107 resultados para Potencialidades
em Scielo Saúde Pública - SP
Resumo:
Nos últimos anos, tem sido aguda a necessidade de se constituir pesquisa organizacional voltada para as especificidades locais. Isso também ocorre no caso brasileiro, onde se observa a distância entre o contexto nacional e o dos países de onde se importam as tecnologias gerenciais aqui aplicadas. Uma das formas de se verificarem as peculiaridades da gestão e organização brasileiras é por meio da análise histórica desses modelos. Assim, este texto trata de aspectos epistemológicos e metodológicos que permitem visualizar os limites e possibilidades da pesquisa histórica no campo de Estudos Organizacionais, dando certa ênfase àqueles empreendidos no Brasil. Construímos nossa análise em três seções: a primeira trata dos pressupostos que circundam a aproximação entre a perspectiva histórica e as ciências sociais; a segunda aborda questões historiográficas diretamente relacionadas ao campo de Estudos Organizacionais; e a terceira trata de algumas contribuições da historiografia brasileira aos Estudos Organizacionais. Por fim, apresentamos alguns temas para uma agenda de pesquisa.
Resumo:
Descreve-se e discute-se o grupo focal, método qualitativo de coleta de dados de ampla aplicação na Saúde Pública. Especial ênfase é conferida às potencialidades do uso do grupo focal em investigações, na área de abuso de drogas.
Resumo:
OBJETIVO: Discutir as potencialidades do sistema de informação geográfico na análise do perfil epidemiológico, sociodemográfico e da organização dos serviços de saúde dirigidos aos povos indígenas. MÉTODOS: Foi efetuada a análise georreferenciada das notificações de tuberculose, malária e da mortalidade de 374.123 indígenas distribuídos em 36 Distritos Sanitários Especiais Indígenas em todo o Brasil. Definiu-se um gradiente da intensidade do risco de adoecimento indígena por tuberculose, malária e mortalidade infantil nos anos de 2000 a 2002, comparando-os com os coeficientes encontrados na população não indígena no mesmo período. RESULTADOS: O estudo mostrou que os dados previamente disponíveis são fragmentários, não possibilitando uma visão de conjunto das condições de vida e da situação de saúde dos grupos étnicos. A construção de gradientes de risco evidenciou coeficientes de incidência de tuberculose superiores em mais de 1.000 vezes àqueles encontrados para a população geral brasileira. O Índice Parasitário Anual médio de malária na população indígena superou em até 10 vezes os valores médios encontrados para a população não-indígena e o Coeficiente de Mortalidade Infantil variou entre 74,7/1.000 nascidos vivos em 2000 e 56,5/1.000 em 2001, superando em mais de 100% a média nacional para o período. CONCLUSÕES: O Sistema de Informação Geográfica se revela uma ferramenta útil para a gestão, possibilitando análises de situações sanitárias, avaliação de risco populacional, construção de cenários que viabilizem o planejamento de estratégias de intervenção nos diversos níveis, transitando com rapidez e eficiência entre macro e micro realidades.
Resumo:
This paper proposes an experiment to be performed in both instrumental analysis and experimental physical-chemistry curricular disciplines in order to open options to develop challenging basic research activities. Thus the experimental procedures and the results obtained in the preparation of electrodeposited lead dioxide onto graphite and its evaluation as potentiometric sensor for H3O+ and Pb2+ ions, are presented. The data obtained in acid-base titrations were compared with those of the traditional combination glass electrode at the same conditions. Although a linear sub-Nernstian response to free hydrogen ions was observed for the electrodeposited PbO2 electrode, a good agreement was obtained between them. Working as lead(II) sensing electrode, the PbO2 showed a linear sub-Nernstian behavior at total Pb2+ concentrations ranging from 3,5 x 10-4 to 3,0 x 10-2 mol/L in nitrate media. For the redox couple PbO2/Pb(II) the operational slope converges to the theoretical one, as the acidity of the working solution increases.
Resumo:
The electrochemistry field has increased in recent years, specially in the search for new sensors to monitor specific analyte in complex samples. In order to improve electrodes, many rhodium compounds have been used as electron mediators for novel sensors development. The most used compounds for this purpose are metal, metal complexes and some organic dyes. Rhodium complexes are known by their good catalytic properties and it could be useful in the sensor field. However, there are only a few reports, on the use of rhodium complexes in sensors and biosensors. A brief review of the electrochemistry of rhodium complexes and some discription of their properties which make those compounds suitable for development of sensor and biosensor.
Resumo:
The interest on the use of sucrose as raw material increased in the last years. In this work, the synthesis and applications of sucrose derivatives as esters, ethers, and other products are discussed in a concise manner aiming to presenting the sucrochemistry as a promising field in organic chemistry from a rather accessible, low-priced, ecological, and renewable source.
Resumo:
The sensitivity and accuracy of sequential injection methods are dependent on efficient overlapping of reagent and sample zones as they are propelled toward the detector cell. The formation of the reduced phosphomolybdic acid is used to demonstrate that the overlapping efficiency in a fixed reaction coil relies on a suitable choice of reagent to sample volume ratio. Additionally, under poor mixing conditions or highly concentrated samples, the reaction extension is strongly dependent on the reagent concentration. The zone-sampling concept is exploited to determine phosphate in cola-based soft drinks after in-line dilution in an auxiliary coil.
Resumo:
Non-renewable biomass, such as coal, oil and natural gas are not only energy sources but also important starting materials for the production of a variety of chemicals ranging from gasoline, diesel oil and fine chemicals. In this regard, carbohydrates, the most abundant class of enantiopure organic compounds, are very suitable for generation of chemicals of great practical value. Their bulk-scale availability associated with low cost make them unique starting materials for organic preparative purpose. They are a most attractive alternative for construction of enantiopure target molecules by asymmetric synthesis. This review addresses, in addition to the use of low molecular weight carbohydrates, issues related to renewable biomass from photosynthesis and alternatives for the production of bulk and fine chemicals.
Resumo:
The potentiality of the use of ultrasound radiation in association with a boron-doped diamond electrode was evaluated on the voltammetric determination of the pesticide carbaryl. Improvements in the sensitivity, limit of detection and reproducibility of the measurements were observed due to both, the enhancement of mass transport and the cleaning of the electrode surface provided by ultrasound. Satisfactory recovery levels for carbaryl in pure water (96-98%) and pineapple juice (89-92%) for quiescent and sonovoltammetric methodologies were obtained. These methodologies can be alternative tools for the analyses of pesticides in fruit samples, mainly the insonated condition that improve the analytical performance and dispense intermediary cleanings of the electrode surface.
Resumo:
The synthesis of magnetic materials such as nanostructured iron oxide has been intensively researched due to their broad applications in biomedicine. As these nanoparticles have high specific surface area, they are very reactive and can aggregate easily, and biodegrade when exposed to biological systems. Mesoporous silica is often employed as support matrix to protect the magnetic functional component, avoiding undesirable effects. In this context, this review describes various syntheses of silica-coated iron oxide nanoparticles, and their use in applications such as bioseparation, magnetic resonance imaging, hyperthermia and drug delivery systems showing the growing interest of these materials in biological area.
Resumo:
The potentialities and applications of the Multiple Pulse Amperometric detection (MPA) coupled with Flow Injection Analysis (FIA) are evaluated. Important aspects as cleaning and activation of electrode surface, indirect and simultaneous analysis of electroactive compounds and the use of the internal standard method for quantifications utilizing FIA-MPA are presented. The main parameters concerning the detection of electroactive analytes by multiple pulse amperometric detection in flowing solutions were also discussed. In addition, aspects such as flow rate, sample volume, application time of the potential pulses and instrumentation necessary for implementing of the method were also addressed.
Resumo:
Nanotechnology developments continue to be produced at exponential rates for a wide and diverse range of applications. In this paper was done a study of technological forecasting in nanotechnology applied to health, based on information drawn in Brazil from 1991 to 2010. The longitudinal evolutions of the number of patent applications, their topics, and their respective patent families have been evaluated for the total global activity. There were obtained 1352 patent applications in this period. It were analyzed the legal nature of the depositors, the year of deposit, depositors' home countries and processes. It has been a goal subsidizes the policy-makers to adapt and modernize the regulatory framework on nanotechnology and risks involving health as a strategic area in the politics of Science.
Resumo:
The preparation of enantiomerically pure or enriched substances is of fundamental importance to pharmaceutical, food, agrochemical, and cosmetics industries and involves a growing market of hundreds of billions of dollars. However, most chemical processes used for their production are not environmentally friendly because in most cases, stoichiometric amounts of chiral inductors are used and substantial waste is produced. In this context, asymmetric catalysis has emerged as an efficient tool for the synthesis of enantiomerically enriched compounds using chiral catalysts. More specifically, considering the current scenario in the Brazilian chemical industry, especially that of pharmaceuticals, the immediate prospect for the use of synthetic routes developed in Brazil in an enantioselective fashion or even the discovery of new drugs is practically null. Currently, the industrial production of drugs in Brazil is primarily focused on the production of generic drugs and is basically supported by imports of intermediates from China and India. In order to change this panorama and move forward toward the gradual incorporation of genuinely Brazilian synthetic routes, strong incentive policies, especially those related to continuous funding, will be needed. These incentives could be a breakthrough once we establish several research groups working in the area of organic synthesis and on the development and application of chiral organocatalysts and ligands in asymmetric catalysis, thus contributing to boost the development of the Brazilian chemical industry. Considering these circumstances, Brazil can benefit from this opportunity because we have a wide biodiversity and a large pool of natural resources that can be used as starting materials for the production of new chiral catalysts and are creating competence in asymmetric catalysis and related areas. This may decisively contribute to the growth of chemistry in our country.