3 resultados para 160102 Biological (Physical) Anthropology

em Repositório Científico da Universidade de Évora - Portugal


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Este estudo foi desenvolvido com a finalidade de conhecer as representações sociais de enfarte agudo do miocárdio, junto de três grupos sociais: doentes com enfarte agudo do miocárdio; respectivas famílias; e profissionais de saúde que cuidam desses doentes. A base conceptual do estudo foi a teoria das representações sociais. Como metodologia optámos por uma abordagem multi-método, com etapas complementares de recolha de dados: questionário e entrevista. Obtivemos uma amostra de 210 participantes, aplicá-mos o questionário a todos e realizámos 120 entrevistas. Analisámos os dados com re-curso à análise de conteúdo auxiliada por quatro softwares: Evoc, Simi, Trideux Alces-te. Encontrámos na interpretação das ancoragens e objectivação uma teia de sentidos compartilhados nas práticas sociais, nos diferentes grupos. Emergiram sentidos maiori-tariamente ancorados no biológico/físico e psicológico, com especial relevância na di-mensão emocional. O grupo dos profissionais de saúde fica detentor de um conjunto de representações que constituem um importante instrumento de trabalho; ### SUMMARY: Social representations of Myocardial Infarction, built by patient, family and health professionals This study was developed with the purpose of knowing the social representations of acute myocardial infarction considering three social groups: patients with acute myo-cardial infarction, respective families and health professionals who care for these pa-tients. The conceptual basis of this study was the theory of social representations. We have chosen a multi faceted method as methodology with additional gather of data col-lection through questionnaire and interviews. We obtained a sample of 210 participants applying the questionnaire to all and executing 120 interviews. The data was analyzed using content analysis supported by four software: Evoc, Simi, Trideux and Alceste. The interpretation of anchoring and objectification showed a set of shared meanings in social practices in the different groups. The biological / physical and psychological meanings emerged largely anchored with particular emphasis on the emotional dimen-sion. The group of health professionals held a set of representations that were an im-portant instrument of work.

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Vegetative propagation of superior conifer trees can be achieved e.g. through rooted cuttings or rooted microshoots, the latter predominantly through in vitro tissue culture. Both techniques are used to achieve rapid multiplication of trees with favorable genetic combinations and to capture a large proportion of the genetic diversity in a single generation cycle. However, adventitious rooting of shoots (cuttings) is often not efficient due to various problems such as scarcity of roots and cessation of their growth, both of which limit the application of vegetative propagation in some conifer species. Many factors are involved in the adventitious rooting of shoots including physical and chemical ones such as plant growth regulators, carbohydrates, light quality, temperature and rooting substrates or media (reviewed by Ragonezi et al. 2010). The focus of this review is on biological factors, such as inoculations with Agrobacterium rhizogenes, plant- growth-promoting rhizobacteria and other endophytes, and mycorrhizal fungi, which were found to stimulate adventitious rooting. These microorganisms could contribute not only to adventitious root development but also help in protecting conifer plants against pathogenic microorganisms, facilitate acclimation and transplanting, and contribute to more sustainable, chemical-free forests.

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Environmental pollution by several heavy metals and metalloids is a severe problem worldwide, as soils became increasingly contaminated, posing a threat to ecosystems and ultimately to human health. Contamination derives from large scale urbanization and industrialization, threatening land ecosystems, surface and groundwater, as well as food safety and human health. Remediation strategies for heavy metal-contaminated sites are necessary to protect from their toxic effects and conserve the environment for future generations. Numerous physicochemical techniques have been adopted including excavation and deposition in landfills, thermal treatment, leaching and electro-reclamation. These techniques are fast but inadequate, costly, cause adverse effects on soil physical, chemical and biological properties, and may lead to secondary pollution. In fact, many of these approaches only change the problem from one form or place to another, and do not completely destroy the pollutants. There was an urgent need to develop new technologies which are cost-effective and eco-friendly. In this context, biological remediation has tremendous potential. It uses plants and microorganisms to remove or contain toxic contaminants and is considered as the most effective method because it is a natural process, environmentally-friendly, has a low cost, and wide public acceptance. The present chapter aims to provide a comprehensive review of some of the promising processes mediated by plant and microbes to remediate metal-contaminated environments. Some biological processes used for the decontamination of organic compounds will also be included because of their relevance and potential common use for both purposes.