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16篇 您的检索式:作者名="Shenbin"
    题名 作者 年代 出处 被引量
1Cluster analysis on summer precipitation field over Qinghai-Tibet Plateau from 1961 to 2004显示文摘夏天从 1961 ~ 2004 的 Qinghai 西藏高原上的 97 个气象学的车站的逐日的降水数据被选择通过积累的变化分析时间空间的分发,关联分析,回归分析,LU Heli SHAO Quanqin LIU Jiyuan WANG Junbang CHEN Shenbin CHEN Zhuoqi 2008Journal of Geographical Sciences2008,18,3:7
2Advanced nitrogen removal with simultaneous Anammox and denitrification in sequencing batch reactor显示文摘Rui Du Yongzhen Peng Shenbin Cao Chengcheng Wu Dongchen Weng Shuying Wang Jianzhong He 2014Bioresource Technology2014,,:2
3Advanced nitrogen removal with simultaneous Anammox and denitrification in sequencing batch reactor显示文摘Rui Du Yongzhen Peng Shenbin Cao Chengcheng Wu Dongchen Weng Shuying Wang Jianzhong He 2014Bioresource Technology2014,,:1
4Mutual influence between human activities and climate change in the Tibetan Plateau during recent years显示文摘Mingyuan Du Shigeto Kawashima Seiichiro Yonemura Xianzhou Zhang Shenbin Chen 2004Global and Planetary Change2004,,3:1
5Advanced nitrogen removal from wastewater by combining anammox with partial denitrification显示文摘Rui Du Yongzhen Peng Shenbin Cao Shuying Wang Chengcheng Wu 2014Bioresource Technology2014,,:1
6Climatic change on the Tibetan Plateau: potential evapotranspiration trends from 1961-2000显示文摘Chen Shenbin Liu Yunfen Axel Thomas 2006Climatic Change2006,76,:1
7Climatic change on the Tibetan Plateau: potential evapotranspiration trends from 1961 - 2000 显示文摘Shenbin C Yunfeng L Thomas A 2006Climatic Change2006,76,34:1
8Climatic change on the Tibetan Plateau: Potential evapotranspiration Trends from 1961-2000 显示文摘Chen Shenbin Liu Yunfeng Thomas A 2006Climatic Change2006,76,:1
9Climatic change on the Tibetan Plateau: Potential Evapotranspi ration Trends from 1961 -2000 显示文摘Chen Shenbin Liu Yunfeng Axel Thomas 2006Climatic Change2006,76,4:1
10Climatic change on the Tibetan Plateau:potential evapotranspiration trends from 1961- 2000显示文摘Chen Shenbin Liu Yunfen Axel Thomas 2006Climatic Change2006,76,:1
11Climatic change on the Tibetan Plateau: potential evapotranspiration trends from 1961-2000显示文摘CHEN SHENBIN LIU YUNFEN AXEL THOMAS 2006Climatic Change2006,76,:1
12Climatic change on the Tibetan Plateau:potential evapotranspiration trends from 1961-2000 显示文摘Chen Shenbin Liu Yunfen Axel Thomas 2006Climatic Change2006,76,:1
13Preparation of tryptophan modified chitosan beads and their adsorption of low density lipoprotein显示文摘An adsorbent with good adsorption perform-ance for binding low density lipoprotein (LDL) was synthe-sized through a simple preparation procedure. The phase-inversion technique was employed to form macropor-ous chitosan beads, which were then simultaneously acti-vated, cross-linked and connected with a long spacer arm via the reaction with ethyleneglycol diglycidylether (EGDE). Tryptophan (Trp) was subsequently coupled to the ep-oxy-activated beads. This adsorbent demonstrated satisfac-tory adsorption capacity and selectivity for LDL, and it also exhibited excellent blood compatibility. The effect of spacer arms with different length on the adsorption selectivity was investigated experimentally, and the mechanism was ana-lyzed.FUGuoqi SHIKeyu YUANZhi HEBinglin LIUBin SHENBin WANGQishun 2003Chinese Science Bulletin2003,48,21:1
14Climatic change on the Tibetan Plateau: Potential Evapotranspiration Trends from 1961–2000显示文摘Chen Shenbin Liu Yunfeng Axel Thomas 2006Climatic Change2006,,3:1
15RESEARCH ON CYLINDRICAL BOX TYPE WINDOWS USED TO TRANSMIT HIGH POWER CW显示文摘The formula for calculating the threshold of average transmitting power of cylindrical TE11 mode window is revised by accurate deduction and a practical method for calculating the temperature increment of the dielectric disk in cylindrical box type window is given. Meanwhile,a typical cylindrical box type window is calculated and used as an example to discuss the power capacity, the special harmfulness and elimination of ghost mode resonance when the window is used to transmit high power Continuous Wave(CW).LinFumin DingYaogen ShenBin XuShouxi 2004Journal of Electronics(China)2004,21,5:0
16Temporal dynamics of microglia-astrocyte interaction in neuroprotective glial scar formation after intracerebral hemorrhage显示文摘The role of glial scar after intracerebral hemorrhage(ICH)remains unclear.This study aimed to investigate whether microglia-astrocyte interaction affects glial scar formation and explore the specific function of glial scar.We used a pharmacologic approach to induce microglial depletion during different ICH stages and examine how ablating microglia affects astrocytic scar formation.Spatial transcriptomics(ST)analysis was performed to explore the potential ligand-receptor pair in the modulation of microglia-astrocyte interaction and to verify the functional changes of astrocytic scars at different periods.During the early stage,sustained microglial depletion induced disorganized astrocytic scar,enhanced neutrophil infiltration,and impaired tissue repair.ST analysis indicated that microglia-derived insulin like growth factor 1(IGF1)modulated astrocytic scar formation via mechanistic target of rapamycin(mTOR)signaling activation.Moreover,repopulating microglia(RM)more strongly activated mTOR signaling,facilitating a more protective scar formation.The combination of IGF1 and osteopontin(OPN)was necessary and sufficient for RM function,rather than IGF1 or OPN alone.At the chronic stage of ICH,the overall net effect of astrocytic scar changed from protective to destructive and delayed microglial depletion could partly reverse this.The vital insight gleaned from our data is that sustained microglial depletion may not be a reasonable treatment strategy for early-stage ICH.Inversely,early-stage IGF1/OPN treatment combined with late-stage PLX3397 treatment is a promising therapeutic strategy.This prompts us to consider the complex temporal dynamics and overall net effect of microglia and astrocytes,and develop elaborate treatment strategies at precise time points after ICH.Jingwei Zheng Haijian Wu Xiaoyu Wang Guoqiang Zhang Jia'nan Lu Weilin Xu Shenbin Xu Yuanjian Fang Anke Zhang Anwen Shao Sheng Chen Zhen Zhao Jianmin Zhang Jun Yu 2023Journal of Pharmaceutical Analysis2023,13,8:0
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