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Area Studies

Knowledge creation and economic growth: the importance of basic research

ORCID Icon & ORCID Icon
Article: 2309714 | Received 12 Oct 2023, Accepted 19 Jan 2024, Published online: 12 Mar 2024

References

  • Agasisti, T., & Bertoletti, A. (2020). Higher education and economic growth: A longitudinal study of European regions 2000–2017. Socio-Economic Planning Sciences, 81, 1. https://doi.org/10.1016/j.seps.2020.100940
  • Aghion, P., & Howitt, P. (1992). A model of growth through creative destruction. Econometrica, 60(2), 323–17. https://doi.org/10.2307/2951599
  • Ahrens, A., Hansen, C. B., & Schaffer, M. E. (2018). Pdslasso and ivlasso: Progams for post-selection and post-regularization OLS or IV estimation and inference. Retrieved 05 July 2022, from http://ideas.repec.org/c/boc/bocode/s458459.html
  • Ahrens, A., Hansen, C. B., & Schaffer, M. E. (2020). lassopack: Model selection and prediction with regularized regression in Stata. The Stata Journal: Promoting Communications on Statistics and Stata, 20(1), 176–235. https://doi.org/10.1177/1536867X20909697
  • Akinsola, F. A., & Odhiambo, N. M. (2017). Inflation and economic growth: A review of the international literature. Comparative Economic Research Central and Eastern Europe, 20(3), 41–56. https://doi.org/10.1515/cer-2017-0019
  • Anakpo, G., & Oyenubi, A. (2022). Technological innovation and economic growth in Southern Africa: Application of panel dynamic OLS regression. Development Southern Africa, 39(4), 543–557. https://doi.org/10.1080/0376835X.2022.2052017
  • Arrow, K. J. (1962). The economic implications of learning by doing. The Review of Economic Studies, 29(3), 155–173. https://doi.org/10.2307/2295952
  • Baltagi, B. H. (1995). Econometric analysis of panel data. Wiley. https://books.google.co.za/books?id=3sHZnQEACAAJ
  • Belloni, A., Chernozhukov, V., & Hansen, C. (2014). Inference on treatment effects after selection among high-dimensional controls. The Review of Economic Studies, 81(2), 608–650. https://doi.org/10.1093/restud/rdt044
  • Belloni, A., Chernozhukov, V., Hansen, C., & Kozbur, D. (2016). Inference in high-dimensional panel models with an application to gun control. Journal of Business & Economic Statistics, 34(4), 590–605. https://doi.org/10.1080/07350015.2015.1102733
  • Bertoletti, A., Berbegal-Mirabent, J., & Agasisti, T. (2022). Higher education systems and regional economic development in Europe: A combined approach using econometric and machine learning methods. Socio-Economic Planning Sciences, 82, 101231. https://doi.org/10.1016/j.seps.2022.101231
  • Bittencourt, M. (2012). Inflation and economic growth in Latin America: Some panel time-series evidence. Economic Modelling, 29(2), 333–340. https://doi.org/10.1016/j.econmod.2011.10.018
  • Brenner, T. (2014). Science, innovation and national growth. Working Papers on Innovation and Space, No. 03.14, Philipps-University Marburg, Department of Geography, Marburg.
  • Chen, D. H., & Kee, H. L. (2005). A model on knowledge and endogenous growth. SSRN Electronic Journal, Available at SSRN: https://doi.org/10.2139/ssrn.678901
  • Chernozhukov, V., Hansen, C., & Spindler, M. (2015). Post-selection and post-regularization inference in linear models with many controls and instruments. American Economic Review, 105(5), 486–490. https://doi.org/10.1257/aer.p20151022
  • Drogovoz, P., Yusufova, O., Kashevarova, N., & Shiboldenkov, V. (2019 Exploratory data analysis of national indicators referred to scientific and technological development and to economic growth [Paper presentation]. AIP Conference Proceedings.
  • European Bank for Reconstruction and Development. (2019). Introducing the EBRD knowledge economy index. Retrieved 25 August 2022, from https://www.ebrd.com/news/publications/brochures/ebrd-knowledge-economy-index.html
  • Gholizadeh, H., Salehi, H., Embi, M. A., Danaee, M., Motahar, S. M., Ebrahim, N. A., Tanha, F. H., & Abu Osman, N. A. (2014). Relationship among economic growth, internet usage and publication productivity: Comparison among ASEAN and world’s best countries. Modern Applied Science, 8(2), 160–170. https://doi.org/10.5539/mas.v8n2p160
  • Grossman, G. M., & Helpman, E. (1991). Trade, knowledge spillovers, and growth. European Economic Review, 35(2–3), 517–526. https://doi.org/10.1016/0014-2921(91)90153-A
  • Hastie, T., Tibshirani, R., & Wainwright, M. (2015). Statistical learning with sparsity. Monographs on Statistics and Applied Probability, 143, Taylor & Francis Group.
  • Hatemi-J, A., Ajmi, A. N., El Montasser, G., Inglesi-Lotz, R., & Gupta, R. (2016). Research output and economic growth in G7 countries: New evidence from asymmetric panel causality testing. Applied Economics, 48(24), 2301–2308. https://doi.org/10.1080/00036846.2015.1117052
  • Hausman, N. (2022). University innovation and local economic growth. The Review of Economics and Statistics, 104(4), 718–735. https://doi.org/10.1162/rest_a_01027
  • Hazan, E., Smit, S., Woetzel, J., Cvetanovski, B., Krishnan, M., Gregg, B., Perrey, J., & Hjartar, K. (2021). Getting tangible about intangibles: the future of growth and productivity? Retrieved 25 August 2022, from https://www.mckinsey.com/business-functions/growth-marketing-and-sales/our-insights/getting-tangible-about-intangibles-the-future-of-growth-and-productivity
  • Henningsen, A., & Henningsen, G. (2019). Chapter 12 - Analysis of panel data using R. In M. Tsionas (Ed.), Panel data econometrics (pp. 345–396). Academic Press. https://doi.org/10.1016/B978-0-12-814367-4.00012-5
  • Inglesi-Lotz, R., Balcilar, M., & Gupta, R. (2014). Time-varying causality between research output and economic growth in US. Scientometrics, 100(1), 203–216. https://doi.org/10.1007/s11192-014-1257-z
  • Inglesi-Lotz, R., Chang, T., & Gupta, R. (2015). Causality between research output and economic growth in BRICS. Quality & Quantity, 49(1), 167–176. https://doi.org/10.1007/s11135-013-9980-8
  • Inglesi-Lotz, R., & Pouris, A. (2013). The influence of scientific research output of academics on economic growth in South Africa: An autoregressive distributed lag (ARDL) application. Scientometrics, 95(1), 129–139. https://doi.org/10.1007/s11192-012-0817-3
  • International Monetary Fund. (2021). World economic outlook: Recovery during a pandemic—health concerns, supply disruptions, price pressures. International Monetary Fund.
  • International Monetary Fund. (2022). World economic forum. Retrieved 29 August 2022, from https://www.imf.org/en/Publications/WEO/Issues/2022/07/26/world-economic-outlook-update-july-2022
  • Jin, J. C. (2009). Economic research and economic growth: Evidence from East Asian economies. Journal of Asian Economics, 20(2), 150–155. https://doi.org/10.1016/j.asieco.2008.12.002
  • Jin, J. C. (2010). Research publications, economic growth and causality: Japan’s experience. Pacific Economic Review, 15(5), 666–673. https://doi.org/10.1111/j.1468-0106.2010.00522.x
  • Jin, J. C., & Jin, L. (2013). Research publications and economic growth: Evidence from cross-country regressions. Applied Economics, 45(8), 983–990. https://doi.org/10.1080/00036846.2011.613785
  • Jin, J. C., & Jin, L. (2014). On the relationship between university education and economic growth: The role of professors’ publication. Education Economics, 22(6), 635–651. https://doi.org/10.1080/09645292.2012.697646
  • Jones, C. I. (2022). The past and future of economic growth: A semi-endogenous perspective. Annual Review of Economics, 14(1), 125–152. https://doi.org/10.1146/annurev-economics-080521-012458
  • Kim, Y. K., & Lee, K. (2015). Different impacts of scientific and technological knowledge on economic growth: Contrasting science and technology policy in East Asia and Latin America. Asian Economic Policy Review, 10(1), 43–66. https://doi.org/10.1111/aepr.12081
  • Kumar, R. R., Stauvermann, P. J., & Patel, A. (2016). Exploring the link between research and economic growth: An empirical study of China and USA. Quality & Quantity, 50(3), 1073–1091. https://doi.org/10.1007/s11135-015-0191-3
  • Lee, L. C., Lin, P. H., Chuang, Y. W., & Lee, Y. Y. (2011). Research output and economic productivity: A Granger causality test. Scientometrics, 89(2), 465–478. https://doi.org/10.1007/s11192-011-0476-9
  • Lewis, J., Schneegans, S., & Straza, T. (2021). UNESCO science report: The race against time for smarter development (Vol. 2021). UNESCO Publishing.
  • Lucas, R. E. (1988). On the mechanics of economic development. Journal of Monetary Economics, 22(1), 3–42. https://doi.org/10.1016/0304-3932(88)90168-7
  • Maradana, R. P., Pradhan, R. P., Dash, S., Gaurav, K., Jayakumar, M., & Chatterjee, D. (2017). Does innovation promote economic growth? Evidence from European countries. Journal of Innovation and Entrepreneurship, 6(1), 1–23. https://doi.org/10.1186/s13731-016-0061-9
  • North, D. C. (1990). Institutions, institutional change and economic performance. Cambridge University Press.
  • Ntuli, H., Inglesi‐Lotz, R., Chang, T., & Pouris, A. (2015). Does research output cause economic growth or vice versa? Evidence from 34 OECD countries. Journal of the Association for Information Science and Technology, 66(8), 1709–1716. https://doi.org/10.1002/asi.23285
  • Odhiambo, N. M., & Ntenga, L. (2016). Research publications and economic growth in South Africa: An empirical investigation. International Journal of Social Economics, 43(7), 662–675. https://doi.org/10.1108/IJSE-05-2014-0103
  • OECD. (2013). New sources of growth: Knowledge-based capital. Retrieved 25 August 2022, from https://www.oecd.org/sti/inno/knowledge-based-capital-synthesis.pdf
  • Ogot, M., & Onyango, G. M. (2022). Does universities’ research output aligned to national development goals impact economic productivity? Evidence from Kenya. Journal of Asian and African Studies, 58(6), 1005–1020. https://doi.org/10.1177/00219096221080196
  • Oluwatobi, S., Olurinola, I., Alege, P., & Ogundipe, A. (2020). Knowledge-driven economic growth: The case of Sub-Saharan Africa. Contemporary Social Science, 15(1), 62–81. https://doi.org/10.1080/21582041.2018.1510135
  • Ouedraogo, I., Tabi, H. N., Ondoa, H. A., & Jiya, A. N. (2022). Institutional quality and human capital development in Africa. Economic Systems, 46(1), 100937. https://doi.org/10.1016/j.ecosys.2021.100937
  • Pinto, T., & Teixeira, A. A. (2020). The impact of research output on economic growth by fields of science: A dynamic panel data analysis, 1980–2016. Scientometrics, 123(2), 945–978. https://doi.org/10.1007/s11192-020-03419-3
  • Pradhan, R. P., Arvin, M. B., Nair, M., & Bennett, S. E. (2020). The dynamics among entrepreneurship, innovation, and economic growth in the Eurozone countries. Journal of Policy Modeling, 42(5), 1106–1122. https://doi.org/10.1016/j.jpolmod.2020.01.004
  • Ranstam, J., & Cook, J. (2018). LASSO regression. British Journal of Surgery, 105(10), 1348–1348. https://doi.org/10.1002/bjs.10895
  • Reichert, S. (2019). The role of universities in regional innovation ecosystems. EUA Study, European University Association.
  • Romer, P. M. (1986). Increasing returns and long-run growth. Journal of Political Economy, 94(5), 1002–1037. http://www.jstor.org/stable/1833190 https://doi.org/10.1086/261420
  • Romer, P. M. (1990). Endogenous technological change. Journal of Political Economy, 98(5, Part 2), S71–S102. http://www.jstor.org/stable/2937632 https://doi.org/10.1086/261725
  • Salvatore, D. (2014). International economics: trade and finance. Wiley.
  • Solarin, S. A., & Yen, Y. Y. (2016). A global analysis of the impact of research output on economic growth. Scientometrics, 108(2), 855–874. https://doi.org/10.1007/s11192-016-2002-6
  • Solow, R. M. (1956). A contribution to the theory of economic growth. The Quarterly Journal of Economics, 70(1), 65–94. https://doi.org/10.2307/1884513
  • Swan, T. W. (1956). Economic growth and capital accumulation. Economic Record, 32(2), 334–361. https://doi.org/10.1111/j.1475-4932.1956.tb00434.x
  • Tibshirani, R. (1996). Regression shrinkage and selection via the lasso. Journal of the Royal Statistical Society: Series B (Methodological), 58(1), 267–288. https://doi.org/10.1111/j.2517-6161.1996.tb02080.x
  • Tunali, Ç. B. (2016). Do scientific products contribute to the level of output? Empirical evidence from the European Union Countries. Advances in Management and Applied Economics, 6(3), 59.
  • Schlegel, F., & Unesco. (2015). UNESCO science report: towards 2030. UNESCO Publishing.
  • Wang, X., Ren, Y., Zhang, L., & Ma, Y. (2020). The influence of technological innovation ability of universities on regional economic growth: Take coastal provinces and cities for example. Journal of Coastal Research, 103(sp1), 112–116. https://doi.org/10.2112/SI103-023.1
  • White, K. (2019). Publications output: US trends and international comparisons. Science & Engineering Indicators 2020. NSB-2020-6. National Science Foundation.
  • World Bank, & Elsevier. (2014). A decade of development in sub-Saharan African science, technology, engineering and mathematics research. The World Bank and Elsevier.
  • Yaşgül, Y. S., & Güriş, B. (2016). Causality between research output in the field of biotechnology and economic growth in Turkey. Quality & Quantity, 50(4), 1715–1726. https://doi.org/10.1007/s11135-015-0230-0
  • Zaman, K., Khan, H. U. R., Ahmad, M., & Aamir, A. (2018). Research productivity and economic growth: A policy lesson learnt from across the globe. Iranian Economic Review, 22(3), 627–641.