Factors determining the diffusion of COVID-19 and suggested strategy to prevent future accelerated viral infectivity similar to COVID M Coccia Science of the Total Environment 729, 138474, 2020 | 629* | 2020 |
Sources of technological innovation: Radical and incremental innovation problem-driven to support competitive advantage of firms M Coccia Technology Analysis & Strategic Management 29 (9), 1048-1061, 2017 | 400 | 2017 |
Evolution and convergence of the patterns of international scientific collaboration M Coccia, L Wang Proceedings of the National Academy of Sciences 113 (8), 2057-2061, 2016 | 295 | 2016 |
The Fishbone diagram to identify, systematize and analyze the sources of general purpose Technologies M Coccia Journal of Social and Administrative Sciences 4 (4), 291-303, 2018 | 250 | 2018 |
What is the optimal rate of R&D investment to maximize productivity growth? M Coccia Technological Forecasting and Social Change 76 (3), 433-446, 2009 | 210 | 2009 |
How do low wind speeds and high levels of air pollution support the spread of COVID-19? M Coccia Atmospheric pollution research 12 (1), 437-445, 2021 | 202 | 2021 |
Driving forces of technological change: the relation between population growth and technological innovation: analysis of the optimal interaction across countries M Coccia Technological Forecasting and Social Change 82, 52-65, 2014 | 201 | 2014 |
The relation between length of lockdown, numbers of infected people and deaths of Covid-19, and economic growth of countries: Lessons learned to cope with future pandemics … M Coccia Science of The Total Environment 775, 145801, 2021 | 194 | 2021 |
Political economy of R&D to support the modern competitiveness of nations and determinants of economic optimization and inertia M Coccia Technovation 32 (6), 370-379, 2012 | 191 | 2012 |
An index to quantify environmental risk of exposure to future epidemics of the COVID-19 and similar viral agents: theory and practice M Coccia Environmental research 191, 110155, 2020 | 188 | 2020 |
Path-breaking directions of nanotechnology-based chemotherapy and molecular cancer therapy M Coccia, L Wang Technological Forecasting and Social Change 94, 155-169, 2015 | 182 | 2015 |
The interaction between public and private R&D expenditure and national productivity M Coccia Prometheus 29 (2), 121-130, 2011 | 181 | 2011 |
Attitudes and behaviour of adopters of technological innovations in agricultural tractors: A case study in Italian agricultural system E Cavallo, E Ferrari, L Bollani, M Coccia Agricultural Systems 130, 44-54, 2014 | 180 | 2014 |
The effects of atmospheric stability with low wind speed and of air pollution on the accelerated transmission dynamics of COVID-19 M Coccia International Journal of Environmental Studies 78 (1), 1-27, 2021 | 179 | 2021 |
Deep learning technology for improving cancer care in society: New directions in cancer imaging driven by artificial intelligence M Coccia Technology in Society 60, 101198, 2020 | 176 | 2020 |
General sources of general purpose technologies in complex societies: Theory of global leadership-driven innovation, warfare and human development M Coccia Technology in Society 42, 199-226, 2015 | 176 | 2015 |
Preparedness of countries to face COVID-19 pandemic crisis: Strategic positioning and underlying structural factors to support strategies of prevention of pandemic threats M Coccia Environmental Research 203 (111678), 2022 | 170* | 2022 |
Socio-cultural origins of the patterns of technological innovation: What is the likely interaction among religious culture, religious plurality and innovation? Towards a theory … M Coccia Technology in Society 36, 13-25, 2014 | 170 | 2014 |
A theory of the evolution of technology: Technological parasitism and the implications for innovation magement M Coccia, J Watts Journal of Engineering and Technology Management 55, 101552, 2020 | 168 | 2020 |
Democratization is the driving force for technological and economic change M Coccia Technological Forecasting and Social Change 77 (2), 248-264, 2010 | 165 | 2010 |