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哈尔滨太平机场T2航站楼高架桥可调贝雷梁支架设计与施工技术 被引量:1
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作者 吕一品 冷祥玉 +1 位作者 薛玉峰 李晓宏 《施工技术》 CAS 北大核心 2016年第S2期311-314,共4页
针对哈尔滨太平机场扩建工程不停航需求,机场高架桥工程应用可调贝雷梁支架-通道技术,完美解决机场扩建过程中新建高架桥与原有航站楼外交通网络空间交叉带来的不停航施工难题,确保了扩建工程的顺利施工和过港旅客的通行安全。
关键词 可调贝雷梁 支架-通道 不停航 设计 施工技术
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Biomaterial Scaffolds with Biomimetic Fluidic Channels for Hepatocyte Culture 被引量:2
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作者 Xiao Li Jiankang He Yaxiong Liu Qian Zhao WanquanWu Dichen Li Zhongmin Jin 《Journal of Bionic Engineering》 SCIE EI CSCD 2013年第1期57-64,共8页
Biomaterial scaffolds play an important role in maintaining the viability and biological functions of highly metabolic hepatocytes in liver tissue engineering. One of the major challenges involves building a complex m... Biomaterial scaffolds play an important role in maintaining the viability and biological functions of highly metabolic hepatocytes in liver tissue engineering. One of the major challenges involves building a complex microchannel network inside three-dimensional (3D) scaffolds for efficient mass transportation. Here we presented a biomimetic strategy to generate a mi- crochannel network within porous biomaterial scaffolds by mimicking the vascular tree of rat liver. The typical parameters of the blood vessels were incorporated into the biomimetic design of the microchannel network such as branching angle and diameter. Silk fibroin-gelatin scaffolds with biomimetic vascular tree were fabricated by combining micromolding, freeze drying and 3D rolling techniques. The relationship between the micro-channeled design and flow pattern was revealed by a flow experiment, which indicated that the scaffolds with biomimetic vascular tree exhibited unique capability in improving mass transportation inside the 3D scaffold. The 3D scaffolds, preseeded with primary hepatocytes, were dynamically cultured in a bioreactor system. The results confirmed that the pre-designed biomimetic microchannel network facilitated the generation and expansion of hepatocytes. 展开更多
关键词 liver tissue engineering SCAFFOLD biomimetic vascular tree dynamic culture HEPATOCYTE
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