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Star Scientists and Regional Knowledge Transfer

In: Foundations of the Knowledge Economy

Author

Listed:
  • Michaela Trippl
  • Gunther Maier

Abstract

This book presents new evidence concerning the influential role of context and institutions on the relations between knowledge, innovation, clusters and learning. From a truly international perspective, the expert contributors capture the most interesting and relevant aspects of knowledge economy.

Suggested Citation

  • Michaela Trippl & Gunther Maier, 2012. "Star Scientists and Regional Knowledge Transfer," Chapters, in: Knut Ingar Westeren (ed.), Foundations of the Knowledge Economy, chapter 5, Edward Elgar Publishing.
  • Handle: RePEc:elg:eechap:14606_5
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    File URL: https://www.elgaronline.com/view/9780857937711.00011.xml
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    References listed on IDEAS

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    1. Etzkowitz, Henry & Leydesdorff, Loet, 2000. "The dynamics of innovation: from National Systems and "Mode 2" to a Triple Helix of university-industry-government relations," Research Policy, Elsevier, vol. 29(2), pages 109-123, February.
    2. Jeff S. Armstrong & Michael R. Darby & Lynne G. Zucker, 2003. "Commercializing knowledge: university science, knowledge capture and firm performance in biotechnology," Proceedings, Federal Reserve Bank of Dallas, issue Sep, pages 149-170.
    3. Mowery, David C. & Nelson, Richard R. & Sampat, Bhaven N. & Ziedonis, Arvids A., 2001. "The growth of patenting and licensing by U.S. universities: an assessment of the effects of the Bayh-Dole act of 1980," Research Policy, Elsevier, vol. 30(1), pages 99-119, January.
    4. Ira Horowitz, 1966. "Some Aspects of the Effects of the Regional Distribution of Scientific Talent on Regional Economic Activity," Management Science, INFORMS, vol. 13(3), pages 217-232, November.
    5. Edward M. Bergman, 2010. "Knowledge links between European universities and firms: A review," Papers in Regional Science, Wiley Blackwell, vol. 89(2), pages 311-333, June.
    6. Michaela Trippl & Gunther Maier, 2011. "Knowledge Spillover Agents and Regional Development," Advances in Spatial Science, in: Peter Nijkamp & Iulia Siedschlag (ed.), Innovation, Growth and Competitiveness, chapter 0, pages 91-111, Springer.
    7. Pavitt, Keith, 1984. "Sectoral patterns of technical change: Towards a taxonomy and a theory," Research Policy, Elsevier, vol. 13(6), pages 343-373, December.
    8. Daniel Schiller & Javier Revilla Diez, 2010. "Local embeddedness of knowledge spillover agents: Empirical evidence from German star scientists," Papers in Regional Science, Wiley Blackwell, vol. 89(2), pages 275-294, June.
    9. Zucker, Lynne G & Darby, Michael R, 2001. "Capturing Technological Opportunity via Japan's Star Scientists: Evidence from Japanese Firms' Biotech Patents and Products," The Journal of Technology Transfer, Springer, vol. 26(1-2), pages 37-58, January.
    10. Van Looy, Bart & Ranga, Marina & Callaert, Julie & Debackere, Koenraad & Zimmermann, Edwin, 2004. "Combining entrepreneurial and scientific performance in academia: towards a compounded and reciprocal Matthew-effect?," Research Policy, Elsevier, vol. 33(3), pages 425-441, April.
    11. Maryann Feldman & Richard Owens, 2007. "Bringing science to life: introduction to the special issue," The Journal of Technology Transfer, Springer, vol. 32(3), pages 127-130, June.
    12. Zucker, Lynne G & Darby, Michael R & Armstrong, Jeff, 1998. "Geographically Localized Knowledge: Spillovers or Markets?," Economic Inquiry, Western Economic Association International, vol. 36(1), pages 65-86, January.
    13. S. Breschi & F. Lissoni & F. Montobbio, 2007. "The Scientific Productivity Of Academic Inventors: New Evidence From Italian Data," Economics of Innovation and New Technology, Taylor & Francis Journals, vol. 16(2), pages 101-118.
    14. Lynne G. Zucker & Michael R. Darby, 2014. "Movement of Star Scientists and Engineers and High-Tech Firm Entry," Annals of Economics and Statistics, GENES, issue 115-116, pages 125-175.
    15. Robert Lowe & Claudia Gonzalez-Brambila, 2007. "Faculty Entrepreneurs and Research Productivity," The Journal of Technology Transfer, Springer, vol. 32(3), pages 173-194, June.
    16. Pierre Azoulay & Waverly Ding & Toby Stuart, 2009. "The Impact Of Academic Patenting On The Rate, Quality And Direction Of (Public) Research Output," Journal of Industrial Economics, Wiley Blackwell, vol. 57(4), pages 637-676, December.
    17. Chrys Gunasekara, 2006. "Reframing the Role of Universities in the Development of Regional Innovation Systems," The Journal of Technology Transfer, Springer, vol. 31(1), pages 101-113, January.
    18. Ajay Agrawal & Rebecca Henderson, 2002. "Putting Patents in Context: Exploring Knowledge Transfer from MIT," Management Science, INFORMS, vol. 48(1), pages 44-60, January.
    19. Calderini, Mario & Franzoni, Chiara & Vezzulli, Andrea, 2007. "If star scientists do not patent: The effect of productivity, basicness and impact on the decision to patent in the academic world," Research Policy, Elsevier, vol. 36(3), pages 303-319, April.
    20. Zucker, Lynne G & Darby, Michael R & Brewer, Marilynn B, 1998. "Intellectual Human Capital and the Birth of U.S. Biotechnology Enterprises," American Economic Review, American Economic Association, vol. 88(1), pages 290-306, March.
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    Cited by:

    1. Edward Bergman, 2011. "Hirschmann Mobility Among Academics of Highly Ranked EU Research Universities," ERSA conference papers ersa11p1134, European Regional Science Association.

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