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3篇 您的检索式:作者名="Runxia Lin"
    题名 作者 年代 出处 被引量
1N-Linked Glycosylation of GP5 of Porcine Reproductive and Respiratory Syndrome Virus Is Critically Important for Virus Replication In Vivo显示文摘Zuzhang Wei Tao Lin Lichang Sun Yanhua Li Xiaoming Wang Fei Gao Runxia Liu Chunyan Chen Guangzhi Tong Shishan Yuan 2012Journal of Virology2012,,18:1
2KDM2B能够依赖其招募PRC1.1复合物的功能调控体细胞重编程显示文摘文章简介PRC1(Polycomb Repressive Complex 1)复合物在发育过程中起着非常重要的作用,很多复合物成分的缺失或者异常都能直接导致胚胎发育的异常。最近的研究发现PRC1包含多种变体,但是其对细胞命运调控的具体机制并不十分清楚。Zhiwei Zhou Xuejie Yang Jiangping He Jing Liu Fang Wu Shengyong Yu Yuting Liu Runxia Lin He Liu Yuanbin Cui Chunhua Zhou Xiaoshan Wang Jian Wu Shangtao Cao Lin Guo Lihui Lin Tao Wang Xiaozhong Peng Boqing Qiang Andrew P.Hutchins 裴端卿 陈捷凯 2018科学新闻2018,0,4:0
3Nucleation and growth of Fe-rich phases in Al-5Ti-1B modified Al-Fe alloys investigated using synchrotron X-ray imaging and electron microscopy显示文摘Plate-like Fe-rich intermetallic phases directly influence the mechanical properties of recycled Al alloys;thus, many attempts have been made to modify the morphology of these phases. Through synchrotron X-ray imaging and electron microscopy, the underlying nucleation and growth mechanisms of Fe-rich phases during the solidification of Al-5 Ti-1 B-modified Al-2 Fe alloys were revealed in this study. The results showed that the Al-5 Ti-1 B grain refiner as well as the applied pressure both resulted in reduction of the size and number of primary Al_(3)Fe phases and promoted the formation of eutectic Al_(6)Fe phases.The tomography results demonstrated that Al-5 Ti-1 B changed the three-dimensional(3 D) morphology of primary Fe-rich phases from rod-like to branched plate-like, while a reduction in their thickness and size was also observed. This was attributed to the fact that Ti-containing solutes in the melts inhibit the diffusion of Fe atoms and the Al_(3)Fe twins produce re-entrant corner on the twin boundaries along the growth direction. Moreover, the TiB_(2) provides possible nucleation sites for Al_6Fe phases. The nucleation mechanism of Fe-rich phases is discussed in terms of experimental observations and crystallography calculations. The decrease in the lattice mismatch between TiB_(2) and Al_(6)Fe phases was suggested, which promoted the transformation of Al_(3)Fe to Al_(6)Fe phases.Yuliang Zhao Weiwen Zhang Dongfu Song Bo Lin Fanghua Shen Donghai Zheng ChunXiao Xie Zhenzhong Sun Yanan Fu Runxia Li 2021Journal of Materials Science & Technology2021,,21:0
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