999 resultados para Medida de exposição à radiação


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This paper consists in the evaluation of the exposure rate to ionizing radiation to which professionals working in surgical procedures which require radiological examinations are subjected. Were initially performed real-time readings of exposure rate within four distinct operating rooms during the execution of four surgical procedures that made use of fluoroscopy equipment (including three orthopedic surgeries, one in the shoulder, one in the arm, another for deployment of metal pin in the leg region, and a fourth for vascular procedure); in these surgeries were used ionization chamber detector and an electrometer. In order to check the values achieved, was made a re-evaluation of the distribution of the rate of exposure to radiation, from the surgical procedures, now with thermoluminescent dosimeters (TLDs). For this, thirty TLDs were distributed in the operating rooms, arranged in points of interest as occupation by professionals. The TLDs were prepared for thirty consecutive days, after which they were removed and replaced with new dosimeters not exposed yet. The dosimeters were subjected to reading of the rate of exposure; this procedure was repeated for four months without interruption. The quantification of the results sought primarily to convert the rate of exposure for equivalent dose rate, both in measurements with ionization chamber as in measurements with TLDs, in order to highlight the presence of the biological effect of ionizing radiation for comparisons within scientific context. Then, the results were plotted to establish the relationship between the values of equivalent dose and the distance to the central axis of the x -ray source, confirming the inverse square law for distance. Finally, the values were associated with the maximum limit recommended by the legislation for occupationally exposed individuals. The methodology for the analysis and quantification of the data in this work aims at implementing a work plan that meets ...

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The present study was aimed to evaluate different (semi-solid) media for the production of Metarhizium anisopliae and Beauveria bassiana propagules, and to evaluate the tolerance of these propagules to ultraviolet radiation and temperature. The experiments were performed at the Biological Control Laboratory of the Instituto Biológico at Campinas, São Paulo, Brazil. For both fungi, 6 repetitions were performed for each of the 17 treatments: corn starch, full rice, parboiled rice, type-1 rice, type-2 rice, oat flakes, canjiquinha [grits], wheat flour, raw cassava flour, yellow corn flour, special wheat flour, corn flour, corn in grains, cassava starch, soy in grains, crushed wheat, and turf. The viability analysis was done in plastic plates containing BDA. For the bioassays involving exposure to ultraviolet light and temperature, BDA was also used for viability analysis, and each treatment was exposed to the UV radiation for 0, 25 and 50 seconds, the temperature exposure being at 20, 25, 30 and 35º C. Using a Potter tower, 2 mL of fungus suspension from each treatment was inoculated to the Diatraea saccharalis caterpillars. Regarding the sporulation, the largest concentrations of M. anisopliae and B. bassiana were found for the treatments with parboiled rice, type-1 rice, type-2 rice, yellow corn flour, corn flour and crushed wheat. The viability of all treatments was superior to 94.00%. Also, the longer the duration of the exposition to the UV, the smaller the number of fertile conidia. At 35o C, a significant loss of conidia viability was observed, and all the treatments presented some level of virulence.

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Background: Few data on the definition of simple robust parameters to predict image noise in cardiac computed tomography (CT) exist. Objectives: To evaluate the value of a simple measure of subcutaneous tissue as a predictor of image noise in cardiac CT. Methods: 86 patients underwent prospective ECG-gated coronary computed tomographic angiography (CTA) and coronary calcium scoring (CAC) with 120 kV and 150 mA. The image quality was objectively measured by the image noise in the aorta in the cardiac CTA, and low noise was defined as noise < 30HU. The chest anteroposterior diameter and lateral width, the image noise in the aorta and the skin-sternum (SS) thickness were measured as predictors of cardiac CTA noise. The association of the predictors and image noise was performed by using Pearson correlation. Results: The mean radiation dose was 3.5 ± 1.5 mSv. The mean image noise in CT was 36.3 ± 8.5 HU, and the mean image noise in non-contrast scan was 17.7 ± 4.4 HU. All predictors were independently associated with cardiac CTA noise. The best predictors were SS thickness, with a correlation of 0.70 (p < 0.001), and noise in the non-contrast images, with a correlation of 0.73 (p < 0.001). When evaluating the ability to predict low image noise, the areas under the ROC curve for the non-contrast noise and for the SS thickness were 0.837 and 0.864, respectively. Conclusion: Both SS thickness and CAC noise are simple accurate predictors of cardiac CTA image noise. Those parameters can be incorporated in standard CT protocols to adequately adjust radiation exposure.

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A common side effect of radiotherapy used in the treatment of oral cancer is the occurrence of structural and physiological alterations of the salivary glands due to exposure to ionizing radiation, as demonstrated by conditions such as decreased salivary flow. The present study evaluated ultrastructural alterations in the parotid glands of rats receiving a fractionated dose (1,500-cGy) of radiation emitted by a Cesium-137 source and rats that were not subjected to ionizing radiation. After sacrifice, the parotid glands were removed and examined by transmission electron microscopy. Damage such as cytoplasmic vacuolization, dilatation of the endoplasmic reticulum and destruction of mitochondria, as well as damage to the cellular membrane of acinar cells, were observed. These findings lead to the conclusion that ionizing radiation promotes alterations in the glandular parenchyma, and that these alterations are directly related to the dose level of absorbed radiation. Certain phenomena that appear in the cytoplasm and nuclear material indicate that ionizing radiation causes acinar cell death (apoptosis).

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Mestrado em Radiações Aplicadas às Tecnologias da Saúde. Área de especialização: Protecção Contra Radiações

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Mestrado em Radiações Aplicadas às Tecnologias da Saúde. Área de especialização: Imagem Digital.

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Dissertação de Mestrado, Ambiente, Saúde e Segurança, 23 de Abril de 2013, Universidade dos Açores.

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Dissertação de Mestrado em Psicologia da Educação, especialidade em Contextos Educativos.

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A TC é um valioso método diagnóstico radiológico. O exame TC pode expor o paciente a uma dose elevada de exposição à radiação, causando risco acrescido. Uma das possíveis soluções para a redução da dose é o uso de técnicas de reconstrução iterativa (IR) em vez das reconstruções tradicionais (FBP). Com base nas suas capacidades de redução de ruído na imagem, a IR pode ter o potencial de reduzir significativamente a dose em pacientes submetidos a TC sem prejudicar a qualidade de imagem. Manter a qualidade de imagem clínica com um nível de qualidade aceitável e expondo o paciente à menor dose possível.

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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para obtenção do grau de Mestre em Engenharia Biomédica

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Dissertação para obtenção do Grau de Mestre em Tecnologia Alimentar

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Analisamos o produto dose-área ("dose area product" - DAP) de 12 pacientes submetidos a videofluoroscopia da deglutição. O objetivo foi estimar a exposição à radiação produzida neste tipo de estudo. Utilizamos medidor de DAP (PTW-Diamentor), que registra, de modo cumulativo, as doses de radiação que atingem o examinado durante todo o procedimento. Obtivemos nossos dados em duas salas dotadas com equipamentos da mesma marca e modelo. O protocolo, rigorosamente o mesmo, foi efetuado por um único e experiente profissional. Os valores do DAP para o estudo da deglutição em três fases (oral, faríngea e esofágica) foram: sala 1 (sete pacientes) - 4.101 cGy.cm² de DAP médio com 577 cGy.cm²/min.; sala 2 (cinco pacientes) - 804 cGy.cm² de DAP médio com 119 cGy.cm²/min. Estes resultados díspares foram obtidos de indivíduos com média de 1,57 m de altura e 56 kg de peso, em protocolo que se cumpriu em cerca de sete minutos. Concluímos que as doses, cinco vezes mais baixas, obtidas na sala 2, retratam mais adequadamente a exposição determinada pela videofluoroscopia da deglutição. Acreditamos que as doses mais altas, da sala 1, embora dentro dos padrões internacionais para exames do tubo digestivo, devam-se ao desconhecimento do desempenho, nem sempre perfeito, dos equipamentos radiológicos. Esta conclusão encontra apoio no fato de, em nosso meio, não ser usual que os serviços de radiodiagnóstico tenham implementado um rotineiro "programa de garantia de qualidade" e aponta para a importância do DAP na qualificação dos métodos e equipamentos radiológicos.

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OBJETIVO: Reduzir a dose de radiação e aumentar a vida útil do tubo de raios X em exames de tomografia computadorizada. MATERIAIS E MÉTODOS: Foram avaliados exames de crânio, abdome superior e tórax. Foi verificado se a técnica utilizada poderia ser alterada, foram sugeridos novos protocolos, e feitas comparações de qualidade da imagem, dose de radiação e aquecimento do tubo de raios X. RESULTADOS: Uma redução no mAs pôde ser feita sem comprometer a qualidade do diagnóstico, proporcionando redução de até 20% na dose média dos exames de crânio em adultos e de até 45% em crianças com idade de 0 a 6 meses; pacientes com menos de 50 kg tiveram redução de aproximadamente 37% na dose média de radiação para os exames de abdome superior; para o exame de tórax de rotina a redução chegou a 54%. O aquecimento do tubo de raios X para os exames de crânio, abdome superior e tórax teve redução estimada em aproximadamente 13%, 23% e 41%, respectivamente. CONCLUSÃO: Uma alteração nos protocolos dos exames descritos acarretará diminuição significativa na dose de radiação e aumento na vida útil do tubo de raios X, sem comprometer o diagnóstico.