C Anwar A Chahal, Fares Alahdab, Babken Asatryan, Daniel Addison, Nay Aung, Mina K Chung, Spiros Denaxas, Jessilyn Dunn, Jennifer L Hall, Nathalie Pamir, David J Slotwiner, Jose D Vargas, Antonis A Armoundas
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引用次数: 0
摘要
尽管心血管护理取得了进步,结果也有所改善,但分散的卫生保健系统、不公平的卫生保健获取以及不统一和无偏见的卫生保健数据收集和获取加剧了卫生保健提供方面的差距,并进一步推迟了技术支持的精准医疗的实施。精准医疗依赖于准确有效的组学和表型组学的基础,可以从电子健康记录中大规模利用。非心血管医疗保健领域的大数据方法有助于提高效率并加快新疗法的开发;因此,将这种方法应用于心血管精准医学是进一步推进该领域的机会。包括美国心脏协会精准医疗平台和公私合作伙伴关系(如欧洲的BigData@Heart)以及基于云的平台,如美国国立卫生研究院(National Institutes of Health)使用的Terra,都在尝试从时间和本体论上协调数据。这篇最新的综述总结了心血管基因组学和精准医学中使用的最佳实践,并为系统需求提供了建议,可以加强和加速这些平台的整合。
Data Interoperability and Harmonization in Cardiovascular Genomic and Precision Medicine.
Despite advances in cardiovascular care and improved outcomes, fragmented healthcare systems, nonequitable access to health care, and nonuniform and unbiased collection and access to healthcare data have exacerbated disparities in healthcare provision and further delayed the technological-enabled implementation of precision medicine. Precision medicine relies on a foundation of accurate and valid omics and phenomics that can be harnessed at scale from electronic health records. Big data approaches in noncardiovascular healthcare domains have helped improve efficiency and expedite the development of novel therapeutics; therefore, applying such an approach to cardiovascular precision medicine is an opportunity to further advance the field. Several endeavors, including the American Heart Association Precision Medicine platform and public-private partnerships (such as BigData@Heart in Europe), as well as cloud-based platforms, such as Terra used for the National Institutes of Health All of Us, are attempting to temporally and ontologically harmonize data. This state-of-the-art review summarizes best practices used in cardiovascular genomic and precision medicine and provides recommendations for systems' requirements that could enhance and accelerate the integration of these platforms.
期刊介绍:
Circulation: Genomic and Precision Medicine is a distinguished journal dedicated to advancing the frontiers of cardiovascular genomics and precision medicine. It publishes a diverse array of original research articles that delve into the genetic and molecular underpinnings of cardiovascular diseases. The journal's scope is broad, encompassing studies from human subjects to laboratory models, and from in vitro experiments to computational simulations.
Circulation: Genomic and Precision Medicine is committed to publishing studies that have direct relevance to human cardiovascular biology and disease, with the ultimate goal of improving patient care and outcomes. The journal serves as a platform for researchers to share their groundbreaking work, fostering collaboration and innovation in the field of cardiovascular genomics and precision medicine.