[1] 陈劲,赵晓婷,梁靓. 基于科学的创新[J]. 科学学与科学技术管理, 2013,34(6):3-7 Chen J., Zhao X. T., Liang L. Science-based Innovation[J]. Science of Science and Management of S.& T., 2013,34(6):3-7 [2] 柳卸林,高雨辰,丁雪辰. 寻找创新驱动发展的新理论思维——基于新熊彼特增长理论的思考[J]. 管理世界, 2017,(12):8-19 Liu X. L., Gao Y. C., Ding X. C. Seeking New Theoretical Thinking for Innovation Driven Development:Based on the New Schumpeterian Growth Theory[J]. Journal of Management World, 2017,(12):8-19 [3] 雷家骕,林苞. 中国追赶发达国家应特别关注基于科学的创新及其产业[J]. 理论探讨, 2014,(2):76-79 Lei J. S., Lin B. China should Pay Special Attention to the Science-based Innovation and Its Industries When Catching up with the Developed Countries[J]. Theoretical Investigation, 2014,(2):76-79 [4] Gray J., Szalay A. eScience-A Transformed Scientific Method[R]. Presentation to the Computer Science and Technology Board of the National Research Council, Mountain View, CA, 2007 [5] Hey T., Tansley S., Tolle K. M. The Fourth Paradigm:Data-Intensive Scientific Discovery[M]. Redmond, WA:Microsoft research, 2009 [6] Wang H., Fu T., Du Y., et al. Scientific Discovery in the Age of Artificial Intelligence[J]. Nature, 2023,620:47-60 [7] 许庆瑞. 研究、发展与技术创新管理[M]. 北京:高等教育出版社, 2010 Xu Q. R. Research, Development, and Technological Innovation Management[M]. Beijing:Higher Education Press, 2010 [8] 林苞. 科学-技术的汇合与分离:演化的视角[J]. 科学学研究, 2014,32(7):970-975 Lin B. The Convergence and Divergence of Science and Technology:An Evolutionary Perspective[J]. Studies in Science of Science, 2014,32(7):970-975 [9] 柳卸林,程鹏. 科学驱动的创新在中国[M]. 北京:科学出版社, 2018 Liu X. L., Cheng P. The Science Driven Innovation in China[M]. Beijing:Science Press, 2018 [10] Bell G., Hey T., Szalay A. Beyond the Data Deluge[J]. Science, 2009,323(5919):1297-1298 [11] 贾向桐. 大数据的新经验主义进路及其问题[J]. 江西社会科学, 2017,37(12):5-11 Jia X. T. The New Empirical Approach to Big Data and Its Problems[J]. Jiangxi Social Sciences, 2017,37(12):5-11 [12] Brynjolfsson E., Mitchell T. What can Machine Learning Do? Workforce Implications[J]. Science, 2017,358(6370):1530-1534 [13] 齐志远,高剑平,郝亚楠. 生产工具演变与劳动分工体系变革——从机器、专用人工智能到通用人工智能雏形ChatGPT[J]. 自然辩证法通讯, 2024,46(2):1-10 Qi Z. Y., Gao J. P., Hao Y. N. Evolution of the Tools of Production and Changes in the System of Division of Labor:From Machines, ANI to the AGI Prototype ChatGPT[J]. Journal of Dialectics of Nature, 2024,46(2):1-10 [14] Borgman C. L. The Conundrum of Sharing Research Data[J]. Journal of the American Society for Information Science and Technology, 2012,63(6):1059-1078 [15] Haak L. L., Baker D., Ginther D. K., et al. Standards and Infrastructure for Innovation Data Exchange[J]. Science, 2012,338(6104):196-197 [16] 孟小峰. 科学数据智能:人工智能在科学发现中的机遇与挑战[J]. 中国科学基金, 2021,35(3):419-425 Meng X. F. Scientific Data Intelligence:AI for Scientific Discovery[J]. Bulletin of National Natural Science Foundation, 2021, 35(3):419-425 [17] Liu J., Pacitti E., Valduriez P., et al. A Survey of Data-intensive Scientific Workflow Management[J]. Journal of Grid Computing, 2015,13(4):457-493 [18] Kitzes J., Turek D., Deniz F. The Practice of Reproducible Research:Case Studies and Lessons from the Data-intensive Sciences[M]. Berkeley:University of California Press, 2017 [19] 张志强. 面向领域知识发现的学科信息学理论与应用研究[M]. 北京:科学出版社, 2023 Zhang Z. Q. Research on the Theory and Application of Subject Informatics for Domain Knowledge Discovery[M]. Beijing:Science Press, 2023 [20] Grupp H. Dynamics of Science-based Innovation[M]. Berlin:Springer Berlin Heidelberg, 1992 [21] Cardinal L. B., Alessandri T. M., Turner S. F. Knowledge Codifiability, Resources, and Science-based Innovation[J]. Journal of Knowledge Management, 2001,5(2):195-204 [22] Pavitt K. Sectoral Patters of Technical Change:Towards a Taxonomy and Theory[J]. Research Policy, 2000,13(6):343-373 [23] Cardinal L. B., Hatfield D. E. Internal Knowledge Generation:The Research Laboratory and Innovative Productivity in the Pharmaceutical Industry[J]. Journal of Engineering and Technology Management, 2000,17(3-4):247-271 [24] Rosenberg N. Schumpeter and the Endogeneity of Technology[M]. London:Routledge, 2000 [25] 张庆芝,段勇倩,雷家骕. 基于科学的创新研究——以诺贝尔奖科学成果到商业产品为例[J]. 科学学研究, 2015,33(12):1770-1778 Zhang Q. Z., Duan Y. Q., Lei J. S. Science-based Innovation:The Commercialization of Nobel Prizes[J]. Studies in Science of Science, 2015,33(12):1770-1778 [26] 温珂,苏宏宇,宋琦. 基于过程管理的科研机构合作创新能力理论研究[J]. 科学学研究, 2012,30(5):793-800 Wen K., Su H. Y., Song Q. Process Management Based Research on Cooperative Innovation Capability of Research Institutes[J]. Studies in Science of Science, 2012,30(5):793-800 [27] 马佳,徐雨森,孙福全. 后发企业基于科学的创新过程研究[J]. 科学学与科学技术管理, 2019,40(5):52-69 Ma J., Xu Y. S., Sun F. Q. A Study on the Process of Science-based Innovation of Latecomer Firms[J]. Science of Science and Management of S.& T., 2019,40(5):52-69 [28] 王婧,雷家骕. "基于科学的企业"主导逻辑研究——以同方威视为例[J]. 科研管理, 2022,43(11):1-10 Wang J., Lei J. S. Research on the Dominant Logic of Science-based Firms-A Case Study of NUCTCH[J]. Science Research Management, 2022,43(11):1-10 [29] 陈劲,郑育艺,邱嘉铭,等. 企业科学能力概念的讨论与界定[J]. 科学学研究, 2007,25(S2):210-214 Chen J., Zheng Y. Y., Qiu J. M. A Discussion and Defining of the Concept of Industry Science Capability[J]. Studies in Science of Science, 2007,25(S2):210-214 [30] Coriat B., Orsi F., Weinstein O. Does Biotech Reflect a New Science-based Innovation Regime?[J]. Industry & Innovation, 2003,10(3):231-253 [31] 李树文,罗瑾琏,张志菲. AI能力如何助推企业实现价值共创——基于企业与客户间互动的探索性案例研究[J]. 中国工业经济, 2023,(5):174-192 Li S. W., Luo J. L., Zhang Z. F. How do AI Capabilities Promote Value Co-creation-A Exploratory Case Study Based on the Interaction between Enterprises and Customers[J]. China Industrial Economics, 2023,(5):174-192 [32] Bruni D. S., Verona G. Dynamic Marketing Capabilities in Science-based Firms:An Exploratory Investigation of the Pharmaceutical Industry[J]. British Journal of Management, 2009,20:101-117 [33] Motohashi K., Tomozawa T. Differences in Science-based Innovation by Technology Life Cycles:The Case of Solar Cell Technology[J]. International Journal of Technology Management, 2016,72(1/2/3):5-18 [34] 梁海山,魏江,万新明. 企业技术创新能力体系变迁及其绩效影响机制——海尔开放式创新新范式[J]. 管理评论, 2018, 30(7):281-291 Liang H. S., Wei J., Wan X. M. The Change of Enterprise Technological Innovation Capability System and Its Performance Impact Mechanism-New Paradigm of Haier Open Innovation[J]. Management Review, 2018,30(7):281-291 [35] Jajodia S., Kim W. Scope of Renamed Technical Committee on Data Engineering Revised[J]. Computer, 1987,20(8):96-97 [36] 张耀南. 数据工程学建设思考与实践[J]. 数据与计算发展前沿, 2022,4(1):5-19 Zhang Y. N. Data Engineering Discipline Construction and Practice[J]. Frontiers of Data & Computing, 2022,4(1):5-19 [37] Bernal J. D. The Social Function of Science[M]. London:Routledge, 1939 [38] 徐雨森. 追赶背景下装配品类企业技术链构建——基于金风科技和华录· 松下公司的案例研究[J]. 科研管理, 2011,32(8):67-73 Xu Y. S. The Establishing Process of Technology Links for Assembly Industry at the Catch-up Stage:Case Study of Goldwind Science and Technology Co., Ltd and China Hualu Panasonic AVC Co.,Ltd[J]. Science Research Management, 2011,32(8):67-73 [39] 李天柱,马佳,刘小琴,等. 科学型企业的若干基本问题研究[J]. 中国科技论坛, 2014,(10):99-105 Li T. Z., Ma J., Liu X. Q., et al. The Fundamental Research of the Science Enterprises[J]. Forum on Science and Technology in China, 2014,(10):99-105 [40] 李天柱,高皓天,王亚东. 高端科学仪器的创新特性与产业发展思路[J]. 科技和产业, 2021,21(2):109-114 Li T. Z., Gao H. T., Wang Y. D. The Innovative Characteristics and Industrial Development Ideas of High-end Scientific Instruments[J]. Science Technology and Industry, 2021,21(2):109-114 |