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12篇 您的检索式:作者名="Guoying DONG"
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12018 Chinese Pediatric Cardiology Society(CPCS) guideline for diagnosis and treatment of syncope in children and adolescents显示文摘Syncope belongs to the transient loss of consciousness(TLOC), characterized by a rapid onset, short duration, and spontaneous complete recovery. It is common in children and adolescents, accounting for 1% to 2% of emergency department visits.Recurrent syncope can seriously affect children's physical and mental health, learning ability and quality of life and sometimes cardiac syncope even poses a risk of sudden death. The present guideline for the diagnosis and treatment of syncope in children and adolescents was developed for guiding a better clinical management of pediatric syncope. Based on the globally recent development and the evidence-based data in China, 2018 Chinese Pediatric Cardiology Society(CPCS) guideline for diagnosis and treatment of syncope in children and adolescents was jointly prepared by the Pediatric Cardiology Society, Chinese Pediatric Society, Chinese Medical Association(CMA)/Committee on Pediatric Syncope, Pediatricians Branch, Chinese Medical Doctor Association(CMDA)/Committee on Pediatric Cardiology, Chinese College of Cardiovascular Physicians, Chinese Medical Doctor Association(CMDA)/Pediatric Cardiology Society, Beijing Pediatric Society, Beijing Medical Association(BMA). The present guideline includes the underlying diseases of syncope in children and adolescents, the diagnostic procedures, methodology and clinical significance of standing test and headup tilt test, the clinical diagnosis vasovagal syncope, postural orthostatic tachycardia syndrome, orthostatic hypotension and orthostatic hypertension, and the treatment of syncope as well as follow-up.Cheng Wang Yaqi Li Ying Liao Hong Tian Min Huang Xiangyu Dong Lin Shi Jinghui Sun Hongfang Jin Junbao Du Jindou An Jie Chen Mingwu Chen Qi Chen Sun Chen Yonghong Chen Zhi Chen Adolphus Kai-tung Chau Junbao Du Zhongdong Du Junkai Duan Hongyu Duan Xiangyu Dong Lin Feng Lijun Fu Fangqi Gong Yonghao Gui Ling Han Zhenhui Han Bing He Zhixu He Xiufen Hu Yimin Hua Guoying Huang Min Huang Ping Huang Yujuan Huang Hongfang Jin Mei Jin Bo Li Fen Li Tao Li Xiaohui Li Xiaoyan Liu Yan Li Haitao Lv Tiewei Lv Zipu Li Luyi Ma Silin Pan Yusheng Pang Hua Peng Yuming Qin Jie Shen Lin Shi Kun Sun Jinghui Sun Hong Tian Jie Tian Cheng Wang Hong Wang Lei Wang Jinju Wang Wendi Wang Yuli Wang Rongzhou Wu Tianhe Xia Yanyan Xiao Chunhong Xie Yanlin Xing Zhenyu Xiong Baoyuan Xu Yi Xu Hui Yan Shiwei Yang Qijian Yi Xia Yu Xianyi Yu Yue Yuan Hongyan Zhang Huili Zhang Li Zhang Qingyou Zhang Xi Zhang Yanmin Zhang Zhiwei Zhang Cuifen Zhao Bin Zhou Hua Zhu 2018Science Bulletin2018,63,23:54
2Regulation of Seed Vigor by Manipulation of Raffinose Family Oligosaccharides in Maize and Arabidopsis thaliana显示文摘棉白糖家庭 oligosaccharides (RFO ) 在许多植物种类在成熟干燥期间在种子积累。然而, RFO 是否在建立种子活力有一个角色,仍然保持不清楚。GALACTINOL SYNTHASE (GOLS ) ,棉白糖 SYNTHASE (RS ) ,和 STACHYOSE SYNTHASE (圣) 是为 RFO 负责的酶 ? 在植物的生合成。有趣地,仅仅棉白糖在玉米种子被检测,并且唯一的玉米 RS 基因(ZmRS ) 被识别。在这研究,我们发现二独立 mutator (亩) 打断了 zmrs 线,不包含棉白糖但是 hyperaccumulating galactinol, ? 显著地减少了种子活力,与空 segregant 控制相比。不同于玉米, Arabidopsis thaliana 种子包含几 RFO (棉白糖, stachyose,和 verbascose ) 。A 的操作。thaliana RFO ? 由 overexpressing ZmGOLS2, ZmRS,或 AtSTS 的内容表明了那 co-overexpression ZmGOLS2 和 ZmRS,或 ZmGOLS2 的 overexpression 独自一个,显著地增加了 RFO 的全部的内容并且提高了 Arabidopsis 种子活力。令人惊讶地,当 ZmRS 的 overexpression 增加了种子棉白糖内容时,它的 overexpression 戏剧性地减少了种子活力并且减少了 galactinol, stachyose,和 verbascose 的种子数量。相反, atrs5 异种种子类似于关于种子活力和 RFO 内容的野类型的那些,除了 stachyose 它在 atrs5 种子积累了。全部的 RFO, RFO/sucrose 比率,然而并非绝对单个 RFO ? 数量,断然与 A 相关。thaliana 种子活力, stachyose 和 verbascose 多于棉白糖作出贡献到。一起拿,这些结果提供新卓见进种子活力的规章的机制并且在 monocot 和 dicot 在 modulating 种子活力为 RFO 揭示不同要求。Tao Li Yumin Zhang Dong Wang Ying Liu Lynnette M.A. Dirk Jack Goodman A. Bruce Downie Jianmin Wang Guoying Wang Tianyong Zhao 2017Molecular Plant2017,10,12:13
3Multidrug-resistant Proteus mirabilis isolates carrying blaOXA-1 and blaNDM-1 from wildlife in China:increasing public health risk显示文摘The emergence of multidrug resistance(MDR)in Proteus mirabilis clinical isolates is a growing public health concern and has serious implications for wildlife.What is the role of wildlife has been become one of the hot issues in disseminating antimicrobial resistance.Here,54 P.mirabilis isolates from 12 different species were identified.Among them,25 isolates were determined to be MDR by profile of antimicrobial susceptibility;10 MDR P.mirabilis isolates were subjected to comparative genomic analysis by whole genome sequencing.Comprehensive analysis showed that chromosome of P.mirabilis isolates mainly carries multidrug-resistance complex elements harboring resistance to carbapenem genes blaOXA-1,blaNDM-1,and blaTEM-1.Class I integron is the insertion hotspot of IS26;it can be inserted into type I integron at different sites,thus forming a variety of multiple drug resistance decision sites.At the same time,Tn21,Tn7,and SXT/R391 mobile elements cause widespread spread of these drug resistance genes.In conclusion,P.mirabilis isolates from wildlife showed higher resistance to commonly used clinic drugs comparing to those from human.Therefore,wild animals carrying MDR clinical isolates should be paid attention to by the public health.Qian KANG Xue WANG Jianan ZHAO Zhihui LIU Fang JI Han CHANG Jianchun YANG Shijia HU Ting JIA Xiaojia WANG Jiagui TANG Guoying DONG Guocheng HU Jing WANG Yanyu ZHANG Jianhua QIN Chengmin WANG 2021Integrative Zoology2021,16,6:4
4Generation of Gene-Modified Cynomolgus Monkey via Cas9/RNA-Mediated Gene Targeting in One-Cell Embryos显示文摘Yuyu Niu Bin Shen Yiqiang Cui Yongchang Chen Jianying Wang Lei Wang Yu Kang Xiaoyang Zhao Wei Si Wei Li Andy Peng Xiang Jiankui Zhou Xuejiang Guo Ye Bi Chenyang Si Bian Hu Guoying Dong Hong Wang Zuomin Zhou Tianqing Li Tao Tan Xiuqiong Pu Fang Wang Shaohu 2014Cell2014,,:3
5Cloning and characterization of a novel CBL-interacting protein kinase from maize显示文摘Jinfeng Zhao Zhenfei Sun Jun Zheng Xiying Guo Zhigang Dong Junling Huai Mingyue Gou Junguang He Yongsheng Jin Jianhua Wang Guoying Wang 2009Plant Molecular Biology2009,,6:2
6Thesequence and de novo assembly of the giant panda genome显示文摘LI R FAN W TIAN G ZHU H HE L CAI J HUANG Q CAIQ LI B BAI Y ZHANG Z ZHANG Y WANG W LI J WEI F LI H JIAN M LI J ZHANG Z NIELSEN R LI D GU W YANG Z XUAN Z RYDER OA LEUNG FC ZHOU Y CAO J SUN X FU Y FANG X GUO X WANG B HOU R SHEN F MU B NI P LIN R QIAN W WANG G YU C NIE W WANGJ WU Z LIANG H MIN J WU Q CHENG S RUAN J WANGM SHI Z WEN M LIU B REN X ZHENG H DONG D COOKK SHAN G ZHANG H KOSIOL C XIE X LU Z ZHENG H LI Y STEINER CC LAM TT LIN S ZHANG Q LI G TIAN J GONG T LIU H ZHANG D FANG L YE C ZHANG J HU W XU A REN Y ZHANG G BRUFORD MW LI Q MA L GUOY AN N HU Y ZHENG Y SHI Y LI Z LIU Q CHEN Y ZHAO J QU N ZHAO S TIAN F WANG X WANG H XU L LIU X VINAR T WANG Y LAM TW YIU SM LIU S ZHANGH LI D HUANG Y WANG X YANG G JIANG Z WANG J QIN N LI L LI J BOLUND L KRISTIANSEN K WONG GK OLSON M ZHANG X LI S YANG H WANG J WANG J 2010Na-ture2010,463,:1
7Cloning and characterization of a novel CBL-interacting protein kinase from maize显示文摘Jinfeng Zhao Zhenfei Sun Jun Zheng Xiying Guo Zhigang Dong Junling Huai Mingyue Gou Junguang He Yongsheng Jin Jianhua Wang Guoying Wang 2009Plant Molecular Biology2009,,6:1
8Generation of Gene-Modified Cynomolgus Monkey via Cas9/RNA-Mediated Gene Targeting in One-Cell Embryos显示文摘Yuyu Niu Bin Shen Yiqiang Cui Yongchang Chen Jianying Wang Lei Wang Yu Kang Xiaoyang Zhao Wei Si Wei Li Andy Peng Xiang Jiankui Zhou Xuejiang Guo Ye Bi Chenyang Si Bian Hu Guoying Dong Hong Wang Zuomin Zhou Tianqing Li Tao Tan Xiuqiong Pu Fang Wang Shaohu 2014Cell2014,,:1
9Cloning and characterization of a novel CBL-interacting protein kinase from maize显示文摘Jinfeng Zhao Zhenfei Sun Jun Zheng Xiying Guo Zhigang Dong Junling Huai Mingyue Gou Junguang He Yongsheng Jin Jianhua Wang Guoying Wang 2009Plant Molecular Biology2009,,6:1
10Potential factors and mechanism of particulate matters explosive increase induced by free radicals oxidation显示文摘Atmospheric particulate pollution in China has attracted much public attention.Occasionally, the particle number concentration increases sharply in a short time period,which is defined as a 'particulate matter explosive increase'. Heavy particulate matter pollution not only reduces visibility but also has an adverse effect on human health. Hence,there is an urgent need to discover the causes of particulate matter explosive increase.During this campaign, the particle number concentration and free radicals were measured at a tall building on the campus of Lanzhou University of Technology. Additionally, we examined a series of chemicals to reproduce the observed particulate matter explosive increase in a smog chamber to determine its potential factors. Then, we analyzed the mechanism of particulate matter explosive increase in the presence of free radicals. We found that, among the potential inorganic and organic sources analyzed, a mixture of organic and SO_2 in the research region had a major effect on particulate matter explosive increase. Moreover, free radical oxidation has a large effect, especially in the formation of organic particulates.Guoying Wang Shiming Jia Xiuli Niu Haoqi Tian Yanrong Liu Zhong Xie Chao Liu Yucan Dong Ying Su Jianglei Yu Gaofeng Shi Xuefu Chen Lan Li Peng Zhang 2019Journal of Environmental Sciences2019,31,7:0
11Formation of copper boride on Cu(111)显示文摘Boron forms compounds with nearly all metals,with notable exception of copper and other group IB and IIB elements.Here,we report an unexpected discovery of ordered copper boride grown epitaxially on Cu(111)under ultrahigh vacuum.Scanning tunneling microscopy experiments combined with ab initio evolutionary structure prediction reveal a remarkably complex structure of 2D-Cu_(8)B_(14).Strong intra-layer p–d hybridization and a large amount of charge transfer between Cu and B atoms are the key factors for the emergence of copper boride.This makes the discovered material unique and opens up the possibility of synthesizing ordered low-dimensional structures in similar immiscible systems.Chengguang Yue Xiao-Ji Weng Guoying Gao Artem ROganov Xiao Dong Xi Shao Xiaomeng Wang Jian Sun Bo Xu Hui-Tian Wang Xiang-Feng Zhou Yongjun Tian 2021Fundamental Research2021,1,4:0
12Molecular characterization of H1N1 influenza A viruses from human cases in North America显示文摘Subtypes of H1N1 influenza virus can be found in humans in North America,while they are also asso-ciated with the infection of swine.Characterization of the genotypes of viral strains in human popula-tions is important to understand the source and distribution of viral strains.Genomic and protein sequences of 10 isolates of the 2009 outbreak ofinfluenza A(H1N1) virus in North America were obtained from GenBank database.To characterize the genotypes of these viruses,phylogenetic trees of genes PB2,PB1,PA,HA,NP,NA,NS and M were constructed by Phylip3.67 program and N-Linked glycosylation sites of HA,NA,PB2,NS1 and M2 proteins were analyzed online by NetNGlyc1.0 program.Phylogenetic analysis indicated that these isolates are virtually identical but may be recombinant viruses because their genomic fragments come from different viruses.The isolates also contain a char-acteristic lowly pathogenic amino acid motif at their HA cleavage sites(IPSIQSR↓GL),and an E residue at position 627 of the PB2 protein which shows its high affinity to humans.The homologous model of M proteins showed that the viruses had obtained the ability of anti-amantadine due to the mutation at the drug-sensitive site,while sequence analysis of NA proteins indicated that the viruses are still suscep-tible to the neuraminidase inhibitor drug(i.e.oseltamivir and zanamivir) because no mutations have been observed.Our results strongly suggested that the viruses responsible for the 2009 outbreaks ofinfluenza A(H1N1) virus have the ability to cross species barriers to infect human and mammalian animals based on molecular analysis.These findings may further facilitate the therapy and prevention of possible transmission from North America to other countries.WU Bin WANG ChengMin DONG GuoYing LUO Jing ZHAO BaoHua HE HongXuan 2009Chinese Science Bulletin2009,54,13:0
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