24 research outputs found

    Citizen science breathes new life into participatory agricultural research : A review

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    Participatory research can improve the efficiency, effectiveness, and scope of research processes, and foster social inclusion, empowerment and sustainability. Yet despite four decades of agricultural research institutions exploring and developing methods for participatory research, it has never become mainstream in the agricultural technology development cycle. Citizen science promises an innovative approach to participation in research, using the unique facilities of new digital technologies, but its potential in agricultural research participation has not been systematically probed. To this end, we conducted a critical literature review. We found that citizen science opens up four opportunities for creatively reshaping research: i) new possibilities for interdisciplinary collaboration, ii) rethinking configurations of socio-computational systems, iii) research on democratization of science more broadly, and iv) new accountabilities. Citizen science also brings a fresh perspective on the barriers to institutionalizing participation in the agricultural sciences. Specifically, we show how citizen science can reconfigure cost-motivation-accountability combinations using digital tools, open up a larger conceptual space of experimentation, and stimulate new collaborations. With appropriate and persistent institutional support and investment, citizen science can therefore have a lasting impact on how agricultural science engages with farming communities and wider society, and more fully realize the promises of participation

    A Range of Earth Observation Techniques for Assessing Plant Diversity

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    AbstractVegetation diversity and health is multidimensional and only partially understood due to its complexity. So far there is no single monitoring approach that can sufficiently assess and predict vegetation health and resilience. To gain a better understanding of the different remote sensing (RS) approaches that are available, this chapter reviews the range of Earth observation (EO) platforms, sensors, and techniques for assessing vegetation diversity. Platforms include close-range EO platforms, spectral laboratories, plant phenomics facilities, ecotrons, wireless sensor networks (WSNs), towers, air- and spaceborne EO platforms, and unmanned aerial systems (UAS). Sensors include spectrometers, optical imaging systems, Light Detection and Ranging (LiDAR), and radar. Applications and approaches to vegetation diversity modeling and mapping with air- and spaceborne EO data are also presented. The chapter concludes with recommendations for the future direction of monitoring vegetation diversity using RS

    Innis in the <i>Concertgebouw</i>:Media and musical culture in nineteenth-century amsterdam

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    Is classical musical culture a purely sonic and aural culture, or is there more to this culture than music? Drawing upon Harold Innis’s media theory, this chapter examines classical musical culture as one that is inseparable from media, and in particular the concert hall and print media. Using the example of nineteenth century Amsterdam to explore this claim, this chapter begins by examining how ideas about listening and musical meaning were disseminated through print media as a means to both educate and discipline Amsterdammers to listen attentively and appreciate the inherent beauty and meaning of secular instrumental music. This edifying mission was complemented by the construction of the Concertgebouw in 1888, the first purpose-built concert hall in Amsterdam. The balance between these two media forms (print and architecture), enabled the classical music tradition to take hold in Amsterdam and endure across both time and space
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