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1)  Bone induction activities
诱导成骨活性
2)  Osteoinductive activity
骨诱导活性
1.
Comparison of osteoinductive activity of three types of bone graft materials
三种骨移植材料的骨诱导活性对比实验研究
2.
Methods bBMP with efficient osteoinductive activity was confirmed by the results of SDS PAGE analysis and histologic observation.
方法 通过SDS PAGE电泳及生物活性鉴定实验 ,证实bBMP保留了其活性蛋白成分 ,具有良好的骨诱导活性。
3)  bone conductivity
成骨诱导性
4)  Osteoinduction active material
骨诱导活性材料
1.
Repairing of dog peri-implantitis bone defects using osteoinduction active material compounded with platelet-rich plasma
骨诱导活性材料复合富血小板血浆修复犬种植体周围骨缺损
2.
Effects of marrow core decompression with thick passage and bone grafting with osteoinduction active material on 23 patients with early osteonecrosis of femoral head
粗通道髓芯减压联合骨诱导活性材料植骨术治疗早期股骨头坏死23例
3.
Objective:To explore the potential of using platelet-rich plasma(PRP) and osteoinduction active material(OAM)compounded with PRP for the reconstruction of bone defects of peri-implant by animal experiment.
目的:探讨富血小板血浆(platelet-richplasma,PRP)、PRP复合骨诱导活性材料(osteoinduction active material,OAM)对种植体周围骨缺损修复的作用。
5)  Osteoinduction
诱导成骨
1.
Osteoinduction of CPPf/PLLA porous polymer adsorbing BMP 2/TGF β 1 in femoral head necrosis of rabbits;
复合多孔生物材料在股骨头坏死模型中诱导成骨的观察
2.
Experimental study on the ability of osteoinduction of allogeneic surface decalcified bone matrix gelatin;
同种异体表面脱钙骨基质明胶诱导成骨能力的实验研究
3.
Objective To observe the histological changes after BMP-2/TGF-β 1-adsorbed PLLA(poly-L-lactic acid)/CPPf(calcium polyphosphate fiber) porous polymer being infilled into the necrotic areas of femoral heads, and evaluate their activity of osteoinduction and biodegradation in order to search a new therapy for femur head necrosis(FHN).
目的 观察吸附有BMP 2和TGF β1的PLLA/CPPf多孔材料植入股骨头坏死 (Femurheadnecrosis ,FHN)病灶清除区后的组织学变化 ,评价其诱导成骨活性及生物降解性 ,以探索FHN治疗的新方法。
6)  osteogenic induction
成骨诱导
1.
Osteogenic induction of rabbit s bone marrow stromal cells and transfection of AAV-EGFP in vitro;
兔骨髓基质干细胞成骨诱导及增强型绿色荧光蛋白基因腺相关病毒体外转染的研究
补充资料:聚甲基丙烯酸甲酯-生物活性陶瓷骨水泥
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性质: 用生物活性陶瓷颗粒增进骨水泥表面的骨传导能力,通过颗粒与长人基体的新骨键合或为新骨所替换而增强骨水泥,从而提高其固结力,增长寿命。该复合材料缺点是初始强度低,目前仅限于在承受低负载的体位使用。

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