17 research outputs found

    Cercas-vivas para dissuasão de onças, o resgate de uma tecnologia esquecida : Living fences to discourage jaguars, the retrieval of a forgotten technology

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    Os grandes carnívoros são forçados a viver em proximidade aos humanos competindo por espaço e presas o que leva a conflitos, sendo esta, a principal causa da mortalidade de carnívoros adultos perto de áreas protegidas. O controle letal para reduzir a depredação de gado é a principal causa da diminuição e extinção de muitas populações de carnívoros. A utilização de cercas para impedir que o gado entre em matas e se exponha a ataques são medidas recomendadas para a prevenção desses problemas. No Brasil, poucos estudos têm sido realizados para testar a possibilidade da utilização de cercas-vivas na proteção de animais de criação contra felinos. Dessa forma, o objetivo desse trabalho foi identificar espécies botânicas com potencial para cercas-vivas e propor modelos teóricos, visando à mitigação dos conflitos entre predador-pecuária e que atuem na conservação da onça-pintada Panthera onca (Linnaeus, 1758) e da onça-parda Puma concolor (Linnaeus, 1758). Foram identificadas 65 espécies com potencial para cercas-vivas, as famílias mais representativas são Arecaceae (n=24), Leguminosae (n=12), Cactaceae (n=5) e Rutaceae (n=5) onde foram montados modelos teóricos divididas em três estratos, a fim de inibir os felinos, diminuindo os ataques a criação de animais e mitigando os conflitos. Testes são necessários para validação da eficiência das cercas-vivas com as espécies levantadas

    Pervasive gaps in Amazonian ecological research

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    Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear un derstanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5–7 vast areas of the tropics remain understudied.8–11 In the American tropics, Amazonia stands out as the world’s most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepre sented in biodiversity databases.13–15 To worsen this situation, human-induced modifications16,17 may elim inate pieces of the Amazon’s biodiversity puzzle before we can use them to understand how ecological com munities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple or ganism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region’s vulnerability to environmental change. 15%–18% of the most ne glected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lostinfo:eu-repo/semantics/publishedVersio

    Pervasive gaps in Amazonian ecological research

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    Pervasive gaps in Amazonian ecological research

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    Biodiversity loss is one of the main challenges of our time,1,2 and attempts to address it require a clear understanding of how ecological communities respond to environmental change across time and space.3,4 While the increasing availability of global databases on ecological communities has advanced our knowledge of biodiversity sensitivity to environmental changes,5,6,7 vast areas of the tropics remain understudied.8,9,10,11 In the American tropics, Amazonia stands out as the world's most diverse rainforest and the primary source of Neotropical biodiversity,12 but it remains among the least known forests in America and is often underrepresented in biodiversity databases.13,14,15 To worsen this situation, human-induced modifications16,17 may eliminate pieces of the Amazon's biodiversity puzzle before we can use them to understand how ecological communities are responding. To increase generalization and applicability of biodiversity knowledge,18,19 it is thus crucial to reduce biases in ecological research, particularly in regions projected to face the most pronounced environmental changes. We integrate ecological community metadata of 7,694 sampling sites for multiple organism groups in a machine learning model framework to map the research probability across the Brazilian Amazonia, while identifying the region's vulnerability to environmental change. 15%–18% of the most neglected areas in ecological research are expected to experience severe climate or land use changes by 2050. This means that unless we take immediate action, we will not be able to establish their current status, much less monitor how it is changing and what is being lost

    Em busca de um horizonte : narrativas sobre educação, artes e resistência

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    "APRESENTAÇÃO - Os textos reunidos no livro Em busca de um Horizonte: narrativas sobre educação, arte e resistência foram inspirados nos debates realizados durante o evento VI Simpósio Internacional Horizontes Humanos, que aconteceu na Faculdade de Educação da Universidade de Brasília, em 2018. O livro está dividido em quatro partes: Resistências cotidianas para além da utopia, Demasiado humano: as diferentes linguagens artísticas e culturais, A educação como um horizonte, Educação ambiental e ancestralidade: para continuar caminhando. Apesar da divisão em seções (sempre arbitrária), as produções - bastante diversas nas temáticas, metodologias e referenciais teóricos adotados – compartilham um alinhamento ao adotar um posicionamento político em defesa da diversidade, dos direitos humanos, da ancestralidade, do meio ambiente, da educação com valores democráticos, dos saberes populares e das diferentes linguagens artísticas. Assim, o livro se apresenta como um convite à resistência em tempos atrozes. Os organizadores

    Entre escravos e taipas: o modo de fazer africano na arquitetura paulista

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    Núcleos de Ensino da Unesp: artigos 2008

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    Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq

    Growing knowledge: an overview of Seed Plant diversity in Brazil

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    A liturgia da escola moderna: saberes, valores, atitudes e exemplos

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    Growing knowledge: an overview of Seed Plant diversity in Brazil

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    Abstract An updated inventory of Brazilian seed plants is presented and offers important insights into the country's biodiversity. This work started in 2010, with the publication of the Plants and Fungi Catalogue, and has been updated since by more than 430 specialists working online. Brazil is home to 32,086 native Angiosperms and 23 native Gymnosperms, showing an increase of 3% in its species richness in relation to 2010. The Amazon Rainforest is the richest Brazilian biome for Gymnosperms, while the Atlantic Rainforest is the richest one for Angiosperms. There was a considerable increment in the number of species and endemism rates for biomes, except for the Amazon that showed a decrease of 2.5% of recorded endemics. However, well over half of Brazillian seed plant species (57.4%) is endemic to this territory. The proportion of life-forms varies among different biomes: trees are more expressive in the Amazon and Atlantic Rainforest biomes while herbs predominate in the Pampa, and lianas are more expressive in the Amazon, Atlantic Rainforest, and Pantanal. This compilation serves not only to quantify Brazilian biodiversity, but also to highlight areas where there information is lacking and to provide a framework for the challenge faced in conserving Brazil's unique and diverse flora
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