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地方政府网络:理论基础与研究前沿 被引量:1
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作者 刘卫星 易洪涛 《公共行政评论》 北大核心 2023年第3期181-194,200,共15页
地方政府网络是地方政府之间或地方政府与帮助其履行职能的其他行动者之间形成的关系网络,是地方政府行动者解决集体行动困境的一种自组织方案,在公共服务供给、公共事务治理等过程中发挥了重要作用。地方政府网络吸引了众多学者的广泛... 地方政府网络是地方政府之间或地方政府与帮助其履行职能的其他行动者之间形成的关系网络,是地方政府行动者解决集体行动困境的一种自组织方案,在公共服务供给、公共事务治理等过程中发挥了重要作用。地方政府网络吸引了众多学者的广泛关注,并取得了丰富的研究成果。论文介绍和梳理了地方政府网络的概念与基本内容、相关理论基础、研究传统以及研究前沿等。作为公共行政研究的一个新兴的研究子领域,地方政府网络研究在中国的情境下具有很多值得进一步挖掘与发展的理论和实践问题。基于已有相关研究的梳理,论文对中国情境下地方政府网络的研究提出三点建议:一是要通过严谨的实证研究设计来加强中国地方政府网络的相关研究;二是需要结合前沿的网络理论与中国的实际情况,提出既能够与国际理论进行对话,又能够有效解释中国地方合作实践的理论框架;三是未来地方政府网络研究需要将不同类型的网络视作复杂网络关系系统的不同侧面,来分析这些网络之间的互相影响和演化。 展开更多
关键词 地方政府网络 理论概述 研究述评
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The combination therapy of imatinib and dasatinib achieves long-term molecular response in two imatinib-resistant and dasatinibintolerant patients with advanced chronic myeloid leukemia
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作者 Yu Zhu Liangqin Pan +4 位作者 Ming Hong weixing liu Chun Qiao Jianyong Li Sixuan Qian 《The Journal of Biomedical Research》 CAS CSCD 2016年第6期525-528,共4页
For patients with chronic myeloid leukemia(CML) failing imatinib therapy,second-generation tyrosine kinase inhibitors(TKIs) are recommended.Here,we describe two patients with advanced CML who failed imatinib thera... For patients with chronic myeloid leukemia(CML) failing imatinib therapy,second-generation tyrosine kinase inhibitors(TKIs) are recommended.Here,we describe two patients with advanced CML who failed imatinib therapy and did not tolerate the recommended dose of dasatinib,but then achieved a major molecular response with the combination of imatinib and dasatinib with no significant extramedullar/ toxicity.Our observations suggest that combination of TKIs may provide an additive/synergistic antileukemic effect. 展开更多
关键词 chronic myeloid leukemia tyrosine kinase inhibitors resistance combined therapy
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The grassland carbon cycle:Mechanisms,responses to global changes,and potential contribution to carbon neutrality 被引量:2
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作者 Lingli liu Emma J.Sayer +11 位作者 Meifeng Deng Ping Li weixing liu Xin Wang Sen Yang Junsheng Huang Jie Luo Yanjun Su JoséM.Grünzweig Lin Jiang Shuijin Hu Shilong Piao 《Fundamental Research》 CAS CSCD 2023年第2期209-218,共10页
Grassland is one of the largest terrestrial biomes,providing critical ecosystem services such as food production,biodiversity conservation,and climate change mitigation.Global climate change and land-use intensificati... Grassland is one of the largest terrestrial biomes,providing critical ecosystem services such as food production,biodiversity conservation,and climate change mitigation.Global climate change and land-use intensification have been causing grassland degradation and desertification worldwide.As one of the primary medium for ecosystem energy flow and biogeochemical cycling,grassland carbon(C)cycling is the most fundamental process for maintaining ecosystem services.In this review,we first summarize recent advances in our understanding of the mechanisms underpinning spatial and temporal patterns of the grassland C cycle,discuss the importance of grasslands in regulating inter-and intra-annual variations in global C fluxes,and explore the previously unappreciated complexity in abiotic processes controlling the grassland C balance,including soil inorganic C accumulation,photochemical and thermal degradation,and wind erosion.We also discuss how climate and land-use changes could alter the grassland C balance by modifying the water budget,nutrient cycling and additional plant and soil processes.Further,we examine why and how increasing aridity and improper land use may induce significant losses in grassland C stocks.Finally,we identify several priorities for future grassland C research,including improving understanding of abiotic processes in the grassland C cycle,strengthening monitoring of grassland C dynamics by integrating ground inventory,flux monitoring,and modern remote sensing techniques,and selecting appropriate plant species combinations with suitable traits and strong resistance to climate fluctuations,which would help design sustainable grassland restoration strategies in a changing climate. 展开更多
关键词 Climate changes Land-use change Soil Biotic and abiotic interactions Grassland degradation Grassland restoration Carbon accounting Carbon storage and sequestration mechanisms
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