103 research outputs found

    Knowledge about and Knowledge with: Contributions from Feminist Research to Knowledge Co-Production for Pastoral Systems

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    Globally, the gender dynamics of rangeland social-ecological systems have received scant attention. Further, research paradigms, methods and methodologies that leave little room for equitable engagement with research participants and genuine action-oriented research-practice partnerships dominate in pastoralist/rangeland studies. Our research is informed by a feminist philosophy of science and based on decolonial and feminist political ecology studies that focus on gendered science and knowledge production. Feminist research calls for reflection on who produces knowledge and how such knowledge is used and shared. Feminist practices such as reciprocity, care, and positionality, cultivate awareness of the power dynamics embedded in the research process and motivate us as researchers to counteract asymmetrical or extractive relationships when we identify them. In this paper we first introduce the principles of our feminist research, and then reflect on our experience as researchers and as activists or participants in the Spanish and Catalan networks of women shepherdesses and livestock operators

    A uvbyβ survey of northern-hemisphere active binaries II: the m1 deficiency

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    New photometric observations, using the uvby and Hβ systems of 72 northern-hemisphere active binaries are discussed in order to explain the main characteristics of their spectral light intensity distribution. Values of the parameter δm1 range from 0.0 to 0.3 mag, which cannot be explained in terms of metal underabundance alone. The existence of some mechanism, responsible for such a colour-index anomaly, is thus suggested and is found to be in close relation with the involved degree of solar-type activity

    Adaptive, Multi-Paddock, Rotational Grazing Management: An Experimental, Ranch-Scale Assessment of Effects on Multiple Ecosystem Services

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    Decisions on how to move livestock in space and time are central to rangeland management. Despite decades of small-scale research, substantial uncertainty exists regarding the relative importance of cattle stocking rates per se, versus the movement of cattle in both space and time, in achieving desired vegetation and livestock outcomes at scales relevant to livestock producers. We report on a ranch-scale experiment comparing effects of collaborative, adaptive, multi-paddock, rotational management (CARM) versus more traditional, season-long, continuous rangeland management (TRM) on perennial grass density and production, cattle performance, and wildlife habitat, while holding the annual stocking rate the same in both systems. We collaborated with stakeholders to develop an adaptive grazing management plan, collected pre-treatment data in 2013, and implemented treatments during 2014 – 2020. Results for 2014 – 2018 were reported by Augustine et al. (2020); here we report on two additional years of results, covering a 7-year period of treatments from 2014 – 2020. With two additional years of measurements, we found no significant difference in total forage production in CARM vs. TRM treatments, averaged across all soil types in the experiment. In one year, we found that CARM increased forage production on loamy soils and decreased forage production on alkaline soils, but these differences were minor and in opposite directions, resulting in no net overall effect. Furthermore, we found that adaptive, rotational grazing management substantially reduced livestock weight gains in each of the first 6 years of the experiment, when cattle were managed as a single, large herd occupying each paddock sequentially. Across the 6 years, cattle weight gain averaged 15% lower in CARM vs. TRM. In the 7th year, stocking density in CARM was reduced 50% by giving cattle access to two paddocks at a time. This year also coincided with a drought. Under these conditions, cattle weight gains were identical in both treatments. Results emphasize the importance of replicated controls in assessing grazing management effects. Even in heterogeneous landscapes where livestock are moved adaptively among paddocks to match seasonal patterns of forage growth, such management may not lead to desired outcomes for vegetation and livestock

    Una Experiencia de iniciación al paralelismo en segundo curso del Grado de Ingeniería Informática

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    En este artículo se analiza una experiencia de introducción del paralelismo de forma temprana en el Grado de Ingeniería Informática. En la experiencia participan cuatro asignaturas de segundo curso, impartidas por tres departamentos distintos y con la colaboración de un centro de computación. En este curso se realiza la primera aproximación de los alumnos al paralelismo, y se pretende realizar un acercamiento coordinado y práctico a diferentes materias.SUMMARY -- This work presents an experience of early introduction to parallelism in the Degree on Computing Engineering. Four courses of the second year participate in the experience and also a computing centre. The courses are tought by three departments. In the second year the students are introduced to parallelism for the first time, and with our experience we intend to approach different topics of parallelism in a coordinated and practical way.Peer Reviewe

    Toward a holistic understanding of pastoralism

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    Pastoralism is globally significant in social, environmental and economic terms. However, it experiences crises rooted in misconceptions and poor interdisciplinary understanding, while being largely overlooked in international sustainability forums and agendas. Here we propose a transdisciplinary research approach to understand pastoralist transitions using i) social, economic and environmental dimensions, ii) diverse geographic contexts and scales to capture emerging properties, allowing for cross-system comparisons, and iii) timescales from the distant past to the present. We provide specific guidelines to develop indicators for this approach, within a social-ecological resilience analytical framework to understand change. Distinct systems undergo similar transitions over time, crossing critical thresholds and then either collapsing or recovering. Such an integrated view of multidimensional interactions improves understanding of possible tipping points, thereby supporting better-informed decision-making. The need for a paradigm shift in pastoralism science and policy is pressing. This research approach, including participatory methods, can provide the solutions urgently needed.Peer reviewe

    Factors structuring microbial communities in highly impacted coastal marine sediments (Mar Menor lagoon, SE Spain)

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    Coastal marine lagoons are environments highly vulnerable to anthropogenic pressures such as agriculture nutrient loading or runoff from metalliferous mining. Sediment microorganisms, which are key components in the biogeochemical cycles, can help attenuate these impacts by accumulating nutrients and pollutants. The Mar Menor, located in the southeast of Spain, is an example of a coastal lagoon strongly altered by anthropic pressures, but the microbial community inhabiting its sediments remains unknown. Here, we describe the sediment prokaryotic communities along a wide range of environmental conditions in the lagoon, revealing that microbial communities were highly heterogeneous among stations, although a core microbiome was detected. The microbiota was dominated by Delta- and Gammaproteobacteria and members of the Bacteroidia class. Additionally, several uncultured groups such as Asgardarchaeota were detected in relatively high proportions. Sediment texture, the presence of Caulerpa or Cymodocea, depth, and geographic location were among the most important factors structuring microbial assemblages. Furthermore, microbial communities in the stations with the highest concentrations of potentially toxic elements (Fe, Pb, As, Zn, and Cd) were less stable than those in the non-contaminated stations. This finding suggests that bacteria colonizing heavily contaminated stations are specialists sensitive to change

    Towards a holistic understanding of pastoralism

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    Pastoralism is a globally-important livelihood, with large social, environmental and economic importance across much of our planet. Yet, it is also a vulnerable practice with widespread crises, urgently calling for better systemic understanding. The current disciplinary compartmentalization of research not only hampers this but allows perpetuation of unfortunate misconceptions. Furthermore, a long-standing marginalization of the livelihood prevails, with pastoralism being largely overlooked in international environmental and economic forums or sustainability agendas. Here we call for transformative approaches to pastoralism research that can advance an integrated understanding of these social-ecological systems through a comparative lens. We develop a framework that uses: i) timescales from the distant past to the present, ii)social, economic and environmental dimensions, and iii) diverse geographic contexts and scales, to capture emerging properties allowing for cross-cultural comparisons. We provide specific guidelines for formally developing a coherent set of sustainability indicators that are transferable across time and space, and can track sustainability. In an exploratory exercise, we also show that very distinct pastoralist systems have undergone similar transitions across time, approaching critical thresholds and then either collapsing or recovering. An integrated view of the interactions between the environmental, social and economic dimensions of these transitions allows for an improved understanding of potential tipping points, hence supporting more proactive and informed decision-making. We conclude that the need for a paradigm shift in pastoralism science and policy is pressing. Determining when, where and how is pastoralism not only sustainable, but also the most adaptive livelihood, has become a priority. This paper is based on Manzano et al. (2021).Peer reviewe

    Una experiencia de iniciación al paralelismo en segundo curso del Grado de Ingeniería Informática

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    En este artículo se analiza una experiencia de introducción del paralelismo de forma temprana en el Grado de Ingeniería Informática. En la experiencia participan cuatro asignaturas de segundo curso, impartidas por tres departamentos distintos y con la colaboración de un centro de computación. En este curso se realiza la primera aproximación de los alumnos al paralelismo, y se pretende realizar un acercamiento coordinado y práctico a diferentes materias.This work presents an experience of early introduction to parallelism in the Degree on Computing Engineering. Four courses of the second year participate in the experience and also a computing centre. The courses are tought by three departments. In the second year the students are introduced to parallelism for the first time, and with our experience we intend to approach different topics of parallelism in a coordinated and practical way.Subvencionado por la Fundación Séneca de la Región de Murcia, 08763/PI/08

    Reliability of a novel electro-medical device for wheal size measurement in allergy skin testing: An exploratory clinical trial

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    Skin prick testing (SPT) is the cornerstone of IgE-mediated allergy diagnosis,1 due to its high sensitivity and specificity.2 However, a uniform method for wheal measurement does not exist. Ansotegui et al.2 recommends to measure wheals in millimeters with a ruler, in many centers they are outlined with a pen and transfer by tape to a paper and then measured. Subsequently, the specialist is able to manually measure the maximum (MD) and orthogonal diameter (OD) of the wheal. This procedure is time consuming and makes repro-ducible measurements difficult.2,3 Knowing the wheal's area could help make a more accurate diagnosis.4 Over the last 30 years, many attempts have been made to develop a device to measure the size of SPT.3 Nexkin DSPT® (Figure S1A,B) is a novel mechatronic system based on 3D laser technology, that automatically locates allergen's wheal and measures its size (MD, OD and area in square millimeters) (Figure S1C)
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