bet365官网-bet365平台怎么样_7位百家乐扑克桌_全讯网新2代理 (中国)·官方网站

Professor Zhao Yuanjin and His Research Team of Southeast University Published the Latest Research Progress in the PNAS

Publisher:吳嬋Release time:2017-06-06Number of Views:1356


Recently, Professor Zhao Yuanjin, and his team made significant progress in the research of self-repairing bio-materials at the State Key Laboratory of Bio-electronics, School of Bio-science and Medical Engineering,Southeast University. Inspired by the self-repairing process of the human tissues, the members of the research group have developed a three-dimensional cross-linked networkof the mixed hydrogel system, which equips the biological materials with the self-repairing function. The results were published in the international Journal of the Proceedings of the National Academy of Sciences (PNAS) on May 22.

  

In the field of bio-medicine, hydrogel materials are widely used in bio-sensing, tissue engineering and other areas because of its unique softness and water retention. However, their vulnerability to damage in practice limit their wide use.Comparatively, most organisms have fostered their ability of self-repairing and recovery to improve their own quality of life and life cycle. Inspired by this, researchers have developed self-repairing hydrogel materials and applied them to different areas. However, many of the hydrogel materials required for bio-medicine can not achieve the function of self-repair because of their stable composition and simple structure. Therefore, Professor Zhao Yuanjin proposed the solution of constructinga three-dimensional cross-linked gel system. The members of the group found that composite materials could achieve the self-repairing function oncethey imparted another gel with self-repairing function into the anti-opal gel mesh without self-repairing function. The better bio-compatibility these materials demonstrated before and after self-repairing shows their bio-medical potential. In addition, due to the ordered microstructure of the composite materials and their preservation of  light-diffracted colors, these self-repairing materials can also be used for the building of the three-dimensional pattern of structural colors and provide new ideas for the new concept of anti-forgery and optical waveguide.

  

    As famed as the Nature and Science, The Proceedings of the National Academy of Sciences (PNAS) is one of the most cited comprehensive literature. The relevant work of the project has been funded by the National Excellent Youth Fund, Jiangsu Province Outstanding Youth Fund, and the 111 Program (Organ and Chip Science Innovation Guidance Base Project in Southeast University). The first author of the paper is Fu Fanfan, a 2015 doctoral student of Southeast University, and Professor Zhao Yuan Jin is the only corresponding author.

  


网上百家乐官网信誉度| 珠江太阳城广场| 榆次百家乐的玩法技巧和规则| 百家乐赢赌场百家乐| 最可信百家乐娱乐城| 百家乐官网高手技巧| 定24山尺寸深浅土色| 百家乐路单怎样| 皇家国际娱乐| 百家乐官网赌场牌路分析| 百家乐官网德州| 皇博线上娱乐| 百家乐美食坊| 太阳城百家乐官网出千技术| 百家乐娱乐平台官网网| 百家乐官网大路图| 皇家百家乐出租平台| 百家乐官网天下第一缆| 网上百家乐作弊下载| 澳门百家乐官网登陆网址| 百家乐免费体验金| 月亮城百家乐官网的玩法技巧和规则 | 百家乐统计概率| 网上娱乐城老虎机| 百家乐官网桌子豪华| 网上百家乐赌场| 百家乐官网包赢技巧| 百家乐视频游戏注册| 百家乐官网洗码| 百家乐2号破解下载| 做生意店内格局| 网上老虎机| 百家乐网哪一家做的最好呀| 新濠百家乐官网娱乐场| 百家乐官网玩法最多的娱乐城 | 百家乐官网b28博你发v| 澳门百家乐洗码提成查询| 模拟百家乐官网的玩法技巧和规则 | 百家乐电脑游戏机投注法实例| 新利国际| 太阳城娱乐管理网|