With the viability of the cultured cellular scaffolds, it is possible to create tissue engineered heart valve leaflets in vitro.
体外培养的瓣叶存在生长活性,使用组织工程方法有可能生成组织工程心脏瓣膜。
With the viability of the cultured cellular scaffolds , it is possible to create tissue engineered heart valve leaflets in vitro.
体外培养的瓣叶存在生长活性,使用组织工程方法有可能生成组织工程心臓瓣膜。
Objective:To investigate the feasibility of applying self-developed pulsatile reactor in vitro in stress precondition of tissue-engineered heart valve.
目的:探讨自行研制的体外脉动反应器应用于组织工程心脏瓣膜应力预适应的可行性。
To investigate the feasibility of applying self-developed pulsatile reactor in vitro in stress precondition of tissue-engineered heart valve.
探讨自行研制的体外脉动反应器应用于组织工程心脏瓣膜应力预适应的可行性。
Objective: The experiment was designed to evaluate the in vitro creation of tissue engineered heart valve leaflets.
目的初步探讨组织工程心脏瓣叶体外生成的可行性。
After cultured for 1 week, the tissue engineered heart valve and unseeded scaffold were tested by platelet adhesion experiments.
体外培养1周后,取组织工程瓣膜及未种细胞的空支架做血小板黏附试验。
The endothelial cells differentiated in vitro were seeded onto the surface of decellularized scaffolds to construct tissue engineered heart valve.
经体外诱导成的内皮细胞后,种植于瓣膜支架,构建组织工程瓣膜。
The endothelial cells differentiated in vitro were seeded onto the surface of decellularized scaffolds to construct tissue engineered heart valve.
经体外诱导成的内皮细胞后,种植于瓣膜支架,构建组织工程瓣膜。
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