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1)  bioactive glass particulate
生物活性玻璃颗粒
1.
Objective To observe the effects of bioactive glass particulate in the healing of acute femoral shaft fracture.
目的 观察生物活性玻璃颗粒在急性股骨干骨折愈合过程中的作用。
2)  Bioglass ['baiəuɡlɑ:s]
生物活性玻璃微粒
1.
Clinical observation of repairing the perforation of floor of pulp chamber with Bioglass;
生物活性玻璃微粒修复髓室底穿孔的临床观察
3)  bioactive glass
生物活性玻璃
1.
Histological Evaluation of Bioactive Glass for Guided Periodontal Tissue Regeneration;
生物活性玻璃引导牙周组织再生的研究
2.
Simple bone cysts in teenagers treated by grafting of bioactive glass and autologous bone marrow
生物活性玻璃复合自体骨髓移植治疗青少年单纯性骨囊肿
3.
The effect of the composition of the sol-gel derived bioactive glass on the microstructure of the materials were investigated in detail by using SEM,BET and XRD techniques,compared with 45S5 bioactive glass which has been applied to clinic.
利用溶胶-凝胶低温合成法制备了CaO-P2O5-SiO2系统生物活性玻璃骨修复及骨组织工程材料。
4)  Bioglass ['baiəuɡlɑ:s]
生物活性玻璃
1.
Preparation of the porous scaffolds of chitosan-gelatin/APTES modified bioglass
壳聚糖-明胶/APTES改性生物活性玻璃复合支架的制备工艺
2.
Bioglass crystal were dissolved to Dulbecco s modified eagle medium(DMEM) fluid,the four ionics concentration viz Na、Ca、P、Si were determined.
通过在培养液内加入生物活性玻璃,观察生物活性玻璃对成骨细胞增殖的影响。
3.
In order to improve interface compatibility of the polymer and sol-gel derived bioglass,3-aminopropyl-triethoxysilane(APTES) was grafted on the surface of the bioglass.
为了改善溶胶-凝胶生物活性玻璃(BG)与高分子材料的界面相容性,采用氨丙基三乙氧基硅烷(APTES)偶联剂改性溶胶凝胶生物活性玻璃。
5)  biological granular activated carbon
生物颗粒活性炭
1.
Phenol removal by biological granular activated carbon;
生物颗粒活性炭处理苯酚废水
6)  glass particles
玻璃颗粒
1.
Charge of glass particles in ethanol was changed from negative to positive by introducing calcium ions into suspension,which resulted in co-deposition of the glass particles and hydroxyapatite particles in ethanol subsequently.
研究了玻璃颗粒在乙醇溶液中对Ca2+的选择吸附,反转了玻璃颗粒在乙醇中的荷电性质,使玻璃颗粒能够在乙醇中与羟基磷灰石发生共沉积。
补充资料:A-W生物活性玻璃陶瓷
分子式:
CAS号:

性质:含有磷灰石和硅灰石两种结晶相的特定组成的玻璃陶瓷。在A-W微晶下班中,磷灰石和硅灰石结晶尺寸约为0.1~0.5μm,呈弥散分布。由于针状的硅灰石微晶阻止了微裂纹传播,使其弯曲强度和断裂韧性大大提高;而磷灰石微晶赋予其生物活性使能与自然骨形成骨键合,其界面结合强度达13MPa。已被应用于骨缺损修复,以及人工关节、人工齿根、颅骨、颌骨等修复体。

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