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Delve deep into the heart of entrepreneurial ecosystems in lesser-known regions across the globe, as we unravel the complex tapestry of factors that drive their growth and sustainability. This book offers a rich exploration of diverse ecosystems in Brazil, South Africa, the islands of Madagascar and Reunion, Norway, and countries in Central and Eastern Europe. Through a diverse array of perspectives and real-world experiences, it reveals the drivers and challenges shaping entrepreneurial and innovation ecosystems worldwide. Discover the critical role of factors like regional leadership, social entrepreneurs, supportive policies, and cultural dynamics, and see how regions overcome challenges through innovation and resilience. Ideal for policymakers, scholars, and entrepreneurs, this book bridges the gap between theory and practice. Entrepreneurial Ecosystems: Drivers, Challenges and Success of Territories is not just a collection of research. It's a roadmap to building vibrant entrepreneurial communities packed with practical guidance and transformative ideas. Whether you are aiming to nurture an entrepreneurial ecosystem or seeking inspiration from global success stories, this book is an indispensable resource for anyone passionate about the future of entrepreneurship and innovation. Join us on this captivating journey and be part of shaping vibrant entrepreneurial regions around the world.
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Digital technologies are revolutionizing global economy, modes of production and consumption. This book details the paradigm of this new era that emphasizes investments in innovation, R&D and aggregation of expertise, skills and knowledge through innovation digital ecosystems to supporting digital revolution and ecological transition.
Research, Industrial --- Business & Economics --- Adatto --- AOUINAÏT --- Camille --- Digital --- Digital technologies --- Ecological --- Economic --- Ecosystems --- Emergence of innovation ecosystems --- Environmental crisis and climate change --- Innovation --- Laurent --- Michelle --- Mongo --- Revolution --- Transition
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To be competitive, companies must develop capabilities that allow them to react rapidly to market demands. The innovation methods of the past are not adapted to the turbulence of the modern world. In the last decade, increasing globalization of markets and Industry 4.0 have caused profound changes in the best way to manage the innovation process. This e-book includes a collection of thirteen papers that discuss theoretical approaches, case studies, and surveys focused on issues related to open innovation and its mechanisms.
Technology. --- eco-innovation --- cleaner production --- strategy --- performance --- natural resource-based view --- stakeholder theory --- decision making --- forest management --- Nash Bayesian Equilibrium (NBE) --- Harsanyi's Transformation (HT) --- risk management --- project management --- sustainability --- social network analysis --- collaborative networks --- project lifecycle --- project critical success factors --- open innovation --- predictive model --- project outcome likelihood --- organizational competencies --- innovation ecosystem --- evolutionary economics --- Panarchy --- resilience --- adaptation --- competitiveness --- innovation --- new products --- functional framework --- SIFSNPIP --- case studies --- ecosystem --- organic wine --- Tuscany --- virtual enterprise --- fuzzy logic --- systems engineering --- entrepreneurship --- technopreneurial intentions --- grand challenges --- innovation ecosystems --- mission-oriented innovation --- SDGs --- sustainable innovation --- systematic literature review --- SLR --- transformative innovation --- typology --- architecture engineering and construction (AEC) industry --- building information modelling (BIM) --- cultivation --- Technological Readiness Level --- smart farming --- viticulture --- lean --- business model canvas --- circular economy --- user integration --- cars --- electric vehicles --- biofuels --- logit models --- eco-innovation --- cleaner production --- strategy --- performance --- natural resource-based view --- stakeholder theory --- decision making --- forest management --- Nash Bayesian Equilibrium (NBE) --- Harsanyi's Transformation (HT) --- risk management --- project management --- sustainability --- social network analysis --- collaborative networks --- project lifecycle --- project critical success factors --- open innovation --- predictive model --- project outcome likelihood --- organizational competencies --- innovation ecosystem --- evolutionary economics --- Panarchy --- resilience --- adaptation --- competitiveness --- innovation --- new products --- functional framework --- SIFSNPIP --- case studies --- ecosystem --- organic wine --- Tuscany --- virtual enterprise --- fuzzy logic --- systems engineering --- entrepreneurship --- technopreneurial intentions --- grand challenges --- innovation ecosystems --- mission-oriented innovation --- SDGs --- sustainable innovation --- systematic literature review --- SLR --- transformative innovation --- typology --- architecture engineering and construction (AEC) industry --- building information modelling (BIM) --- cultivation --- Technological Readiness Level --- smart farming --- viticulture --- lean --- business model canvas --- circular economy --- user integration --- cars --- electric vehicles --- biofuels --- logit models
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To be competitive, companies must develop capabilities that allow them to react rapidly to market demands. The innovation methods of the past are not adapted to the turbulence of the modern world. In the last decade, increasing globalization of markets and Industry 4.0 have caused profound changes in the best way to manage the innovation process. This e-book includes a collection of thirteen papers that discuss theoretical approaches, case studies, and surveys focused on issues related to open innovation and its mechanisms.
Technology: general issues --- eco-innovation --- cleaner production --- strategy --- performance --- natural resource-based view --- stakeholder theory --- decision making --- forest management --- Nash Bayesian Equilibrium (NBE) --- Harsanyi’s Transformation (HT) --- risk management --- project management --- sustainability --- social network analysis --- collaborative networks --- project lifecycle --- project critical success factors --- open innovation --- predictive model --- project outcome likelihood --- organizational competencies --- innovation ecosystem --- evolutionary economics --- Panarchy --- resilience --- adaptation --- competitiveness --- innovation --- new products --- functional framework --- SIFSNPIP --- case studies --- ecosystem --- organic wine --- Tuscany --- virtual enterprise --- fuzzy logic --- systems engineering --- entrepreneurship --- technopreneurial intentions --- grand challenges --- innovation ecosystems --- mission-oriented innovation --- SDGs --- sustainable innovation --- systematic literature review --- SLR --- transformative innovation --- typology --- architecture engineering and construction (AEC) industry --- building information modelling (BIM) --- cultivation --- Technological Readiness Level --- smart farming --- viticulture --- lean --- business model canvas --- circular economy --- user integration --- cars --- electric vehicles --- biofuels --- logit models --- n/a --- Harsanyi's Transformation (HT) --- Technology.
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To be competitive, companies must develop capabilities that allow them to react rapidly to market demands. The innovation methods of the past are not adapted to the turbulence of the modern world. In the last decade, increasing globalization of markets and Industry 4.0 have caused profound changes in the best way to manage the innovation process. This e-book includes a collection of thirteen papers that discuss theoretical approaches, case studies, and surveys focused on issues related to open innovation and its mechanisms.
eco-innovation --- cleaner production --- strategy --- performance --- natural resource-based view --- stakeholder theory --- decision making --- forest management --- Nash Bayesian Equilibrium (NBE) --- Harsanyi’s Transformation (HT) --- risk management --- project management --- sustainability --- social network analysis --- collaborative networks --- project lifecycle --- project critical success factors --- open innovation --- predictive model --- project outcome likelihood --- organizational competencies --- innovation ecosystem --- evolutionary economics --- Panarchy --- resilience --- adaptation --- competitiveness --- innovation --- new products --- functional framework --- SIFSNPIP --- case studies --- ecosystem --- organic wine --- Tuscany --- virtual enterprise --- fuzzy logic --- systems engineering --- entrepreneurship --- technopreneurial intentions --- grand challenges --- innovation ecosystems --- mission-oriented innovation --- SDGs --- sustainable innovation --- systematic literature review --- SLR --- transformative innovation --- typology --- architecture engineering and construction (AEC) industry --- building information modelling (BIM) --- cultivation --- Technological Readiness Level --- smart farming --- viticulture --- lean --- business model canvas --- circular economy --- user integration --- cars --- electric vehicles --- biofuels --- logit models --- n/a --- Harsanyi's Transformation (HT) --- Technology.
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Higher education has been considered both an ‘engine’ for innovation and a ‘catalyst’ for sustainability development; the integration of both the innovation engine and sustainability catalyst roles are discussed in a recently published Special Issue on the theme of Higher Education in Innovation Ecosystems in the journal Sustainability. Based on 16 articles contributing to the Special Issue from various perspectives, the Special Issue editors have developed an overarching framework about the relationships between higher education and innovation ecosystems. In the framework, we re-define the concept of innovation ecosystem and identify emerging roles of universities in developing sustainable innovation ecosystems. Re-conceptualization of innovation ecosystems In the editorial of the Special Issue, innovation ecosystem is defined as: co-innovation networks in which actors from organizations concerned with the functions of knowledge production, wealth creation, and norm control interact with each other in forming co-evolution and interdependent relations (both direct or indirect) in cross-geographical contexts and through which new ideas and approaches from various internal and external sources are integrated into a platform to generate shared values for the sustainable transformation of society. Compared with most commonly cited definitions of innovation ecosystem, our definition highlights three new aspects of interactions in co-innovation networks: cross-sectoral, transnational, and indirect, drawing insights from the literature including innovation, geography, and biology studies. The roles of universities in innovation ecosystems The emerging roles of universities in innovation ecosystems are as follows: (1) The role of universities is changing from being a central player in technology transfer to being an anchor in knowledge exchange; (2) universities are assuming a new role in trust-building between actors in innovation ecosystems; and (3) universities are not merely an entrepreneurial universities but are also institutional entrepreneur in the innovation ecosystem. The three emerging roles all indicate that universities are becoming the catalysts for sustainable development in innovation ecosystems. Knowledge exchange is crucial for sustainability; trust is the foundation of the sustainable networks; social entrepreneurship is indispensable for sustainable social change. Evidence in wider contexts A total of 44 authors from 10 countries contributed to the discussions on the changing roles of higher education in innovation ecosystems from varying perspectives. They also report transformations within higher education and universities’ responses to both external and internal transformations. When addressing these issues, the studies provide both theoretical and methodological contributions to the research on higher education in innovation ecosystems. The 16 articles can be generally placed into four categories: (1) new demands for universities arising from the transformation in society toward innovation ecosystems, (2) transformations within higher education responding to emerging societal demands, (3) dynamics of the interaction of university with other innovation actors in a transnational context, and (4) academic and student mobility for higher education innovation. Calling for a new research agenda While societal changes demand broader roles of universities, they also call for and leads to substantial changes within the internal fabric of the university. The innovations in both society and the universities necessitate a renewed understanding of higher education in society, which has become a new research agenda in studies on innovation in higher education. We hope our Special Issue will inspire and encourage more scholars to join the research field.
Humanities --- Education --- transnational industry cooperation --- transnational university cooperation --- transnational innovation ecosystem --- EU–China --- science, technology and innovation cooperation --- transdisciplinary approach --- artificial intelligence --- machine learning --- Higher Education --- University --- Entrepreneurial competences --- Employability --- Theory of Planned Behaviour (TPB) --- Open Innovation --- business creation --- technology transfer --- innovation --- innovation ecosystem --- entrepreneurship education --- science and technology --- sustainability --- higher education --- educational innovation --- Mexico --- academic mobility --- knowledge transfer --- higher education innovation --- institutional environment --- postgraduate education --- education level --- discipline background --- graduation institution --- R& --- D investment --- triple helix --- synergy mechanism --- national system of innovation --- China --- Belt and Road Initiative --- developmental model of intercultural sensitivity --- general model of instructional communication --- instructional beliefs model --- intercultural communication competence model --- green GDP --- environment --- sustainable development --- global innovation systems --- Chinese research university --- faculty income --- academic labor market --- ordinary labor market --- joint R& --- D institute --- institutional logics --- China’s innovation system --- China’s transnational Triple Helix linkages --- problem-solving --- critical reflection --- knowledge integration --- social learning --- systemic thinking --- entrepreneurial university --- entrepreneurship --- influencing factors --- sustainable universities --- corporate sustainability --- tensions --- integrative framework --- Finnish universities --- higher education system --- social entrepreneurship --- entrepreneurial universities --- business model innovation --- socialist economies --- Cuba --- knowledge brokers --- knowledge intensive policies --- smart specialisation --- innovation ecosystems --- global talent --- social integration --- economic integration --- Chinese student --- Finland --- university --- third mission --- knowledge-based society --- global innovation networks --- transnational industry cooperation --- transnational university cooperation --- transnational innovation ecosystem --- EU–China --- science, technology and innovation cooperation --- transdisciplinary approach --- artificial intelligence --- machine learning --- Higher Education --- University --- Entrepreneurial competences --- Employability --- Theory of Planned Behaviour (TPB) --- Open Innovation --- business creation --- technology transfer --- innovation --- innovation ecosystem --- entrepreneurship education --- science and technology --- sustainability --- higher education --- educational innovation --- Mexico --- academic mobility --- knowledge transfer --- higher education innovation --- institutional environment --- postgraduate education --- education level --- discipline background --- graduation institution --- R& --- D investment --- triple helix --- synergy mechanism --- national system of innovation --- China --- Belt and Road Initiative --- developmental model of intercultural sensitivity --- general model of instructional communication --- instructional beliefs model --- intercultural communication competence model --- green GDP --- environment --- sustainable development --- global innovation systems --- Chinese research university --- faculty income --- academic labor market --- ordinary labor market --- joint R& --- D institute --- institutional logics --- China’s innovation system --- China’s transnational Triple Helix linkages --- problem-solving --- critical reflection --- knowledge integration --- social learning --- systemic thinking --- entrepreneurial university --- entrepreneurship --- influencing factors --- sustainable universities --- corporate sustainability --- tensions --- integrative framework --- Finnish universities --- higher education system --- social entrepreneurship --- entrepreneurial universities --- business model innovation --- socialist economies --- Cuba --- knowledge brokers --- knowledge intensive policies --- smart specialisation --- innovation ecosystems --- global talent --- social integration --- economic integration --- Chinese student --- Finland --- university --- third mission --- knowledge-based society --- global innovation networks
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Higher education has been considered both an ‘engine’ for innovation and a ‘catalyst’ for sustainability development; the integration of both the innovation engine and sustainability catalyst roles are discussed in a recently published Special Issue on the theme of Higher Education in Innovation Ecosystems in the journal Sustainability. Based on 16 articles contributing to the Special Issue from various perspectives, the Special Issue editors have developed an overarching framework about the relationships between higher education and innovation ecosystems. In the framework, we re-define the concept of innovation ecosystem and identify emerging roles of universities in developing sustainable innovation ecosystems. Re-conceptualization of innovation ecosystems In the editorial of the Special Issue, innovation ecosystem is defined as: co-innovation networks in which actors from organizations concerned with the functions of knowledge production, wealth creation, and norm control interact with each other in forming co-evolution and interdependent relations (both direct or indirect) in cross-geographical contexts and through which new ideas and approaches from various internal and external sources are integrated into a platform to generate shared values for the sustainable transformation of society. Compared with most commonly cited definitions of innovation ecosystem, our definition highlights three new aspects of interactions in co-innovation networks: cross-sectoral, transnational, and indirect, drawing insights from the literature including innovation, geography, and biology studies. The roles of universities in innovation ecosystems The emerging roles of universities in innovation ecosystems are as follows: (1) The role of universities is changing from being a central player in technology transfer to being an anchor in knowledge exchange; (2) universities are assuming a new role in trust-building between actors in innovation ecosystems; and (3) universities are not merely an entrepreneurial universities but are also institutional entrepreneur in the innovation ecosystem. The three emerging roles all indicate that universities are becoming the catalysts for sustainable development in innovation ecosystems. Knowledge exchange is crucial for sustainability; trust is the foundation of the sustainable networks; social entrepreneurship is indispensable for sustainable social change. Evidence in wider contexts A total of 44 authors from 10 countries contributed to the discussions on the changing roles of higher education in innovation ecosystems from varying perspectives. They also report transformations within higher education and universities’ responses to both external and internal transformations. When addressing these issues, the studies provide both theoretical and methodological contributions to the research on higher education in innovation ecosystems. The 16 articles can be generally placed into four categories: (1) new demands for universities arising from the transformation in society toward innovation ecosystems, (2) transformations within higher education responding to emerging societal demands, (3) dynamics of the interaction of university with other innovation actors in a transnational context, and (4) academic and student mobility for higher education innovation. Calling for a new research agenda While societal changes demand broader roles of universities, they also call for and leads to substantial changes within the internal fabric of the university. The innovations in both society and the universities necessitate a renewed understanding of higher education in society, which has become a new research agenda in studies on innovation in higher education. We hope our Special Issue will inspire and encourage more scholars to join the research field.
Humanities --- Education --- transnational industry cooperation --- transnational university cooperation --- transnational innovation ecosystem --- EU–China --- science, technology and innovation cooperation --- transdisciplinary approach --- artificial intelligence --- machine learning --- Higher Education --- University --- Entrepreneurial competences --- Employability --- Theory of Planned Behaviour (TPB) --- Open Innovation --- business creation --- technology transfer --- innovation --- innovation ecosystem --- entrepreneurship education --- science and technology --- sustainability --- higher education --- educational innovation --- Mexico --- academic mobility --- knowledge transfer --- higher education innovation --- institutional environment --- postgraduate education --- education level --- discipline background --- graduation institution --- R& --- D investment --- triple helix --- synergy mechanism --- national system of innovation --- China --- Belt and Road Initiative --- developmental model of intercultural sensitivity --- general model of instructional communication --- instructional beliefs model --- intercultural communication competence model --- green GDP --- environment --- sustainable development --- global innovation systems --- Chinese research university --- faculty income --- academic labor market --- ordinary labor market --- joint R& --- D institute --- institutional logics --- China’s innovation system --- China’s transnational Triple Helix linkages --- problem-solving --- critical reflection --- knowledge integration --- social learning --- systemic thinking --- entrepreneurial university --- entrepreneurship --- influencing factors --- sustainable universities --- corporate sustainability --- tensions --- integrative framework --- Finnish universities --- higher education system --- social entrepreneurship --- entrepreneurial universities --- business model innovation --- socialist economies --- Cuba --- knowledge brokers --- knowledge intensive policies --- smart specialisation --- innovation ecosystems --- global talent --- social integration --- economic integration --- Chinese student --- Finland --- university --- third mission --- knowledge-based society --- global innovation networks
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Higher education has been considered both an ‘engine’ for innovation and a ‘catalyst’ for sustainability development; the integration of both the innovation engine and sustainability catalyst roles are discussed in a recently published Special Issue on the theme of Higher Education in Innovation Ecosystems in the journal Sustainability. Based on 16 articles contributing to the Special Issue from various perspectives, the Special Issue editors have developed an overarching framework about the relationships between higher education and innovation ecosystems. In the framework, we re-define the concept of innovation ecosystem and identify emerging roles of universities in developing sustainable innovation ecosystems. Re-conceptualization of innovation ecosystems In the editorial of the Special Issue, innovation ecosystem is defined as: co-innovation networks in which actors from organizations concerned with the functions of knowledge production, wealth creation, and norm control interact with each other in forming co-evolution and interdependent relations (both direct or indirect) in cross-geographical contexts and through which new ideas and approaches from various internal and external sources are integrated into a platform to generate shared values for the sustainable transformation of society. Compared with most commonly cited definitions of innovation ecosystem, our definition highlights three new aspects of interactions in co-innovation networks: cross-sectoral, transnational, and indirect, drawing insights from the literature including innovation, geography, and biology studies. The roles of universities in innovation ecosystems The emerging roles of universities in innovation ecosystems are as follows: (1) The role of universities is changing from being a central player in technology transfer to being an anchor in knowledge exchange; (2) universities are assuming a new role in trust-building between actors in innovation ecosystems; and (3) universities are not merely an entrepreneurial universities but are also institutional entrepreneur in the innovation ecosystem. The three emerging roles all indicate that universities are becoming the catalysts for sustainable development in innovation ecosystems. Knowledge exchange is crucial for sustainability; trust is the foundation of the sustainable networks; social entrepreneurship is indispensable for sustainable social change. Evidence in wider contexts A total of 44 authors from 10 countries contributed to the discussions on the changing roles of higher education in innovation ecosystems from varying perspectives. They also report transformations within higher education and universities’ responses to both external and internal transformations. When addressing these issues, the studies provide both theoretical and methodological contributions to the research on higher education in innovation ecosystems. The 16 articles can be generally placed into four categories: (1) new demands for universities arising from the transformation in society toward innovation ecosystems, (2) transformations within higher education responding to emerging societal demands, (3) dynamics of the interaction of university with other innovation actors in a transnational context, and (4) academic and student mobility for higher education innovation. Calling for a new research agenda While societal changes demand broader roles of universities, they also call for and leads to substantial changes within the internal fabric of the university. The innovations in both society and the universities necessitate a renewed understanding of higher education in society, which has become a new research agenda in studies on innovation in higher education. We hope our Special Issue will inspire and encourage more scholars to join the research field.
transnational industry cooperation --- transnational university cooperation --- transnational innovation ecosystem --- EU–China --- science, technology and innovation cooperation --- transdisciplinary approach --- artificial intelligence --- machine learning --- Higher Education --- University --- Entrepreneurial competences --- Employability --- Theory of Planned Behaviour (TPB) --- Open Innovation --- business creation --- technology transfer --- innovation --- innovation ecosystem --- entrepreneurship education --- science and technology --- sustainability --- higher education --- educational innovation --- Mexico --- academic mobility --- knowledge transfer --- higher education innovation --- institutional environment --- postgraduate education --- education level --- discipline background --- graduation institution --- R& --- D investment --- triple helix --- synergy mechanism --- national system of innovation --- China --- Belt and Road Initiative --- developmental model of intercultural sensitivity --- general model of instructional communication --- instructional beliefs model --- intercultural communication competence model --- green GDP --- environment --- sustainable development --- global innovation systems --- Chinese research university --- faculty income --- academic labor market --- ordinary labor market --- joint R& --- D institute --- institutional logics --- China’s innovation system --- China’s transnational Triple Helix linkages --- problem-solving --- critical reflection --- knowledge integration --- social learning --- systemic thinking --- entrepreneurial university --- entrepreneurship --- influencing factors --- sustainable universities --- corporate sustainability --- tensions --- integrative framework --- Finnish universities --- higher education system --- social entrepreneurship --- entrepreneurial universities --- business model innovation --- socialist economies --- Cuba --- knowledge brokers --- knowledge intensive policies --- smart specialisation --- innovation ecosystems --- global talent --- social integration --- economic integration --- Chinese student --- Finland --- university --- third mission --- knowledge-based society --- global innovation networks
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