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Patent citation spectroscopy (PCS): Online retrieval of landmark patents based on an algorithmic approach

机译:专利引用光谱(PCS):基于算法的在线检索地标专利

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One essential component in the construction of patent landscapes in biomedical research and development (R&D) is identifying the most seminal patents. Hitherto, the identification of seminal patents required subject matter experts within biomedical areas. In this article, we report an analytical method and tool, Patent Citation Spectroscopy (PCS), for the online identification of landmark patents in user-specified areas of biomedical innovation. Using USPTO data, PCS mines the cited references within large sets of patents at the internet and provides an estimate of the historically most impactful prior work. We show the efficacy of PCS in three case studies of biomedical innovation with clinical relevance: (1) RNA interference (RNAi), (2) cholesterol and (3) cloning. PCS mined and analyzed cited references related to patents on RNA interference and correctly identified the foundational patent of this technology, as independently reported by subject matter experts on RNAi intellectual property. Secondly, we apply PCS to a broad set of patents dealing with cholesterol - a case study chosen to reflect a more general, as opposed to expert, patent search query. PCS mined through cited references and identified the seminal patent as that for Lipitor, the groundbreaking medication for treating high cholesterol as well as the pair of patents underlying Repatha. The final case study, cloning, highlights some of the advantages conferred by the PCS methodology in identifying seminal patents. These cases suggest that PCS provides a useful method for identifying seminal patents in areas of biomedical innovation and therapeutics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在生物医学研究与开发(R&D)中构建专利格局的基本要素之一是确定最具开创性的专利。迄今为止,鉴定开创性专利需要生物医学领域的主题专家。在本文中,我们报告了一种分析方法和工具,专利引用光谱法(PCS),用于在线识别用户指定的生物医学创新领域中的地标性专利。 PCS使用USPTO数据在互联网上的大量专利中挖掘引用的参考文献,并提供对历史上影响最大的先前工作的估算。我们在与临床相关的三个生物医学创新案例研究中显示了PCS的功效:(1)RNA干扰(RNAi),(2)胆固醇和(3)克隆。 PCS挖掘并分析了与RNA干扰专利有关的引用参考文献,并正确确定了该技术的基础专利,这是RNAi知识产权领域的专家独立报告的。其次,我们将PCS应用于涉及胆固醇的一系列广泛的专利-选择该案例研究是为了反映一种较笼统的专利检索查询,而不是专家的专利查询。 PCS通过引用的参考文献进行了挖掘,并确定了具有开创性的专利,即立普妥(Lipitor)的专利,这是一种用于治疗高胆固醇的开创性药物,也是Repatha的专利对。最后的案例研究(克隆)突出显示了PCS方法在确定开创性专利方面所赋予的一些优势。这些案例表明,PCS提供了一种在生物医学创新和治疗领域确定开创性专利的有用方法。 (C)2018 Elsevier Ltd.保留所有权利。

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