[1] 凌辉. 美国出口管制对我国科学仪器发展的影响与对策分析[J]. 国际贸易,2014,(01): 21-24+29.
Ling H. Analysis on the influence and countermeasures of American export control on the development of Scientific instruments in China[J]. Intertrade,2014,(01): 21-24+29.
[2] Pavitt K. Sectoral patterns of technical change: Towards a taxonomy and a theory[J]. Research Policy,1984,13(6): 343-373.
[3] Kahin B, Foray D. Interactive learning, social capital, and economic performance[J]. 2006: 63-74.
[4] 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): 5.
Chen J, Zhao X T, Liang L. Science-Based Innovation[J]. Science of Science and Management of S.& T,2013,34(6): 5.
[5] 邱烨, 刘凌, 李惟庚,等. 国产科学仪器发展现状研究[J]. 分析仪器,2021,(03): 185-189.
Qiu Y, Liu L, Li W G, et al. Research on the development of domestic scientific instrument industry[J]. Analytical Instrumentation,2021,(03): 185-189.
[6] Niosi J. Fourth-generation R&D: From linear models to flexible innovation[J]. Journal of business research,1999,45(2): 111-117.
[7] Feldman H D. Restoring our Competitive Edge: Competing through Manufacturing[J]. American Journal of Small Business,1985,10(1): 67-69.
[8] Gibbons M, Johnston R. The roles of science in technological innovation[J]. Research Policy,1974,3(3): 220-242.
[9] Marsili O.The anatomy and evolution of industries[M]. Cheltenham and Northampton: Edward Elgar,2001.
[10] Narin F, Pinski G, Gee H H. Structure of the biomedical literature[J]. Journal of the American society for information science,1976,27(1): 25-45.
[11] Huang M H, Yang H W, Chen D Z. Increasing science and technology linkage in fuel cells: A cross citation analysis of papers and patents[J]. Journal of Informetrics,2015,9(2): 237-249.
[12] 张鹏, 雷家骕. 基于科学的创新与产业:相关概念探究与典型产业识别[J]. 科学学研究,2015,33(09): 1313-1323+1356.
Zhang P, Lei J S. Science-based innovation and industries: Related concepts and typical industries identification[J]. Studies in Science of Science,2015,33(09): 1313-1323+1356.
[13] Wang L, Li Z. Knowledge Transfer from Science to Technology—The Case of Nano Medical Device Technologies[J]. Frontiers in Research Metrics and Analytics,2018,3.
[14] Van Looy B, Debackere K, Callaert J, et al. Scientific capabilities and technological performance of national innovation systems: An exploration of emerging industrial relevant research domains[J]. Scientometrics,2006,66(2): 295-310.
[15] Ke Q. Technological impact of biomedical research: The role of basicness and novelty[J]. Research Policy,2020,49(7): 104071.
[16] Wang L, Li Z. Knowledge flows from public science to industrial technologies[J]. The Journal of Technology Transfer,2021,46(4): 1232-1255.
[17] Von Hippel E. The dominant role of users in the scientific instrument innovation process[J]. Research Policy,1976,5(3): 212-239.
[18] Hohberger J. Diffusion of science-based inventions[J]. Technological Forecasting and Social Change,2016,100(104): 66-77.
[19] Sorenson O, Fleming L. Science and the diffusion of knowledge[J]. Research policy,2004,33(10): 1615-1634.
[20] 张龙鹏, 钟易霖. 基础研究发展对技术创新的影响:基于最优研发结构视角[J]. 科技进步与对策,2021,38(17): 19-25.
Zhang L P, Zhong Y L. The Impact of Basic Research Development on Technological Innovation: Based on the Perspective of Optimal R&D Structure[J]. Science & Technology Progress and Policy,2021,38(17): 19-25.
[21] Cassiman B, Veugelers R, Zuniga P. In search of performance effects of (in) direct industry science links[J]. Industrial and Corporate Change,2008,17(4): 611-646.
[22] Petruzzelli A M, Rotolo D, Albino V. Determinants of patent citations in biotechnology: An analysis of patent influence across the industrial and organizational boundaries[J]. Technological Forecasting and Social Change,2015,91(1): 208-221.
[23] P?ge F, Harhoff D, Gaessler F, et al. Science quality and the value of inventions[J]. Science advances,2019,5(12): eaay7323.
[24] Fukuzawa N, Ida T. Science linkages between scientific articles and patents for leading scientists in the life and medical sciences field: the case of Japan[J]. Scientometrics,2016,106(2): 629-644.
[25] Breschi S, Catalini C. Tracing the links between science and technology: An exploratory analysis of scientists’ and inventors’ networks[J]. Research Policy,2010,39(1): 14-26.
[26] Gittelman M, Kogut B. Does Good Science Lead to Valuable Knowledge? Biotechnology Firms and the Evolutionary Logic of Citation Patterns[J]. Management Science,2003,49(4): 366-382.
[27] Liao Y C, Phan P H. Internal capabilities, external structural holes network positions, and knowledge creation[J]. Journal of Technology Transfer,2016,41(5): 1-20.
[28] 初大智, 张丽丽, 黄泽彬,等. 知识溢出跨地域边界的影响因素研究——以生物技术产业为例[J]. 科技管理研究,2020,40(17): 124-132.
Chu D Z, Zhang L L, Huang Z B, et al. Study on Influencing Determinants of Knowledge Spillover across Geographical Boundaries in China: Taking the Biotechnology Industry as an Example[J]. Science and Technology Management Research 2020,40(17): 124-132.
[29] Beise M, Stahl H. Public research and industrial innovations in Germany[J]. Research policy,1999,28(4): 397-422.
[30] Finardi U. Time relations between scientific production and patenting of knowledge: the case of nanotechnologies[J]. Scientometrics,2011,89(1): 37-50.
[31] Popp D. From science to technology: The value of knowledge from different energy research institutions[J]. Research Policy,2017,46(9): 1580-1594.
[32] Nerkar A, Shane S. When do start-ups that exploit patented academic knowledge survive?[J]. International Journal of Industrial Organization,2003,21(9): 1391-1410.
[33] Bruno C, Reinhilde V, Pluvia Z. In search of performance effects of (in)direct industry science links[J]. Industrial & Corporate Change,2008,17(4): 611-646.
[34] 郭嘉仪. 知识溢出视角下区域创新活动的空间集聚研究[J]. 商业时代,2012,(18): 137-139.
Guo J Y. Spatial agglomeration of regional innovation activities from the perspective of knowledge spillover [J]. Journal of Commercial Economics,2012,(18): 137-139. |