烧骨颗粒复合骨水泥的生物力学性能评定

    Constructive and biomechanics properties of true bone ceramic impregnated with bone cement

  18. 两种抗生素复合骨水泥体外药物释放的规律

    Drug release profile of bone cement incorporated with two kinds of antibiotics

  19. 脱细胞松质骨复合骨形态发生蛋白2异位成骨的实验研究

    Experimental study on ectopic osteogenesis of acellular cancellous bone combined with BMP-2

  20. 复合骨形成蛋白骨修复材料的生物相容性研究

    Study on Biocompatibility of Material Combined with Bone Morphogenetic Protein

  21. 异种骨载体复合骨形态发生蛋白修复兔甲状软骨缺损的实验

    Repair of rabbit thyroid cartilage defect with bone xenograft plus bone morphogenetic protein

  22. 硅酸钙-磷酸盐复合骨水泥的制备及其性能研究

    Preparation and Properties of Calcium Silicate-phosphate Composite Bone Cements

  23. 人工复合骨修复材料

    Advances in Research on Artificial Synthetic Bone Repair Material

  24. 术后12周,复合骨完全被成熟的骨组织取代,而单纯珊瑚植入区则表现为不完全性骨修复。

    At 12th week , the composite was replaced completely by mature bone .

  25. 同种异体骨联合自体骨复合骨移植用于瘤样骨病术后治疗

    Intermingled transplantation of allochthonous and autogenous bone in the treatment of tumor-like legion

  26. 可注射纳米磷灰石/高分子复合骨修复材料的性能

    Injectable bone repairing material of nano-apatite and polymer

  27. 钛复合骨移植在下颌骨肿瘤术后骨缺损中的应用

    Immediate Repair of Post-operative Defect with Mandibular Tumors by Titanium Compound with Bone Grafts

  28. 复合骨水泥椎体间固定的生物力学研究及临床应用

    The Experimental Studies of Biomechanics and Clinical Application in Intervertebra Fixation of Compound Bone Cement

  29. CS/CPP复合骨修复材料合成及其降解可控性探索

    Research on the syntheses and controlled degradation of CS / CPP composite for bone repair

  30. 有机-无机复合骨重建材料的研究进展

    Developments in Bone Regeneration by Organic-inorganic Technology