37 research outputs found

    GA4GH: International policies and standards for data sharing across genomic research and healthcare.

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    The Global Alliance for Genomics and Health (GA4GH) aims to accelerate biomedical advances by enabling the responsible sharing of clinical and genomic data through both harmonized data aggregation and federated approaches. The decreasing cost of genomic sequencing (along with other genome-wide molecular assays) and increasing evidence of its clinical utility will soon drive the generation of sequence data from tens of millions of humans, with increasing levels of diversity. In this perspective, we present the GA4GH strategies for addressing the major challenges of this data revolution. We describe the GA4GH organization, which is fueled by the development efforts of eight Work Streams and informed by the needs of 24 Driver Projects and other key stakeholders. We present the GA4GH suite of secure, interoperable technical standards and policy frameworks and review the current status of standards, their relevance to key domains of research and clinical care, and future plans of GA4GH. Broad international participation in building, adopting, and deploying GA4GH standards and frameworks will catalyze an unprecedented effort in data sharing that will be critical to advancing genomic medicine and ensuring that all populations can access its benefits

    Luncheon

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    Leon Fuerth, Professor of International Affairs, the Elliott School of International Affairs, the George Washington University. Introduction by Prof. Scott Silliman, LENS Director.Second day\u27s lunchtime speaker at the 2002 Law, Ethics and National Security Conference held at the Washington Duke Inn on April 11-12, 2002

    Luncheon

    No full text
    Leon Fuerth, Professor of International Affairs, the Elliott School of International Affairs, the George Washington University. Introduction by Prof. Scott Silliman, LENS Director.Second day\u27s lunchtime speaker at the 2002 Law, Ethics and National Security Conference held at the Washington Duke Inn on April 11-12, 2002

    Four approaches to anticipatory climate governance: Different conceptions of the future and implications for the present

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    In times of accelerating earth system transformations and their potentially disruptive societal consequences, imagining and governing the future is now a core challenge for sustainability research and practice. Much social science and sustainability science scholarship increasingly engages with the future. There is, however, a lack of scrutiny of how the future is envisioned in these literatures, and with what implications for governance in the present. This article analyses these two aspects, building on the concept of “anticipatory governance.” We understand anticipatory governance to broadly mean governing in the present to adapt to or shape uncertain futures. We review perspectives within public policy, futures studies, social–ecological systems, environmental policy and governance, transition studies, science and technology studies, and responsible research and innovation literatures. All these literatures engage explicitly or implicitly with the notion of anticipatory governance, yet from distinct ontological and epistemological starting points. Through our review, we identify four approaches to anticipatory governance that differ with regard to (a) their conceptions of and engagement with the future; (b) their implications for actions to be taken in the present; and (c) the ultimate end to be realized through anticipatory governance. We then map onto these four approaches a diverse set of methods and tools of anticipation that each engages with. In concluding, we discuss how these four approaches provide a useful analytical lens through which to assess ongoing practices of anticipatory governance in the climate and sustainability realm

    High-throughput measurement of the content and properties of nano-sized bioparticles with single-particle profiler

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    We introduce a method, single-particle profiler, that provides single-particle information on the content and biophysical properties of thousands of particles in the size range 5–200 nm. We use our single-particle profiler to measure the messenger RNA encapsulation efficiency of lipid nanoparticles, the viral binding efficiencies of different nanobodies, and the biophysical heterogeneity of liposomes, lipoproteins, exosomes and viruses
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