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4篇 您的检索式:作者名="Fugen Yu"
    题名 作者 年代 出处 被引量
1Construction schedule risk analysis of high roller-compacted concrete dams based on improved CSRAM显示文摘The applied technology of high roller-compacted concrete(RCC) dams is quite complicated because of various risk factors, including the weather condition, supply of concrete aggregate, efficiency of transport machinery and dam surface machinery, and so on. In order to ensure the comprehensiveness, accuracy and objectivity of construction schedule risk analysis, a mathematical model called improved correlated schedule risk analysis model(CSRAM) is proposed in this paper. This model takes into account not only the construction features of high RCC dams, but also the stochastic variations of risk factors with the construction schedule, as well as their comprehensive effects. Using Monte Carlo method to solve this model enables the completion probability of a high RCC dam construction within plan time, and uncertainty analysis of risk factors. Compared with the conventional CSRAM, the improved CSRAM has higher completion probability and more convergent distribution of a simulation period, making analysis results more accurate and closer to actual engineering conditions. Among the ten risk factors selected, efficiency of dam surface machinery and proficiency of workers are found to be of the maximum uncertainty.ZHONG DengHua YANG ShiRui CHANG HaoTian YU Jia YAN FuGen 2015Science China(Technological Sciences)2015,58,6:5
2Trimming of N-Glycans by the Golgi-Localized α-1,2-Mannosidases, MNS1 and MNS2, Is Crucial for Maintaining RSW2 Protein Abundance during Salt Stress in Arabidopsis显示文摘天门冬素(Asn/N ) 连接了 glycans 为蛋白质合拢, trafficking,和 endoplasmic 是重要的在优核质的联系蜂窝胃的降级。glycoproteins 的成熟包含在 Golgi 由另外的糖分子的 mannosidases 和三分支的 N-glycans 的增加整修 mannosyl 残余。然而,调停 Golgi 的甘露糖整修的生物重要性充分没被理解。这里,我们显示出二机能上地冗余的 mannosidases, MNS1 和 MNS2 的那废除,为在 A 和工厂 N-glycans 的 C 分支上整修的 -1,2-mannose 负责在 Arabidopsis 在盐压力条件下面导致严重的根生长抑制。相反,有在 oligosaccharide 先锋的生合成的缺点的异种当甘露糖整修不在时显示了提高的盐忍耐。然而,在 EBS3 的变化,为分叉的 N-glycan 先锋的形成被要求,压制了 mns1 mns2 的盐敏感的显型两倍异种。有趣地,我们观察了那 ? 纤维素生合成在高咸度下面在 mns1 mns2 根被损害。一致地, ? 许多膜抛锚了 endo -- 在纤维素生合成起一个关键作用的 1,4-endoglucanase (RSW2/KOR ) 和它的变异的变体 rsw2-1 ? 被调制由 ? 在盐应力下面整修的 -1,2-mannose。RSW2 的 Overexpression 能部分救 mns1 mns2 的盐敏感的显型。一起拿,这些结果建议 N-glycans 整修的那 MNS1/2-mediated 甘露糖在 modulating glycoprotein 丰富是关键的在植物承受盐应力。Chuanfa Liu Guanting Niu Huchen Zhang Yafei Sun Shubin Sun Fugen Yu Shan Lu Yonghua Yang Jianming Li Zhi Hong 2018Molecular Plant2018,11,5:3
3Effects of cerium on nitrogen metabolism of peach plantlet in vitro显示文摘Song Weiping Hong Fashui Wan Zhigang Zhou Yuzhen Gu Fugen Xu Hongoing Yu Mingliang Chang Youhong Zhao Mizhen Su Jiale 2003Biological Trace Element Research2003,,3:1
4Quadtree-based multi-focus image fusion using a weighted focus-measure显示文摘BAI Xiangzhi ZHANG Yu ZHOU Fugen 2015Information fusion2015,22,:1
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