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Evolutionary chimeras: a Woesian perspective of radical innovation

机译:进化嵌合体:激进创新的困境视角

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This article proposes a novel perspective of technological change based on the 'Woesian' model of cell evolution to study technological change and, in particular, the origins of radical innovation. The model identifies horizontal gene transfer (HGT) as a critical force that drives evolution and complements the Darwinian theory of vertical inheritance. Building on this model, we highlight the key role of the horizontal transfer of functional modules in generating radical innovation as well as strengthening the analogy between biological and technological evolution. We use the turbojet revolution to illustrate the main features of the model and elucidate the conditions under which horizontal transfer is a crucial evolutionary force leading to radical innovation. We then elaborate on the implications of the model for how firms should search for radical innovation, as well as emphasize the importance of a firm's replicative-integrative capability-that is, the ability to 'replicate with modifications' existing functional modules and integrate them into a novel architecture-in shaping the generation of radical innovation.
机译:本文提出了一种基于“筛席”群体进化模型的技术变革的新颖视角,以研究技术变革,特别是激进创新的起源。该模型将水平基因转移(HGT)识别为推动演化的临界力并补充达尔文垂直遗产理论。建立在这个模型上,我们突出了功能模块水平转移在产生激进创新方面的关键作用,以及加强生物学和技术演化之间的类比。我们使用Turbojet革命来说明模型的主要特征,并阐明水平转移是一个关键的进化力,导致激进创新。然后,我们详细阐述了公司如何搜索激进创新的模型,并强调公司的复制综合性能力的重要性 - 即“用修改”现有功能模块的能力并将它们集成到一种新的建筑 - 塑造自由基创新的生成。

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