Drawing on the theories of knowledge recombination, we aim to unpack the essential tension between tradition and innovation in scientific research. Using the American Physical Society data and computational methods, we analyze the impact of knowledge spanning on both citation counts and disruptive innovation. The findings show that knowledge spanning has a U-shaped impact on disruptive innovation. In contrast, there is an inverted U-shaped relationship between knowledge spanning and citation counts, and the inverted U-shaped effect is moderated by team size. This study contributes to the theories of knowledge recombination by suggesting that both intellectual conformism and knowledge recombination can lead to disruptive innovation. That is, when evaluating the quality of scientific research with disruptive innovation, the essential tension seems to disappear.
翻译:根据知识重组理论,我们的目标是解开科学研究传统和创新之间的基本矛盾。我们利用美国物理协会的数据和计算方法分析了知识对引用数和破坏性创新的影响。研究结果表明,知识的分布对破坏性创新具有U型影响。相反,知识的分布和引用数之间存在反向的U型关系,反向的U型效应则由团队规模来调节。本研究通过建议知识整合和知识重组可以导致破坏性创新,从而帮助知识重组理论。这就是说,在评估具有破坏性创新的科学研究质量时,基本紧张似乎已经消失。