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1)  Lebone
人工骨泰
1.
Chronic tibial defection in children treated with grafting of fibula with vessel pedicles and Lebone under external fixators;
外固定架下带血管蒂腓骨及人工骨泰移植治疗儿童慢性感染性胫骨骨缺损
2)  The manpower bone establishes a bone
人工骨植骨
3)  artificial skull
人工颅骨
1.
Detecting content of trace MMA from composite materials of artificial skull with gas phase chromatography method;
人工颅骨用复合材料中微量甲基丙烯酸甲酯的气相色谱法测定
2.
s:This artificial skull was molded with medical silicone rubber and polyester fiber.
由医用硅橡胶和聚酯纤维复合模压制成了人工颅骨 ,简要介绍了其制备工艺、性能及临床应用结
3.
The preparation and mechanics capability of artificial skull which is made with carbon fiber and glass fiber hybrid reinforced polymethyl methacrylate(PMMA)/hydroxyapatite (HA)are presented in this paper.
主要论述了碳纤维 (CF)和玻璃纤维 (GF)混杂增强聚甲基丙烯酸甲酯 (PMMA) /羟基磷灰石 (HA)复合材料人工颅骨的制备方法及其力学性能。
4)  artificial bone
人工骨
1.
Experimental study of Nano-Hydroxyapatite/rhBMP-2 composite artificial bone;
纳米羟基磷灰石/重组人骨形成蛋白-2复合人工骨的实验研究
2.
Study on onlay implant with artificial bone scaffolds manufactured by low-temperature rapid prototyping technology;
低温快速成形人工骨的敷贴植骨实验研究
3.
Use the biomaterials of GTR membrane,artificial bone and bFGF to treat periodontal bone damage:Experimental study;
应用GTR膜与人工骨、bFGF等生物材料治疗牙周骨缺损的实验研究
5)  artifical bone
人工骨
1.
Objective To observe the effects and adverse reactions in the repair of Metacarpal bone defects after using Cem-Ostetic~(TM) artifical bone graft.
目的C em-O steticTM人工骨浆为多种无机钙盐与纯净水混合物,观察C em-O steticTM人工骨浆修复掌骨缺损的临床疗效及不良反应。
2.
[Result]The average porosity rate of artifical bone with TIPS method was 85.
[目的]研制新型三维多孔复合人工骨材料并评价其相关性能。
3.
The average porosity rate of artifical bone with TIPS method was 85.
研制性能优良的新型三维多孔复合人工骨材料,并评价其相关性能。
6)  Osteoset~ synthetic bone
Osteoset~人工骨
1.
Clinical study of Osteoset~ synthetic bone transplants and internel fixations on calcaneus fracture;
Osteoset~人工骨加内固定治疗跟骨骨折疗效分析
补充资料:人工骨
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性质:用人工材料制造的人骨的替代品或者骨折固定的材料,主要有高分子合成材料,如聚甲基丙烯酸甲酯、高密度聚乙烯、聚砜、聚左旋乳酸、乙醇酸共聚物、液晶自增强聚乳酸、自增强聚乙醇酸等,无机材料,如羟基磷灰石、氧化铝生物陶瓷等,可以替代人体头盖骨、肩、臂、指、肥肉关节等,其加工容易,价廉物美,在体内老化与腐蚀性小,但存在耐磨性差,同时人工骨与生物体愈合承受过重外力时又会发生骨吸收现象,从而造成人体骨的脱离。

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