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1)  collagen scaffold material
胶原纤维支架
2)  Fibrin glue scaffold
纤维蛋白胶支架
3)  nanofibrous scaffold
纤维支架
1.
With the rapid development of tissue engineering,nanofibrous scaffolds have been gaining popularity for use as an extra-cellular matrix for cell seeding.
高分子纳米纤维支架具有与天然细胞外基质相似的形态结构,能够为细胞的种植和生长提供合适的微环境,在组织工程中得到了广泛的应用。
4)  collagen scaffold
胶原支架
1.
Osteogenetic and mechanical property studies of reinforced self-hardening calcium phosphate cement with collagen scaffold;
胶原支架增强自固化磷酸钙骨水泥的力学及成骨性能研究
2.
And collagen scaffold was made as a matrix for those cells we proliferated to seed,UEC on one side and SMC on the other side.
经过体外培养和扩增后,将P3代UEC和USMC接种在胶原支架上。
5)  collagen fiber
胶原纤维
1.
Adsorption of phosphate by Fe(Ⅲ) immobilized on collagen fiber;
胶原纤维固载Fe(Ⅲ)对磷酸根的吸附特性
2.
Ferric(Ⅲ)immoblized collagen fiber and its adsorption for bacteria;
胶原纤维固化铁(Ⅲ)吸附材料的制备及其吸附细菌
3.
Detection the collagen fiber change and its significance in SARS lesions of the lung;
SARS肺部病变胶原纤维的检测及其意义
6)  collagen fibre
胶原纤维
1.
Relation of IL-18 and collagen fibre with plaque stability in aorta atherosclerotic lesion;
IL-18、胶原纤维和主动脉粥样硬化斑块稳定性的关系
2.
The adsorption of Cr (VI) by collagen fibre immobilized black wattle tannin, as well as the adsorption kinetics, column adsorption kinetics of Cr (VI) and adsorption mechanism were studied under different temperatures and pH values.
研究了胶原纤维固化黑荆树单宁对Cr(VI)的吸附。
3.
Using collagen fibre as matrices,the immobilized tannins adsorbents based on black wattle,larch and myrtan tannins were prepared through crosslinking reaction.
 以胶原纤维为基质,通过交联剂将黑荆树单宁、落叶松单宁和毛杨梅单宁固化在胶原纤维上制备吸附材料。
补充资料:胶原纤维
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性质:胶原纤维由胶原构成,是构成真皮的主要纤维。占真皮重量的95%~98%。动物皮的基本性能取决于胶原纤维的编织形式和化学特性。胶原纤维能组成纤维束,在真皮内相互穿插交织,粗的纤维束有时分作几股较细的,较细的有时又和其他纤维束并合成一股较粗的纤维束,如此不断地又分又合,纵横交错,编织成一种特殊的网络结构,使生皮和革具有很高的机械强度。胶原纤维的直径约20~150μm,每条纤维由直径2~5μm的细纤维组成,细纤维又由直径约200×10-8cm的原纤维构成,原纤维还可拆分为直径约30×10-8cm的纤丝,纤丝又由直径为(12~17)×10-8cm的初原纤维所构成。如黄牛皮中,真皮乳头层近表面处胶原纤维束纤细,编织紧密;粒面下的乳头层纤维束编织疏松,强度较差。真皮网状层纤维束粗壮且编织紧实,织角也高,物理机械强度好。

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