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12篇 您的检索式:作者名="Guo, Yunli"
    题名 作者 年代 出处 被引量
1A sequence of 28S rRNA-derived small RNAs is enriched in mature sperm and various somatic tissues and possibly associates with inflammation显示文摘Chu, Chen Yu, Lu Wu, Bin Ma, Li Gou, Lan-Tao He, Miao Guo, Yunli Li, Zhi-Tong Gao, Wei Shi, Huijuan Liu, Mo-Fang Wang, Hongyan Chen, Charlie Degui Drevet, Joel R. Zhou, Yuchuan Zhang, Yonglian 2017Journal of Molecular Cell Biology2017,9,3:6
2A haplotype map of genomic variations and genome-wide association studies of agronomic traits in foxtail millet(Setaria italica)显示文摘Guanqing Jia Xuehui Huang Hui Zhi Yan Zhao QiangZhao Wenjun Li Yang Chai Lifang Yang Kunyan Liu Hengyun Lu Chuanrang Zhu Yiqi Lu Congcong Zhou Danlin Fan Qijun Weng Yunli Guo Tao Huang LeiZhang Tingting Lu Qi Feng Hangfei Hao HongkuanLiu Ping Lu Ning Zhang Yuhui Li Erhu Guo ShujunWang Suying Wang Jinrong Liu Wenfei Zhang GuoqiuChen Baojin Zhang Wei Li Yongfang Wang HaiquanLi Baohua Zhao Jiayang Li Xianmin Diao Bin HanJia 2013Nature Genetics2013,45,8:1
3Paraxial propagation of partially coherent Hermite-Gauss beams显示文摘Qiu Yunli Guo Hong Chen Zhaoxi 2005Opt Commun2005,245,:1
4Paraxial propagation of partially coherent Hermite-Gauss beams显示文摘Qiu Yunli Guo Hong Chen Zhaoxi 2005Opt Commun2005,245,1:1
5Paraxial propagation of partially coherent Hermite-Gauss beams显示文摘Qiu Yunli Guo Hong Chen Zhaoxi 2005Opt Commun2005,245,16:1
6Nonclassical properties of even and odd coherent states显示文摘Yunlie Xia Guangcan Guo 1989Phys Lett1989,136,6:1
7Paraxial prop- agation of partially coherent Hermite-Gauss beams显示文摘QIU Yunli GUO Hong CHEN Zhaoxi 2005Opt Commun2005,245,16:1
8Influencing factor analysis based on electrical-thermal-pyrolytic simulation of carbon fiber composites lightning damage显示文摘DONG Qi GUO Yunli CHEN Jingliang 2016Composite Structures2016,140,:1
9Coupled electrical thermal pyrolytic analysis of carbon fiber/epoxy composites subjected to lightning strike显示文摘DONG Qi GUO Yunli SUN Xiaochen 2015Polymer2015,56,:1
10Structural and electrical properties of high Curie temperature Aurivillius phase composite ceramics with largely enhanced piezoelectricity显示文摘High performance piezoelectric ceramics with high Curie temperatures(TC) are the bottle necks of relevant high temperature devices. In this study, the electrical performance and microstructure of Li and Mn codoped Aurivillius-type composite ceramics with a composition Ca_(0.99-x_Bi_(6.99+x)(Li Mn)_(0.01) Nb Ti_5O_(24)(x = 0–0.8) were systematically investigated. The results indicated that uniform intergrowth structure with a lattice similar to that of the end member CBT could be formed at a low x value(x < 0.4). Phase separation occurred when more A-site Ca^(2+) ions were replaced by Bi^(3+) ions. Nevertheless, all composite samples showed d_(33) values about 2 to 3 times of that of the constituent phase Ca Bi_4Ti_4O_(15) and Bi_3 Ti NbO_9 with still a high depolarization temperature. The performance of the samples was found to be related to the density and larger lattice distortion along the polarization a axis. The results also demonstrated that formation of the compound system was an effective way in improving the performance of Aurivillius-type high TC piezoelectric ceramics.WANG YunLi CAI Kai MA JingTao ZENG Fei GUO Dong 2016Science China(Technological Sciences)2016,59,7:0
11A Comprehensive Study of the High Temperature Performance and Microstructure of Different High Tc Piezoelectric Ceramics显示文摘The expanding demand for piezoelectric devices working at elevated temperatures,particularly those for aerospace and automotive industries,has stimulated a great deal of research effort on high Cu-rie Temperature(T C)piezoelectric ceramics.The fabrication of this type of piezoelectric ceramics isDong Guo Kai Cai Yunli Wang 2016功能材料信息2016,13,1:0
12cDNA-AFLP analysis reveals altered gene expression profiles involved in juice sac granulation in pummelo(Citrus grandis)显示文摘Citrus fruits produced in China are often affected by granulation.Granulation is an altered physiological state of citrus fruits occurring usually before harvest but whose underlying mechanisms remain elusive.In this study,cDNA-AFLP technology enabled the identification of 116 granulation-associated genes in pummelo(C.grandis)juice sacs.Differentially expressed transcript-derived fragments(TDFs)were shown to be mainly involved in biological regulation and signal transduction,carbohydrate and energy metabolism,nucleic acid,protein metabolism,stress responses,and cell metabolism.Therefore,granulation in pummelo juice sacs seems to involve the following alterations:(1)changes in hormone levels;(2)activation of metabolic pathways related to ATP and sugar synthesis to produce more energy;(3)nucleic acid accumulation and increased protein degradation;(4)activation of stress-responsive metabolic pathways;(5)accelerated juice sac senescence.Our findings provide an overview of differential responses occurring at the transcriptional level in granulated juice sacs,thus revealing new insights into the adaptive mechanisms underlying this altered physiological state in‘Guanximiyou'pummelo(C.grandis)juice sacs.Xianyou Wang Longlong Guo Ruijin Zhou Yunli Liu Huiling Hu Ping Wang 2022Fruit Research2022,2,1:0
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