IDEAS home Printed from https://ideas.repec.org/r/nbr/nberwo/10901.html
   My bibliography  Save this item

Uncovering GPTS with Patent Data

Citations

Citations are extracted by the CitEc Project, subscribe to its RSS feed for this item.
as


Cited by:

  1. McNamee, Robert C., 2013. "Can’t see the forest for the leaves: Similarity and distance measures for hierarchical taxonomies with a patent classification example," Research Policy, Elsevier, vol. 42(4), pages 855-873.
  2. J. Klinger & J. Mateos-Garcia & K. Stathoulopoulos, 2018. "Deep learning, deep change? Mapping the development of the Artificial Intelligence General Purpose Technology," Papers 1808.06355, arXiv.org.
  3. Michele Cincera & Ela Ince, 2019. "Types of Innovation and Firm performance," Working Papers TIMES² 2019-032, ULB -- Universite Libre de Bruxelles.
  4. Barbieri, Nicolò & Marzucchi, Alberto & Rizzo, Ugo, 2020. "Knowledge sources and impacts on subsequent inventions: Do green technologies differ from non-green ones?," Research Policy, Elsevier, vol. 49(2).
  5. Igna, Ioana & Venturini, Francesco, 2023. "The determinants of AI innovation across European firms," Research Policy, Elsevier, vol. 52(2).
  6. Stefano Basilico & Holger Graf, 2023. "Bridging technologies in the regional knowledge space: measurement and evolution," Journal of Evolutionary Economics, Springer, vol. 33(4), pages 1085-1124, September.
  7. Junmo Kim & Juneseuk Shin, 2018. "Mapping extended technological trajectories: integration of main path, derivative paths, and technology junctures," Scientometrics, Springer;Akadémiai Kiadó, vol. 116(3), pages 1439-1459, September.
  8. Gamal Atallah & Gabriel Rodríguez, 2006. "Indirect patent citations," Scientometrics, Springer;Akadémiai Kiadó, vol. 67(3), pages 437-465, June.
  9. Korzinov, Vladimir & Savin, Ivan, 2018. "General Purpose Technologies as an emergent property," Technological Forecasting and Social Change, Elsevier, vol. 129(C), pages 88-104.
  10. Ugo RIZZO & Valerio STERZI, 2022. "Characterising science-industry patent collaborations: knowledge base, impact and economic value," Bordeaux Economics Working Papers 2022-15, Bordeaux School of Economics (BSE).
  11. Nicoló Barbieri & François Perruchas & Davide Consoli, 2020. "Specialization, Diversification, and Environmental Technology Life Cycle," Economic Geography, Taylor & Francis Journals, vol. 96(2), pages 161-186, March.
  12. Lisa De Propris & Carlo Corradini, 2013. "Technological platforms and global opportunities," ERSA conference papers ersa13p867, European Regional Science Association.
  13. Bonaccorsi, Andrea & Thoma, Grid, 2007. "Institutional complementarity and inventive performance in nano science and technology," Research Policy, Elsevier, vol. 36(6), pages 813-831, July.
  14. Zhang, Yi & Wu, Mengjia & Miao, Wen & Huang, Lu & Lu, Jie, 2021. "Bi-layer network analytics: A methodology for characterizing emerging general-purpose technologies," Journal of Informetrics, Elsevier, vol. 15(4).
  15. Sara Amoroso & Simone Vannuccini, 2019. "Teaming up with Large R&D Investors: Good or Bad for Knowledge Production and Diffusion?," SPRU Working Paper Series 2019-20, SPRU - Science Policy Research Unit, University of Sussex Business School.
  16. Stuart Graham & Saurabh Vishnubhakat, 2013. "Of Smart Phone Wars and Software Patents," Journal of Economic Perspectives, American Economic Association, vol. 27(1), pages 67-86, Winter.
  17. Joel Klinger & Juan Mateos-Garcia & Konstantinos Stathoulopoulos, 2021. "Deep learning, deep change? Mapping the evolution and geography of a general purpose technology," Scientometrics, Springer;Akadémiai Kiadó, vol. 126(7), pages 5589-5621, July.
  18. Liu, Runjuan & Rosell, Carlos, 2013. "Import competition, multi-product firms, and basic innovation," Journal of International Economics, Elsevier, vol. 91(2), pages 220-234.
  19. Feldman, Maryann & Tavassoli, Sam, 2014. "Something New: Where do new industries come from?," Working Papers 2014/02, Blekinge Institute of Technology, Department of Industrial Economics.
  20. Javier Miranda & Nikolas Zolas, 2017. "Measuring the Impact of Household Innovation Using Administrative Data," NBER Chapters, in: Measuring and Accounting for Innovation in the Twenty-First Century, pages 61-102, National Bureau of Economic Research, Inc.
  21. Bulat Sanditov, 2005. "Patent Citations, the Value of Innovations and Path-Dependency," KITeS Working Papers 177, KITeS, Centre for Knowledge, Internationalization and Technology Studies, Universita' Bocconi, Milano, Italy, revised Nov 2005.
  22. Qiu, Ranfeng & Cantwell, John, 2018. "General Purpose Technologies and local knowledge accumulation — A study on MNC subunits and local innovation centers," International Business Review, Elsevier, vol. 27(4), pages 826-837.
  23. Michelle Alexopoulos & Jon Cohen, 2016. "The Medium Is the Measure: Technical Change and Employment, 1909—1949," The Review of Economics and Statistics, MIT Press, vol. 98(4), pages 792-810, October.
  24. Laura I. Schultz & Frederick L. Joutz, 2010. "Methods for identifying emerging General Purpose Technologies: a case study of nanotechnologies," Scientometrics, Springer;Akadémiai Kiadó, vol. 85(1), pages 155-170, October.
  25. Russell J. Funk & Jason Owen-Smith, 2017. "A Dynamic Network Measure of Technological Change," Management Science, INFORMS, vol. 63(3), pages 791-817, March.
  26. Silvia Miranda-Agrippino & Sinem Hacioglu Hoke & Kristina Bluwstein, 2018. "When Creativity Strikes: News Shocks and Business Cycle Fluctuations," Discussion Papers 1823, Centre for Macroeconomics (CFM).
  27. Carolina Castaldi & Bart Los, 2008. "The identification of important innovations using tail estimators," Innovation Studies Utrecht (ISU) working paper series 08-07, Utrecht University, Department of Innovation Studies, revised Feb 2008.
  28. Kokshagina, Olga & Gillier, Thomas & Cogez, Patrick & Le Masson, Pascal & Weil, Benoit, 2017. "Using innovation contests to promote the development of generic technologies," Technological Forecasting and Social Change, Elsevier, vol. 114(C), pages 152-164.
  29. Uwe Cantner & Simone Vannuccini, 2012. "A New View of General Purpose Technologies," Jena Economics Research Papers 2012-054, Friedrich-Schiller-University Jena.
  30. Liu, Yong & Du, Jun-liang & Yang, Jin-bi & Qian, Wu-yong & Forrest, Jeffrey Yi-Lin, 2019. "An incentive mechanism for general purpose technologies R&D based on the concept of super-conflict equilibrium: Empirical evidence from nano industrial technology in China," Technological Forecasting and Social Change, Elsevier, vol. 147(C), pages 185-197.
  31. RAITERI Emilio, 2015. "A time to nourish? Evaluating the impact of innovative public procurement on technological generality through patent data," Cahiers du GREThA (2007-2019) 2015-05, Groupe de Recherche en Economie Théorique et Appliquée (GREThA).
  32. Taalbi, Josef, 2017. "Origins and Pathways of Innovation in the Third Industrial Revolution: Sweden, 1950-2013," Lund Papers in Economic History 159, Lund University, Department of Economic History.
  33. Andrea Bonaccorsi & Grid Thoma, 2005. "Scientific and Technological Regimes in Nanotechnology: Combinatorial Inventors and Performance," LEM Papers Series 2005/13, Laboratory of Economics and Management (LEM), Sant'Anna School of Advanced Studies, Pisa, Italy.
  34. Masatsura Igami & Sadao Nagaoka & John Walsh, 2015. "Contribution of postdoctoral fellows to fast-moving and competitive scientific research," The Journal of Technology Transfer, Springer, vol. 40(4), pages 723-741, August.
  35. Arianna Martinelli & Andrea Mina & Massimo Moggi, 2021. "The enabling technologies of industry 4.0: examining the seeds of the fourth industrial revolution [Mapping innovation dynamics in the Internet of Things domain: evidence from patent analysis]," Industrial and Corporate Change, Oxford University Press and the Associazione ICC, vol. 30(1), pages 161-188.
  36. Jan Youtie & Maurizio Iacopetta & Stuart Graham, 2008. "Assessing the nature of nanotechnology: can we uncover an emerging general purpose technology?," The Journal of Technology Transfer, Springer, vol. 33(3), pages 315-329, June.
  37. Kroll, Henning & Berghäuser, Hendrik & Blind, Knut & Neuhäusler, Peter & Scheifele, Fabian & Thielmann, Axel & Wydra, Sven, 2022. "Schlüsseltechnologien," Studien zum deutschen Innovationssystem 7-2022, Expertenkommission Forschung und Innovation (EFI) - Commission of Experts for Research and Innovation, Berlin.
  38. Sadowski, Bert & Nomaler, Onder & Whalley, Jason, 2016. "Technological Diversification of ICT companies into the Internet of things (IoT): A Patent -based Analysis," 27th European Regional ITS Conference, Cambridge (UK) 2016 148701, International Telecommunications Society (ITS).
  39. Lisa de Propris & Carlo Corradini, 2013. "Technology Platforms in Europe: An Empirical Investigation. WWWforEurope Working Paper No. 34," WIFO Studies, WIFO, number 46920, April.
  40. Koutroumpis, Pantelis & Leiponen, Aija & Thomas, Llewellyn D W, 2017. "Invention Machines: How Control Instruments and Information Technologies Drove Global Technologigal Progress over a Century of Invention," ETLA Working Papers 52, The Research Institute of the Finnish Economy.
  41. Raiteri, Emilio, 2018. "A time to nourish? Evaluating the impact of public procurement on technological generality through patent data," Research Policy, Elsevier, vol. 47(5), pages 936-952.
  42. Corradini, Carlo & De Propris, Lisa, 2017. "Beyond local search: Bridging platforms and inter-sectoral technological integration," Research Policy, Elsevier, vol. 46(1), pages 196-206.
  43. Cantner, Uwe & Vannuccini, Simone, 2021. "Pervasive technologies and industrial linkages: Modeling acquired purposes," Structural Change and Economic Dynamics, Elsevier, vol. 56(C), pages 386-399.
  44. Chen, Jiyao & Shao, Diana & Fan, Shaokun, 2021. "Destabilization and consolidation: Conceptualizing, measuring, and validating the dual characteristics of technology," Research Policy, Elsevier, vol. 50(1).
  45. Lone Engbo Christiansen, 2008. "Do Technology Shocks Lead to Productivity Slowdowns? Evidence from Patent Data," IMF Working Papers 2008/024, International Monetary Fund.
IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.