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The use of bibliometrics for the analysis of technology management is on the rise in our increasingly technological societies. Many are using these tools to document or record the rise of various technologies, making it necessary to take stock of the value and application of scientometric methods and their measures.Innovation Discovery shows the current state of play within the field of management of technology, and discusses how we can use networks to explore, understand and generate theory around the innovation process. It looks at the different streams of analysis used to understand bibliometric data, and presents alternative and novel ways of applying these techniques.Written as a comprehensive review of approaches by leading researchers in the field, this book is suitable for graduate and post-graduate students and researches looking to expand their knowledge and embark on further investigations in technology management.
Technology transfer has expanded rapidly over the past 20 years in Western Europe, North America and the Pacific Rim. It has been estimated that some 50% of new products and processes will originate outside the primary developer; academic and other research institutions are obvious sources of much of this new technology. In the NATO Co-operating countries, however, technology transfer is in its infancy; it is crucial for wealth creation and improvement in the quality of life that this mechanism is developed. The papers selected for inclusion in this book discuss issues related to the development of technology transfer in NATO Co-operating countries. The book identifies crucial research issues for science and technology policy researchers and, as a conclusion, offers some policy recommendations. The authors are drawn from NATO and Co-operating partner countries, from other parts of the world, and from international organisations. The focus of the book is on the institutional framework of knowledge and technology transfer; intellectual property rights as sources of information and tools for co-operation; international, national and regional aspects of knowledge and technology dissemination and diffusion; and networking. Audience: Academic institutions, research institutes, intellectual property practitioners, science and technology policy makers, technology transfer managers, high-tech industries.
The second edition of this exhaustive work (ECIIE) comprehensively covers the broad spectrum of topics relating to the process of creativity and innovation, from a wide variety of perspectives (e.g., economics, management, psychology, anthropology, policy, technology, education, the arts) and modes (individual, organization, industry, nation, region). This edition includes some 400 topical entries, definitions of key terms and concepts and review essays, from a global array of more than 250 researchers, business executives, policymakers, and artists, illuminating the many facets of creativity and innovation and highlighting their relationships to such universal concepts as knowledge management, economic opportunity, and sustainability. Entries feature description of key concepts and definition of terms, full-color illustrations, case examples, future directions for research and application, synonyms and cross-references and bibliographic references.
Cycles of Invention and Discovery offers an in-depth look at the real-world practice of science and engineering. It shows how the standard categories of “basic” and “applied” have become a hindrance to the organization of the U.S. science and technology enterprise. Tracing the history of these problematic categories, Venkatesh Narayanamurti and Toluwalogo Odumosu document how historical views of policy makers and scientists have led to the construction of science as a pure ideal on the one hand and of engineering as a practical (and inherently less prestigious) activity on the other. Even today, this erroneous but still widespread distinction forces these two endeavors into separate silos, misdirects billions of dollars, and thwarts progress in science and engineering research. The authors contrast this outmoded perspective with the lived experiences of researchers at major research laboratories. Using such Nobel Prize–winning examples as magnetic resonance imaging, the transistor, and the laser, they explore the daily micro-practices of research, showing how distinctions between the search for knowledge and creative problem solving break down when one pays attention to the ways in which pathbreaking research actually happens. By studying key contemporary research institutions, the authors highlight the importance of integrated research practices, contrasting these with models of research in the classic but still-influential report Science the Endless Frontier. Narayanamurti and Odumosu’s new model of the research ecosystem underscores that discovery and invention are often two sides of the same coin that moves innovation forward.
Innovation in Industrial Research is a valuable resource for researchers working for industries or the public sector, managers of research projects, consultants and graduate students. --Book Jacket.
A study of how patents and citation data can serve empirical research on innovation and technological change.
The objective of the workshop that is the subject of this summary report was to present the challenges and opportunities for medical devices as perceived by the key stakeholders in the field. The agenda, and hence the summaries of the presentations that were made in the workshop and which are presented in this summary report, was organized to first examine the nature of innovation in the field and the social and economic infrastructure that supports such innovation. The next objective was to identify and discuss the greatest unmet clinical needs, with a futuristic view of technologies that might meet those needs. And finally, consideration was given to the barriers to the application of new technologies to meet clinical needs.
Every firm must maintain an entrepreneurial ecosystem and a coherent innovation strategy in order to stay ahead of the competition. For managers this means being able to build a vision of what innovation looks like in the context of their organization, fostering entrepreneurial behaviour, spotting opportunities and making the right decisions. Based on years of practical experience and unique insight, this handy guide identifies fundamental challenges and is rooted in concrete examples. Accompanied by a brand new app for iPhone and Android as well as a companion website (www.NavigatingInnovation.org), this is an easy dip in, dip out guide with a focus on successful execution. Navigating Innovation is a one-stop-shop, giving you a deeper understanding of the core concepts and tools to capture the right opportunities for your business.
A timely investigation of the potential economic effects, both realized and unrealized, of artificial intelligence within the United States healthcare system. In sweeping conversations about the impact of artificial intelligence on many sectors of the economy, healthcare has received relatively little attention. Yet it seems unlikely that an industry that represents nearly one-fifth of the economy could escape the efficiency and cost-driven disruptions of AI. The Economics of Artificial Intelligence: Health Care Challenges brings together contributions from health economists, physicians, philosophers, and scholars in law, public health, and machine learning to identify the primary barriers to entry of AI in the healthcare sector. Across original papers and in wide-ranging responses, the contributors analyze barriers of four types: incentives, management, data availability, and regulation. They also suggest that AI has the potential to improve outcomes and lower costs. Understanding both the benefits of and barriers to AI adoption is essential for designing policies that will affect the evolution of the healthcare system.
p.p1 {margin: 0.0px 0.0px 0.0px 0.0px; font: 10.0px Arial} This timely book provides an intellectual and conceptual history of a key representation of innovation: technological innovation. Tracing the history of the discourses of scholars, practitioners and policy-makers, and exploring how and why innovation became defined as technological, Benoît Godin studies the emergence of the term, its meaning, and its transformation and use over time.