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1)  scaffold matrices
管状支架材料
2)  scaffold materials
支架材料
1.
Establishment of scaffold materials of deproteinized heterogeneous bone and their physicochemical properties;
异种脱蛋白组织工程骨支架材料的制备及理化特性研究
2.
Research progress of scaffold materials and related problems for bone tissue engineering;
骨组织工程支架材料及其相关的研究进展
3.
Nano-hydroxyapatite/collagen protein composite scaffold materials are synthesized from the supernate of saturated Ca(OH)2 solution,phosphoric acid and collagen protein by simultaneous titration at 36~39℃ and pH 8~9.
以饱和Ca(OH)2上清液、磷酸和胶原蛋白为原料,在36~39℃、pH=8~9条件下,用共滴定法制备纳米羟基磷灰石/胶原蛋白复合支架材料。
3)  Scaffold [英]['skæfəʊld]  [美]['skæfold]
支架材料
1.
Quantification of vascularization within spherical porous β-TCP scaffold in vivo;
球形多孔支架材料体内血管化的量化分析
2.
Present situation of corneal tissue engineering scaffold;
组织工程角膜支架材料研究现状
3.
Preparation and characterization of collagen as tissue engineering scaffold;
胶原支架材料的制备与表征
4)  Scaffold material
支架材料
1.
Adherence of human osteoblast on nHAC/PLA scaffold material;
纳米羟基磷灰石/胶原/聚乳酸支架材料对人成骨细胞早期附着影响的实验研究
2.
Properties and structure characterization of new type collagen scaffold materials;
新型胶原支架材料的结构特征与性能
3.
Preparation of tissue engineering scaffold material and research of its pore property;
组织工程支架材料的制备及其孔隙性能
5)  Scaffolds [英]['skæfəld]  [美]['skæfḷd]
支架材料
1.
Culture of osteoblasts and scaffolds in vitro;
成骨细胞和支架材料复合的研究进展
2.
Three-dimensional(3D),highly porous scaffolds with interconnected pore morphologies similar to trabecular bone have been fabricated by polymer sponge method using melt-derived borosilicate glass powder.
硼硅酸盐生物活性玻璃作为硬组织工程支架材料的研究具有重要的意义和广泛的应用前景。
3.
Porous apatite-wollastonite/ β-tricalcium phosphate composite scaffolds (AW/β-TCP) were prepared from apatite-wollastonite (AW) glass-ceramic powders and β-tricalcium phosphate (β-TCP) bioceramic powders, using stearic acid as porogen.
经模压成型、1170℃烧结制备磷灰石-硅灰石/β-磷酸三钙复合多孔支架材料 (AW/β-TCP)。
6)  tubular scaffold
管状支架
1.
Structure and properties of electrospun polylactide/silk fibroin-gelatin tubular scaffold
静电纺PLA/丝素明胶管状支架的结构与性能
2.
5mm) PLA tubular scaffold was fabricated via electrospinning which was performed on a high-speed rotating mandrel-type collector.
以具有良好生物相容性、生物可降解性的聚乳酸(PLA)为原料,通过静电纺丝法,以高速旋转的滚轴为收集装置,制备了PLA小口径管状支架(d=4。
3.
The electrospun PLGA tubular scaffolds were fabricated with biocompatible and biodegradable PLGA and a high-speed rotating mandrel-type was used as the collector.
静电纺丝构建组织工程支架材料是当前的研究热点,以良好生物相容性、生物可降解性的PLGA为原料,以高速旋转的滚轴为收集装置,通过静电纺丝法制备PLGA管状支架,研究不同工艺对管状支架形貌直径、孔隙率和生物力学性能的影响。
补充资料:管状定向碳纳米管

纳米本意是一种长度单位,纳米材料是指材料的尺寸处于1~100nm范围内的金属,金属化合物,无机物或高分子的颗粒,对纳米材料的研究和开发依赖于能看清原子或分子世界的仪器,1993年12月中国科学院庞世瑾教授在硅表面搬走了原子,写下了"中国"的字样,人类按需要排布一个个原子的技术成为现实,前不久,我国科学家成功合成了3nm长的管状定向碳纳米管,长度居世界之首,这种碳纤维具有强度高,刚度(抵抗变形的能力)高,密度小,熔点高,化学稳定性好的特点.

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