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A new approach to explore the knowledge transition path in the evolution of science & technology: From the biology of restriction enzymes to their application in biotechnology

机译:探索科学技术发展中知识转移路径的新方法:从限制性酶的生物学到其在生物技术中的应用

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摘要

In this contribution, we develop a new approach to explore the process of knowledge transition from discovery-oriented science to technological fields, via applications-oriented research, including a mediator set. This trajectory is referred to as the D-A-T trajectory. It is shown how it can be constructed and measures are proposed to characterize the relational strength among different environments (discovery oriented research, applications-oriented research and patents) and the speed of evolution. Our approach is illustrated by a case study of three fundamental restriction enzymes articles. Among other results we found that 387 patents cited 124 of the 988 articles (a share of 12.55%) in the mediator set. Defining the non-patent references (NPR) transition rate as the number of citing patents divided by the number of articles in the mediator set yields a value 0.392. Our results suggest that the D-A-T path acts as a backbone and reveals important "invisible contributions" of an original scientific work during its evolution from discovery oriented research to outside academia. Our contribution provides a useful tool for bridging the existing gap in detecting the transition of knowledge between science and technology. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在此贡献中,我们开发了一种新方法,以通过面向应用的研究(包括中介者集合)来探索从发现型科学到技术领域的知识转变过程。该轨迹被称为D-A-T轨迹。它显示了如何构建它并提出了措施来表征不同环境之间的关系强度(面向发现的研究,面向应用的研究和专利)以及演化的速度。通过对三种基本限制酶文章的案例研究说明了我们的方法。在其他结果中,我们发现387个专利引用了988个调解器集中的988条文章中的124条(份额为12.55%)。将非专利参考(NPR)转换速率定义为引用专利的数量除以调解员集中的文章数量,得出的值为0.392。我们的研究结果表明,D-A-T路径是骨干,它揭示了原始科学工作从面向发现的研究到外部学术界的演变过程中的重要“无形贡献”。我们的贡献提供了一个有用的工具,可以弥合现有差距,以发现科学与技术之间的知识转移。 (C)2018 Elsevier Ltd.保留所有权利。

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