49 research outputs found

    Comportamento produtivo de caprinos de aptidão mista no Acre.

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    A caprinocultura nacional, atualmente, é representada por aproximadamente 9 milhões de cabeças, sendo que deste total, 92% encontram-se no Nordeste do Brasil, representando um componente dos sistemas de produção dos pequenos produtores dessa Região. No Acre, em face da produção irregular de proteínas de origem animal pelos pequenos produtores, a racionalização da caprinocultura é medida importante. A introdução de caprinos melhorados com padrão racial definido e melhores conhecimentos técnicos de manejo, possibilitarão o oferecimento de uma fonte de proteína de baixo custo, principalmente pela aptidão dupla do caprino em estudo.bitstream/item/117377/1/1148.pd

    Soil carbon sequestration in grass and grass-legume pastures in the western Brazilian Amazon.

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    Land use change from native forests to pastures in the tropics have impact on global carbon (C) cycle through increased rates of C emissions to the atmosphere and the loss of above- and belowground C accumulation and storage capacity (SILVER et al., 2000). This study was conducted to determine the carbon stock in a Ultisol under a pure Brachiaria humidicola (Rendle) Scheick pasture and a mixed pasture of B. humidicola and Arachis pintoi Krapov. & W. C. Greg cv. BRS Mandobi, both without fertilization.Coordenação: Roberto Giolo de Almeida

    Comportamento produtivo de ovinos Santa Inês no Estado do Acre.

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    O rebanho ovino do Estado do Acre consiste, em sua grande maioria, de animais do tipo Sem Raça Definida (SRD), introduzidos pelos imigrantes provenientes das diversas regiões do Brasil. Esses animais apresentam grande quantidade de lã, sendo esta uma das principais características que dificultam a sua adaptação às condições de clima quente e úmido da região. Os sistemas de criação de ovinos no Acre apresentam baixo nível tecnológico, com pouco ou nenhum manejo, resultando na obtenção de baixos índices produtivos. A pouca disponibilidade de matrizes e reprodutores adaptados às condições climáticas da região, aliada a inexistência de um sistema de produção adequado, refletem na posição pouco destacada da ovinocultura na pecuária acreana. A tradição nordestina de grande parte dos pequenos agricultores acreanos, surge como um fator estimulante para o desenvolvimento da ovinocultura, sobretudo pelos pequenos investimentos exigidos por esta atividade e pelo potencial de suprir proteína de origem animal de baixo custo. A EMBRAPA, através da UEPAE de Rio Branco, vem desenvolvendo pesquisas objetivando gerar e/ou adaptar tecnologias para o Estado, quanto a criação racional de ovinos deslanados em pastagens cultivadas de Brachiaria humidicola (Quicuio-da-Amaz&nia), gramínea adaptada ao ecossistema regional. Para esta pesquisa optou-se pela raça Santa Inês que foi desenvolvida no Nordeste do Brasil. Esta raça apresenta grande adaptação e potencial produtivo em diversas regiões do Brasil, podendo se constituir em- uma opção de pecuária acessível aos pequenos produtores do Acre.bitstream/item/117379/1/1149.pd

    Closed circuits : kinship, neighborhood and incarceration in urban Portugal

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    The notion that prisons are a ‘world apart’, with their walls severing prisoners from their external relationships, and incarceration an interruption, ‘time away’ spent in a separate social universe, has provided an adequate framework for understanding the social realities of imprisonment in the past. But it has also created an analytical dead angle that prevents us from identifying the ramifying social effects of concentrated incarceration upon both the prison and heavily penalized lower-class neighborhoods. This article addresses these effects with data from an ethnographic revisit of a major women’s prison in Portugal, where the recomposition of the inmate population that has accompanied the rapid inflation of the country’s carceral population is especially pronounced and entails the activation of wide-ranging carceralized networks bringing kinship and neighborhood into the prison as well as the prison into the domestic world. The analysis focuses on the ways whereby these constellations have transformed the experience of confinement and the texture of correctional life, calling for a reconsideration of the theoretical status of the prison as a ‘total institution’ and for exploring anew the boundary that separates it (or not) from outside worlds.Wenner-Gren Foundation for Anthropological Research

    Antioxidant, anti-acetylcholinesterase and cytotoxic activities of ethanol extracts of peel, pulp and seeds of exotic Brazilian fruits Antioxidant, anti-acetylcholinesterase and cytotoxic activities in fruits.

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    Ethanol extracts of powdered genipap (Genipa americana L.), umbu (Spondia tuberosa A.) and siriguela (Spondia purpurea L.) prepared from separate pulp, seeds and peel were investigated for their (i) antioxidant capacity, which was evaluated by various known methods; (ii) acetylcholinesterase (AChE) inhibitory activity; and (iii) cytotoxic effect on corneal epithelial cells of sheep. The highest values of total phenolic content were obtained with peel and seed extracts. Siriguela and umbu (seeds and peel) extracts displayed the highest antioxidant activities. Lipid peroxidation assays using mimetic biomembranes and mouse liver homogenates indicated that genipap pulp is a promising antioxidant. The investigation of phenols and organic acid contents revealed the presence of quercetin, citric and quinic acids, chlorogenic acid derivatives, among others, in several extracts, with the highest amount found in siriguela seeds. Genipap pulp and siriguela seed ethanol extracts presented an AChE inhibition zone similar to that of the positive control, carbachol. AChE inhibition assay with chlorogenic acid, one of the main constituents of siriguela seeds, revealed that this acid showed activity similar to that of the control physostigmine. These data suggest that these extracts are potentially important antioxidant supplements for the everyday human diet, pharmaceutical and cosmetic industries

    AVASUS’ Contributions to Promoting Lifelong Learning in Health: Toward Achieving the SDGs and Strengthening Global Health Security

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    The Virtual Learning Environment of the Brazilian Health System (AVASUS) was developed by the Laboratory for Technological Innovation in Health (LAIS) and the Secretariat of Distance Education (SEDIS) at the Federal University of Rio Grande do Norte (UFRN) in partnership with Brazil’s Ministry of Health (MoH). AVASUS provides open educational resources in the health field and has emerged as the third largest platform for massive health education globally, with more than one million students. Among the various learning pathways AVASUS offers, some specifically focus on meeting the educational needs to address public health emergencies and overlooked health contexts. The main argument in this study is that technology-mediated lifelong learning in health is an effective strategy for achieving the Sustainable Development Goals (SDGs) of the 2030 Agenda. This chapter analyzes the pathways related to COVID-19, syphilis, and prison health, focusing on the contributions towards achieving SDGs 3, 4, 5, 10, 11, 16, and 17 and fulfilling the Global Health Security Agenda. Our analysis revealed two key findings. Lifelong learning in health (i) prompts decision-making on public health policies and (ii) contributes towards implementing the SDGs. Ultimately, AVASUS should be recognized as a tool to improve health services and support policy-making

    Basin-wide variation in tree hydraulic safety margins predicts the carbon balance of Amazon forests

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    Funding: Data collection was largely funded by the UK Natural Environment Research Council (NERC) project TREMOR (NE/N004655/1) to D.G., E.G. and O.P., with further funds from Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil (CAPES, finance code 001) to J.V.T. and a University of Leeds Climate Research Bursary Fund to J.V.T. D.G., E.G. and O.P. acknowledge further support from a NERC-funded consortium award (ARBOLES, NE/S011811/1). This paper is an outcome of J.V.T.’s doctoral thesis, which was sponsored by CAPES (GDE 99999.001293/2015-00). J.V.T. was previously supported by the NERC-funded ARBOLES project (NE/S011811/1) and is supported at present by the Swedish Research Council Vetenskapsrådet (grant no. 2019-03758 to R.M.). E.G., O.P. and D.G. acknowledge support from NERC-funded BIORED grant (NE/N012542/1). O.P. acknowledges support from an ERC Advanced Grant and a Royal Society Wolfson Research Merit Award. R.S.O. was supported by a CNPq productivity scholarship, the São Paulo Research Foundation (FAPESP-Microsoft 11/52072-0) and the US Department of Energy, project GoAmazon (FAPESP 2013/50531-2). M.M. acknowledges support from MINECO FUN2FUN (CGL2013-46808-R) and DRESS (CGL2017-89149-C2-1-R). C.S.-M., F.B.V. and P.R.L.B. were financed by Coordenação de Aperfeiçoamento de Pessoal de Nível Superior—Brasil (CAPES, finance code 001). C.S.-M. received a scholarship from the Brazilian National Council for Scientific and Technological Development (CNPq 140353/2017-8) and CAPES (science without borders 88881.135316/2016-01). Y.M. acknowledges the Gordon and Betty Moore Foundation and ERC Advanced Investigator Grant (GEM-TRAITS, 321131) for supporting the Global Ecosystems Monitoring (GEM) network (gem.tropicalforests.ox.ac.uk), within which some of the field sites (KEN, TAM and ALP) are nested. The authors thank Brazil–USA Collaborative Research GoAmazon DOE-FAPESP-FAPEAM (FAPESP 2013/50533-5 to L.A.) and National Science Foundation (award DEB-1753973 to L. Alves). They thank Serrapilheira Serra-1709-18983 (to M.H.) and CNPq-PELD/POPA-441443/2016-8 (to L.G.) (P.I. Albertina Lima). They thank all the colleagues and grants mentioned elsewhere [8,36] that established, identified and measured the Amazon forest plots in the RAINFOR network analysed here. The authors particularly thank J. Lyod, S. Almeida, F. Brown, B. Vicenti, N. Silva and L. Alves. This work is an outcome approved Research Project no. 19 from ForestPlots.net, a collaborative initiative developed at the University of Leeds that unites researchers and the monitoring of their permanent plots from the world’s tropical forests [61]. The authros thank A. Levesley, K. Melgaço Ladvocat and G. Pickavance for ForestPlots.net management. They thank Y. Wang and J. Baker, respectively, for their help with the map and with the climatic data. The authors acknowledge the invaluable help of M. Brum for kindly providing the comparison of vulnerability curves based on PAD and on PLC shown in this manuscript. They thank J. Martinez-Vilalta for his comments on an early version of this manuscript. The authors also thank V. Hilares and the Asociación para la Investigación y Desarrollo Integral (AIDER, Puerto Maldonado, Peru); V. Saldaña and Instituto de Investigaciones de la Amazonía Peruana (IIAP) for local field campaign support in Peru; E. Chavez and Noel Kempff Natural History Museum for local field campaign support in Bolivia; ICMBio, INPA/NAPPA/LBA COOMFLONA (Cooperativa mista da Flona Tapajós) and T. I. Bragança-Marituba for the research support.Tropical forests face increasing climate risk1,2, yet our ability to predict their response to climate change is limited by poor understanding of their resistance to water stress. Although xylem embolism resistance thresholds (for example, Ψ50) and hydraulic safety margins (for example, HSM50) are important predictors of drought-induced mortality risk3-5, little is known about how these vary across Earth's largest tropical forest. Here, we present a pan-Amazon, fully standardized hydraulic traits dataset and use it to assess regional variation in drought sensitivity and hydraulic trait ability to predict species distributions and long-term forest biomass accumulation. Parameters Ψ50 and HSM50 vary markedly across the Amazon and are related to average long-term rainfall characteristics. Both Ψ50 and HSM50 influence the biogeographical distribution of Amazon tree species. However, HSM50 was the only significant predictor of observed decadal-scale changes in forest biomass. Old-growth forests with wide HSM50 are gaining more biomass than are low HSM50 forests. We propose that this may be associated with a growth-mortality trade-off whereby trees in forests consisting of fast-growing species take greater hydraulic risks and face greater mortality risk. Moreover, in regions of more pronounced climatic change, we find evidence that forests are losing biomass, suggesting that species in these regions may be operating beyond their hydraulic limits. Continued climate change is likely to further reduce HSM50 in the Amazon6,7, with strong implications for the Amazon carbon sink.Publisher PDFPeer reviewe
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