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31.
This brief article introduces a new methodology for systemic action research—Triple Task (TT)—and sets out its rationale and initial progress in becoming an embedded method for group working. Arising from the authors previous work with soft systems approaches, the Imagine method for sustainable development assessment and action research in a variety of global locations, TT provides a means for groups to engage together in purposive work and, at the same time, for facilitators to understand how the dynamic of the group influences the groups output. TT is based on an ambitious concept and at the time of writing the results of TT applied in the context of an EU Framework 7 funded project are in their early stages but importantly, significant insights are already arising including the answers to some puzzling questions:
- Do purposeful groups always produce the most insightful outcomes?
- Do conflictual groups produce incoherent results?
- What makes a ‘good’ group?
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Pengfei Hu Kai Xing Liusheng Huang Yang Wang Dapeng Wang Pei Li.School of Computer Science Technology University of Science Technology of China Hefei China .Suzhou Institute for Advanced Study University of Sciences Technology of China Suzhou .Alcatel-Lucent Shanghai Bell Shanghai .College of Information Systems Management National University of Defense Technology Changsha 《清华大学学报》2011,16(5):553-558
This paper proposes a multi-axis projection (MAP) based giant component formation strategy via the Maximal Independent Set (MIS) in a random unit-disk graph.We focus on the problem of virtual back-bone construction in wireless ad hoc and sensor networks,where the coverage areas of the nodes are disks with identical radii.In the simulation,we show that the MAP-based giant component has the ability to connect most nodes and serves as a backbone in the network.The algorithm is localized and may play an important role in efficiently constructing a virtual backbone for ad hoc and sensor networks. 相似文献
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Self-incompatibility in Papaver targets soluble inorganic pyrophosphatases in pollen 总被引:2,自引:0,他引:2
de Graaf BH Rudd JJ Wheeler MJ Perry RM Bell EM Osman K Franklin FC Franklin-Tong VE 《Nature》2006,444(7118):490-493
In higher plants, sexual reproduction involves interactions between pollen and pistil. A key mechanism to prevent inbreeding is self-incompatibility through rejection of incompatible ('self') pollen. In Papaver rhoeas, S proteins encoded by the stigma interact with incompatible pollen, triggering a Ca2+-dependent signalling network resulting in pollen tube inhibition and programmed cell death. The cytosolic phosphoprotein p26.1, which has been identified in incompatible pollen, shows rapid, self-incompatibility-induced Ca2+-dependent hyperphosphorylation in vivo. Here we show that p26.1 comprises two proteins, Pr-p26.1a and Pr-p26.1b, which are soluble inorganic pyrophosphatases (sPPases). These proteins have classic Mg2+-dependent sPPase activity, which is inhibited by Ca2+, and unexpectedly can be phosphorylated in vitro. We show that phosphorylation inhibits sPPase activity, establishing a previously unknown mechanism for regulating eukaryotic sPPases. Reduced sPPase activity is predicted to result in the inhibition of many biosynthetic pathways, suggesting that there may be additional mechanisms of self-incompatibility-mediated pollen tube inhibition. We provide evidence that sPPases are required for growth and that self-incompatibility results in an increase in inorganic pyrophosphate, implying a functional role for Pr-p26.1. 相似文献
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Simon Bell Francesca Benatti Neil R. Edwards Robin Laney David R. Morse Lara Piccolo Oliver Zanetti 《Systemic Practice and Action Research》2018,31(1):27-53
The research described in this paper is undertaken under the banner of the smart city, a concept that captures the way urban spaces are re-made by the incursion of new technology. Much of smart is centred on converting everyday activities into data, and using this data to generate knowledge mediated by technology. Ordinary citizens, those that may have their lives impacted by the technology, usually are not properly involved in the ‘smartification’ process. Their perceptions, concerns and expectations should inform the conception and development of smart technologies at the same extent. How to engage general public with smart cities research is the central challenge for the Making Metrics Meaningful (MMM) project. Applying a rapid participatory method, ‘Imagine’ over a five-month period (March – July) the research sought to gain insights from the general public into novel forms of information system innovation. This brief paper describes the nature of the accelerated research undertaken and explores some of the themes which emerged in the analysis. Generic themes, beyond the remit of an explicit transport focus, are developed and pointers towards further research directions are discussed. Participatory methods, including engaging with self-selected transport users actively through both picture creation and programmatically specific musical ‘signatures’ as well as group discussion, were found to be effective in eliciting users’ own concerns, needs and ideas for novel information systems. 相似文献
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Systemic Practice and Action Research - 相似文献