26 research outputs found

    Run Again

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    Digital Libraries, Personalisation, and Network Effects - Unpicking the Paradoxes

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    Creating a space for young women's voices: Using participatory 'video drama' in Uganda

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    This article draws upon research that explored the experiences of young women in relation to sexual health in Uganda with a view to enhancing gender-sensitive strategies. We have coined the phrase ‘participatory video drama’ to describe the exploratory methodology that the young women participants in our research used to present stories about their lives. The aim of this article is to suggest that ‘participatory video’ (PV) and ‘participatory video drama’ (PVD) are innovative methodological tools to utilise when working with participants who experience voicelessness in their everyday lives. We contribute to an emerging body of work around this methodology by suggesting that the process of PV provides a novel and engaging platform for participants to express their experiences. PVD further creates spaces for the performative exploration of embedded power relations and is therefore informative and has the potential to be transformatory and empowering

    Finishing the euchromatic sequence of the human genome

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    The sequence of the human genome encodes the genetic instructions for human physiology, as well as rich information about human evolution. In 2001, the International Human Genome Sequencing Consortium reported a draft sequence of the euchromatic portion of the human genome. Since then, the international collaboration has worked to convert this draft into a genome sequence with high accuracy and nearly complete coverage. Here, we report the result of this finishing process. The current genome sequence (Build 35) contains 2.85 billion nucleotides interrupted by only 341 gaps. It covers ∼99% of the euchromatic genome and is accurate to an error rate of ∼1 event per 100,000 bases. Many of the remaining euchromatic gaps are associated with segmental duplications and will require focused work with new methods. The near-complete sequence, the first for a vertebrate, greatly improves the precision of biological analyses of the human genome including studies of gene number, birth and death. Notably, the human enome seems to encode only 20,000-25,000 protein-coding genes. The genome sequence reported here should serve as a firm foundation for biomedical research in the decades ahead

    Mapping the expanding landscape of usability

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