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    题名 作者 年代 出处 被引量
1Biomarker Records of Phytoplankton Productivity and Community Structure Changes During the Last 14000 Years in the Mud Area Southwest off Cheju Island, East China Sea显示文摘The ecological environment in the East China Sea(ECS)and the Yellow Sea(YS)has changed significantly due to sea-level rising and the Kuroshio incursion since the last deglaciation.In this study,biomarker records of core F10B from the mud area southwest off Cheju Island(MSWCI)were generated to evaluate phytoplankton productivity and community structure changes in response to environmental evolution during the last 14 kyr.The contents of diatom,dinoflagellate and haptophyte biomarkers(brassicasterol,dinosterol and C37alkenones)display similar trends,with increasing phytoplankton productivity during the last 14kyr due to the increased influences of the Kuroshio,and especially due to the eddy-induced upwelling during the late Holocene.On the other hand,the contents of terrestrial biomarkers(C28+C30+C32n-alkanols)and terrestrial organic matter(TOM)proxies(TMBR′and BIT)all reveal decreasing TOM input into the area around the sampling site for the 14 kyr,mostly due to sea-level ris-ing.Phytoplankton biomarker ratios reveal a shift from a haptophyte-dominated community at 6.2 2.5 kyr BP to a diatom-dominated community at 2.5 1.45 kyr BP,likely caused by a stronger cold eddy circulation system at 2.5 1.45 kyr BP in the MSWCI.YUAN Zineng XING Lei LI Li ZHANG Hailong XIANG Rong ZHAO Meixun 2013Journal of Ocean University of China2013,12,4:10
2Holocene Temperature Records from the East China Sea Mud Area Southwest of the Cheju Island Reconstructed by theU_(37)~K~' and TEX_(86) Paleothermometers显示文摘As an important marginal sea under the influences of both the Changjiang River and the Kuroshio,the East China Sea (ECS) environment is sensitive to both continental and oceanic forcing.Paleoenvironmental records are essential for understanding the long-term environmental evolution of the ECS and adjacent areas.However,paleo-temperature records from the ECS shelf are currently very limited.In this study,the'K37U and TEX86paleothermometers were used to reconstruct surface and subsurface temperature changes of the mud area southwest of the Cheju Island (Site F10B) in the ECS during the Holocene.The results indicate that temperature changes of F10B during the early Holocene (11.6 6.2 kyr) are associated with global climate change.During the period of 6.2 2.5 kyr,the similar variability trends of smoothing average of T (the difference between surface and subsurface temperature) of Site F10B and the strength of the Kuroshio suggest that the Kuroshio influence on the site started around 6.2 kyr when the Kuroshio entered the Yellow Sea and continued to 2.5 kyr.During the late Holocene (2.5 1.45 kyr) ,apparent decreases of'K37U sea surface temperature (SST) and T imply that the direct influence of the Kuroshio was reduced while cold eddy induced by the Kuroshio gradually controlled hydrological conditions of this region around 2.5 kyr.XING Lei JIANG Yiqing YUAN Zineng ZHANG Hailong LI Li ZHOU Liping ZHAO Meixun 2013Journal of Ocean University of China2013,12,4:3
3Terrestrial and marine biomarker estimates of organic matter sources and distributions in surface sediments from the East China Sea shelf显示文摘Lei Xing Hailong Zhang Zineng Yuan Yao Sun Meixun Zhao 2011Continental Shelf Research2011,,10:1
4Terrestrial and marine biomarker estimates of organic matter sources and distributions in surface sedi ments from the East China Sea shelf显示文摘Xing Lei Zhang Hailong Yuan Zineng 2011Continental Shelf Research2011,31,10:1
5Morphological characteristics and co-stimulatory molecule (CD80, CD86, CD40) expression in tumor infiltrating dendritic cells in human endometrioid adenocarcinoma显示文摘Jianjun Jia Zineng Wang Xiaomao Li Zhixin Wang Xiaoyu Wang 2011European Journal of Obstetrics and Gynecology2011,,:1
6Emerging markers for antimicrobial resistance monitoring显示文摘The appearance and spread of antibiotic-resistant pathogens known as antimicrobial resistance(AMR)is one of the major worldwide health crises that humanity have to deal with over the next decades.One of the main methods for addressing AMR is the effective screening for antimicrobial insensitivity in clinical and environmental monitoring.Current clinical laboratory procedures use traditional culturebased antibiotic susceptibility testing(AST)methods,which can take up to 24 h to identify which drug is suitable for the infection inhibition.Therefore,it is vital to develop novel strategies that offer quick,simple,affordable,reliable,sensitive and accurate AMR monitoring.Sensors for AMR markers detection could possess the essential qualities for quickly identifying resistant microorganisms and could give vital data for the selection of antibacterial drugs administration.This review offers a summary of the innovative application of these AMR markers detection strategies focusing on healthcare and environmental surveillance for the AMR genotypic or phenotypic assessment.Zineng Yi Xiaona Xu Xiaohan Meng Congyu Liu Qianpeng Zhou Deyan Gong Zhengbao Zha 2023Chinese Chemical Letters2023,34,10:0
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