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Spillover Effects and the Science Base of Innovations Reconsidered: An Empirical Approach

Citations

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Cited by:

  1. Suzuki, Jun & Kodama, Fumio, 2004. "Technological diversity of persistent innovators in Japan: Two case studies of large Japanese firms," Research Policy, Elsevier, vol. 33(3), pages 531-549, April.
  2. Wolfgang Becker & Juergen Peters, 2000. "Technological Opportunities, Absorptive Capacities, and Innovation," Discussion Paper Series 195, Universitaet Augsburg, Institute for Economics.
  3. Chan-Yuan Wong, 2013. "On a path to creative destruction: science, technology and science-based technological trajectories of Japan and South Korea," Scientometrics, Springer;Akadémiai Kiadó, vol. 96(1), pages 323-336, July.
  4. Martin Kalthaus, 2017. "Identifying technological sub-trajectories in photovoltaic patents," Jena Economics Research Papers 2017-010, Friedrich-Schiller-University Jena.
  5. Hyojeong Lim & Yongtae Park, 2010. "Identification of technological knowledge intermediaries," Scientometrics, Springer;Akadémiai Kiadó, vol. 84(3), pages 543-561, September.
  6. Loet Leydesdorff & Lutz Bornmann, 2012. "Mapping (USPTO) patent data using overlays to Google Maps," Journal of the American Society for Information Science and Technology, Association for Information Science & Technology, vol. 63(7), pages 1442-1458, July.
  7. Bruns, Stephan B. & Kalthaus, Martin, 2020. "Flexibility in the selection of patent counts: Implications for p-hacking and evidence-based policymaking," Research Policy, Elsevier, vol. 49(1).
  8. Loet Leydesdorff & Daniele Rotolo & Ismael Rafols, 2012. "Bibliometric perspectives on medical innovation using the medical subject Headings of PubMed," Journal of the American Society for Information Science and Technology, Association for Information Science & Technology, vol. 63(11), pages 2239-2253, November.
  9. Tijssen, Robert J. W., 2001. "Global and domestic utilization of industrial relevant science: patent citation analysis of science-technology interactions and knowledge flows," Research Policy, Elsevier, vol. 30(1), pages 35-54, January.
  10. Blind, Knut & Grupp, Hariolf, 1999. "Interdependencies between the science and technology infrastructure and innovation activities in German regions: empirical findings and policy consequences," Research Policy, Elsevier, vol. 28(5), pages 451-468, June.
  11. Tijssen, Robert J. W. & van Wijk, Erik, 1999. "In search of the European Paradox: an international comparison of Europe's scientific performance and knowledge flows in information and communication technologies research," Research Policy, Elsevier, vol. 28(5), pages 519-543, June.
  12. Eric J. Iversen, "undated". "A patent share and citation analysis of knowledge bases and interactions in the Norwegian innovation system," STEP Working paper series A0799, The STEP Group, Studies in technology, innovation and economic policy.
  13. Wolfgang Becker, 2003. "Evaluation of the Role of Universities in the Innovation Process," Discussion Paper Series 241, Universitaet Augsburg, Institute for Economics.
  14. Marta Riba Vilanova & Loet Leydesdorff, 2001. "Why Catalonia cannot be considered as a regional innovation system," Scientometrics, Springer;Akadémiai Kiadó, vol. 50(2), pages 215-240, February.
  15. Fang Han & Christopher L. Magee, 2018. "Testing the science/technology relationship by analysis of patent citations of scientific papers after decomposition of both science and technology," Scientometrics, Springer;Akadémiai Kiadó, vol. 116(2), pages 767-796, August.
  16. Tang, Chor Foon & Tan, Eu Chye, 2013. "Exploring the nexus of electricity consumption, economic growth, energy prices and technology innovation in Malaysia," Applied Energy, Elsevier, vol. 104(C), pages 297-305.
  17. Li, George Yunxiong & Ascani, Andrea & Iammarino, Simona, 2024. "The material basis of modern technologies. A case study on rare metals," Research Policy, Elsevier, vol. 53(1).
  18. Jin Guo & Bingmei Gu & Xialing Sun & Jinli Xue & Baiyun Yuan, 2019. "Communication Barrier, Spillover Effect and Industrial-Technological Innovation," Sustainability, MDPI, vol. 11(18), pages 1-20, September.
  19. Autant-Bernard, Corinne, 2001. "Science and knowledge flows: evidence from the French case," Research Policy, Elsevier, vol. 30(7), pages 1069-1078, August.
  20. Eric J. Iversen, 2000. "An Excursion into the Patent-Bibliometrics of Norwegian Patenting," Scientometrics, Springer;Akadémiai Kiadó, vol. 49(1), pages 63-80, August.
  21. Qingjun Zhao & Jiancheng Guan, 2012. "Modeling the dynamic relation between science and technology in nanotechnology," Scientometrics, Springer;Akadémiai Kiadó, vol. 90(2), pages 561-579, February.
  22. Becker Wolfgang & Peters Jürgen, 2005. "Innovation Effects of Science-Related Technological Opportunities / Innovationseffekte von technologischen Möglichkeiten aus dem Wissenschaftsbereich: Theoretical Considerations and Empirical Findings," Journal of Economics and Statistics (Jahrbuecher fuer Nationaloekonomie und Statistik), De Gruyter, vol. 225(2), pages 130-150, April.
  23. Tijssen, Robert J. W., 1998. "Quantitative assessment of large heterogeneous R&D networks: the case of process engineering in the Netherlands1," Research Policy, Elsevier, vol. 26(7-8), pages 791-809, April.
  24. Chan-Yuan Wong & Xiao-Shan Yap, 2012. "Mapping technological innovations through patent analysis: a case study of foreign multinationals and indigenous firms in China," Scientometrics, Springer;Akadémiai Kiadó, vol. 91(3), pages 773-787, June.
  25. Bart Verspagen, 1997. "Estimating international technology spillovers using technology flow matrices," Review of World Economics (Weltwirtschaftliches Archiv), Springer;Institut für Weltwirtschaft (Kiel Institute for the World Economy), vol. 133(2), pages 226-248, June.
  26. Xia Gao & Jiancheng Guan, 2009. "Networks of scientific journals: An exploration of Chinese patent data," Scientometrics, Springer;Akadémiai Kiadó, vol. 80(1), pages 283-302, July.
  27. Juergen Peters & Wolfgang Becker, 1998. "Technological Opportunities, Academic Research, and Innovation Activities in the German Automobile Supply Industry," Discussion Paper Series 175, Universitaet Augsburg, Institute for Economics.
  28. Thilo Gamber & Monika Friedrich-Nishio & Hariolf Grupp, 2008. "Science and technology in standardization: A statistical analysis of merging knowledge structures," Scientometrics, Springer;Akadémiai Kiadó, vol. 74(1), pages 89-108, January.
  29. Chul Lee & Gunno Park & Jina Kang, 2018. "The impact of convergence between science and technology on innovation," The Journal of Technology Transfer, Springer, vol. 43(2), pages 522-544, April.
  30. Breschi, Stefano & Lissoni, Francesco & Malerba, Franco, 2003. "Knowledge-relatedness in firm technological diversification," Research Policy, Elsevier, vol. 32(1), pages 69-87, January.
  31. Sandén, Björn A. & Hillman, Karl M., 2011. "A framework for analysis of multi-mode interaction among technologies with examples from the history of alternative transport fuels in Sweden," Research Policy, Elsevier, vol. 40(3), pages 403-414, April.
  32. Wong, Chan-Yuan & Goh, Kim-Leng, 2010. "Growth behavior of publications and patents: A comparative study on selected Asian economies," Journal of Informetrics, Elsevier, vol. 4(4), pages 460-474.
  33. Chan-Yuan Wong & Kim-Leng Goh, 2012. "The pathway of development: science and technology of NIEs and selected Asian emerging economies," Scientometrics, Springer;Akadémiai Kiadó, vol. 92(3), pages 523-548, September.
  34. Cristina Simone & Luca Proietti, 2012. "Wholly proprietary versus wholly open knowledge strategies: some empirical evidences from Italian biotech firms," Journal of Management & Governance, Springer;Accademia Italiana di Economia Aziendale (AIDEA), vol. 16(3), pages 425-447, August.
  35. Carlsson, Bo & Jacobsson, Staffan & Holmen, Magnus & Rickne, Annika, 2002. "Innovation systems: analytical and methodological issues," Research Policy, Elsevier, vol. 31(2), pages 233-245, February.
  36. Chan-Yuan Wong & Kim-Leng Goh, 2010. "Modeling the behaviour of science and technology: self-propagating growth in the diffusion process," Scientometrics, Springer;Akadémiai Kiadó, vol. 84(3), pages 669-686, September.
  37. Magnus Holmén & Staffan A Jacobsson, 1998. "Method for Identifying Actors in a Knowledge Based Cluster," DRUID Working Papers 98-26, DRUID, Copenhagen Business School, Department of Industrial Economics and Strategy/Aalborg University, Department of Business Studies.
  38. Du, Jian & Li, Peixin & Guo, Qianying & Tang, Xiaoli, 2019. "Measuring the knowledge translation and convergence in pharmaceutical innovation by funding-science-technology-innovation linkages analysis," Journal of Informetrics, Elsevier, vol. 13(1), pages 132-148.
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