6 research outputs found

    Enhancing Next-Generation Sequencing-Guided Cancer Care Through Cognitive Computing

    Get PDF
    Background: Using next-generation sequencing (NGS) to guide cancer therapy has created challenges in analyzing and reporting large volumes of genomic data to patients and caregivers. Specifically, providing current, accurate information on newly approved therapies and open clinical trials requires considerable manual curation performed mainly by human “molecular tumor boards” (MTBs). The purpose of this study was to determine the utility of cognitive computing as performed by Watson for Genomics (WfG) compared with a human MTB. Materials and Methods: One thousand eighteen patient cases that previously underwent targeted exon sequencing at the University of North Carolina (UNC) and subsequent analysis by the UNCseq informatics pipeline and the UNC MTB between November 7, 2011, and May 12, 2015, were analyzed with WfG, a cognitive computing technology for genomic analysis. Results: Using a WfG-curated actionable gene list, we identified additional genomic events of potential significance (not discovered by traditional MTB curation) in 323 (32%) patients. The majority of these additional genomic events were considered actionable based upon their ability to qualify patients for biomarker-selected clinical trials. Indeed, the opening of a relevant clinical trial within 1 month prior to WfG analysis provided the rationale for identification of a new actionable event in nearly a quarter of the 323 patients. This automated analysis took <3 minutes per case. Conclusion: These results demonstrate that the interpretation and actionability of somatic NGS results are evolving too rapidly to rely solely on human curation. Molecular tumor boards empowered by cognitive computing could potentially improve patient care by providing a rapid, comprehensive approach for data analysis and consideration of up-to-date availability of clinical trials. Implications for Practice: The results of this study demonstrate that the interpretation and actionability of somatic next-generation sequencing results are evolving too rapidly to rely solely on human curation. Molecular tumor boards empowered by cognitive computing can significantly improve patient care by providing a fast, cost-effective, and comprehensive approach for data analysis in the delivery of precision medicine. Patients and physicians who are considering enrollment in clinical trials may benefit from the support of such tools applied to genomic data

    Embracing the buyer's market for knowledge

    No full text

    Mensuração dos custos econômicos do setor de distribuição de gás canalizado do estado de São Paulo com o emprego do EVA®: o caso da Comgás

    Get PDF
    Este artigo mensura os custos econômicos ao longo do período compreendido entre 2004 e 2008, através de uma abordagem exploratória com a utilização do Economic Value Added - EVA®, aplicando os procedimentos de Nam e colaboradores (2009) ao caso da Comgás. Os resultados oferecem indícios de que a companhia está em uma situação de deseconomia de escala, o que ressalta a importância de o órgão regulador avaliar se os investimentos realizados pela companhia e o custo de capital estarão alinhados à obtenção de economias de escala, cujos benefícios possam ser transmitidos aos consumidores no próximo ciclo tarifário
    corecore