934 research outputs found

    Updating known distribution models for forecasting climate change impact on endangered species

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    To plan endangered species conservation and to design adequate management programmes, it is necessary to predict their distributional response to climate change, especially under the current situation of rapid change. However, these predictions are customarily done by relating de novo the distribution of the species with climatic conditions with no regard of previously available knowledge about the factors affecting the species distribution. We propose to take advantage of known species distribution models, but proceeding to update them with the variables yielded by climatic models before projecting them to the future. To exemplify our proposal, the availability of suitable habitat across Spain for the endangered Bonelli’s Eagle (Aquila fasciata) was modelled by updating a pre-existing model based on current climate and topography to a combination of different general circulation models and Special Report on Emissions Scenarios. Our results suggested that the main threat for this endangered species would not be climate change, since all forecasting models show that its distribution will be maintained and increased in mainland Spain for all the XXI century. We remark on the importance of linking conservation biology with distribution modelling by updating existing models, frequently available for endangered species, considering all the known factors conditioning the species’ distribution, instead of building new models that are based on climate change variables only.Ministerio de Ciencia e Innovación and FEDER (project CGL2009-11316/BOS

    Droplet group production in an AC electro-flow-focusing microdevice

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    We report the production of droplet groups with a controlled number of drops in a microfluidic electro-flow focusing device under the action of an AC electric field. This regime appears for moderate voltages (500-700 V peak-to-peak) and signal frequencies between 25 and 100 Hz, much smaller than the droplet production rate ( ≈500 Hz). For this experimental conditions the production frequency of a droplet package is twice the signal frequency. Since the continuous phase flow in the microchannel is a Hagen-Poiseuille flow, the smaller droplets of a group move faster than the bigger ones leading to droplet clustering downstream.Ministerio de Economía y Competitividad DPI2013-46485-C3-1-RMinisterio de Economía y Competitividad FIS2014-54539- PJunta de Andalucía P11-FQM-791

    Kinesio taping: application and results on pain: systematic review

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    Kinesio taping is being increasingly used under several conditions; however, its hypoalgesic effect and mechanism of action do not show scientific results. Therefore, the aims of this study were to describe the principles of the method and mainly to analyze the results of clinical trials with control groups, related to pain with Kinesio taping. The PubMed, SciELO, Lilacs, Scirus and Academic Google databases were consulted, using the keywords: Kinesio Taping and Kinesio Tape, either associated or not to pain. Ten clinical trials related to pain and Kinesio taping were selected, assessed by using the PEDro scale, and its results were analyzed. Kinesio taping provided higher, similar or lower pain reduction than in other groups (control, placebo or technique). The application continues to use the principles of Kenzo Kase, the gate control theory being the most described so far to justify the hypoalgesic effect; and the effects were only found in short-term (24 hours to 1 week). Pain relief provided by Kinesio taping was similar or slightly superior to other interventions, not representing a reason for it to be the main treatment of choice. However, it can be considered an adjunct or complementary technique
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