158 resultados para Processamento de imagens médica
Resumo:
Computed Radiography (CR) is a term used to describe the system that electronically records a radiographic image. CR systems use receivers or IP (imaging plate) to capture the analog signals and then allow the readers to do the image processing and converted into digital information. With the increasing expansion of the CR for medical diagnostics it is necessary that these systems receive the same type of monitoring related to Quality Control and Acceptance to the conventional processing systems. The current legislation fails to specify the parameters and procedures to be tested, allowing that somehow, some equipment is not fully able to use in clinical routine. In this project we used the standard AAPM Report Number 93, which is already fully established outside the country and displays all test parameters in CR. From there were chosen three types of tests that were performed in a satisfactory sampling of IP´s. With this procedure it was possible to establish which of those IP's should be out of use, which reveals the important purpose of the study, demonstrating the need for Quality Control Testing and Acceptance in Computerized Radiography as soon as possible are included in the legislation regulator in the country
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In recent years a great worldwide interest has arisen for the development of new technologies that enable the use of products with less environmental impact. The replacement of synthetic fiber plants is a possibility very important because this fiber is renewable, biodegradable and few cost and cause less environmental impact. Given the above, this work proposes to develop polymeric composites of epoxy resin and study the behavior of these materials. Both, the epoxy resin used as matrix in the manufacture of sapegrass fiber composite, as tree composites formed by: epoxy/unidirectional sapegrass long fiber, 75% epoxy/25% short fiber, by volume, and 80% epoxy/20% short fiber, by volume, were characterized by bending, and the composites produced with short fibers random were inspected by Optical Microscopy and Acoustics Inspection (C-Scan). For the analysis of the sapegrass fiber morphology, composites 75% epoxy/25% short fiber (sheet chopped) and 80% epoxy/20% short fiber images were obtained by optical microscope and the adhesion between polymer/fiber was visualized. As results, the flexural strength of composites epoxy/unidirectional long fibers, 75% epoxy/25% short fiber and 80% epoxy/20% short fiber were 70.36 MPa, 21.26 MPa, 25.07 MPa, respectively. Being that composite showed that the best results was made up of long fibers, because it had a value of higher flexural strength than other composites analyzed
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The aim of this work is to study some of the density estimation tec- niques and to apply to the segmentation of medical images. Medical images are used to help the diagnostic of tumor diseases as well as to plan and deliver treatment. A computer image is an array of values representing colors in some scale. The smallest element of the image to which it is possible to assign a value is called pixel. Segmen- tation is the process of dividing the image in portions through the classi¯cation of each pixel. The simplest way of classi¯cation is by thresholding, given the number of portions and the threshold values. Another method is constructing a histogram of the pixel values and assign a portion to each pike. The threshold is the mean between two pikes. As the histogram does not form a smooth curve it is di±cult to discern between true pikes and random variation. Density estimation methods allow the estimation of a smooth curve. Image data can be considered as mixture of different densities. In this project parametric and nonparametric methods for density estimation will be addressed and some of them are applied to CT image data
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Nuclear medicine is a medical specialty related to imagery that deals with imaging techniques, diagnosis and therapy, allowing observing the physiological state of tissues noninvasively by marking the molecules participating of these physiological processes with radioactive isotopes, thus creating the called radionuclides. The image of a radionuclide is one of the most important applications of radioactivity in nuclear medicine. The equipment’s of nuclear medicine imaging use the principle of radiation detection, turning it into an electrical signal which, through specific algorithms, allows forming tomographic images that provide information about the functional status of organs. New detection systems have been developed for tomographic acquisitions using solid state detectors. These devices use crystals of cadmium zinc telluride (CdZnTe). Some of the advantages of this detector are a significant improvement of signal to noise ratio, the increased spectral and spatial resolution, which in sum, result in greater clarity of the images obtained, opening new perspectives for imaging protocols previously unattainable. In contrast, all other gamma-cameras equipped with vacuum tubes have remained relatively unchanged for nearly fifty years. In these gamma-cameras, the images are obtained using two steps significantly less efficient: the gamma rays are converted to light through a first device, and then the light is converted into an electrical signal through a second device. One of functions the Medical Physicist is related to the quality control of equipment. This control ensures that the information and images provided are true and thus credible to be used in medical reports. To perform this type of analysis the physicist must understand the performance characteristics and operation of all equipment of the department concerned; besides, in the absence of specific legislation, proposing...(Complete abstract click electronic access below)
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Introdução: Os processos industriais geram grandes quantidades de resíduos, representando um grande desperdício de matéria prima e causando impactos negativos ao meio ambiente. No caso dos resíduos gerados pelas fábricas de pás eólicas para aerogeradores de Sorocaba-S.P., eles podem ser reaproveitados na incorporação em cimento Portland. O interesse é utilizá-los na construção civil como blocos sem fins estruturais para construção de muros, guias, calçadas, pisos, etc. Os corpos confeccionados devem obedecer às normas técnicas brasileiras e as suas propriedades relativas à resistência, compressão, absorção de água e distribuição espacial dos resíduos nestes corpos devem ser avaliadas. Objetivos: Devido à importância de se conhecer as propriedades dos corpos produzidos com a incorporação de resíduos de pás eólicas, este trabalho faz uma avaliação através de imagens de raios X de sua distribuição espacial para verificar a viabilidade do emprego desta técnica no estudo da incorporação de resíduos para, futuramente, em conjunto com outras pesquisas que estão sendo realizadas, verificar a relação desta distribuição com as propriedades mecânicas dos corpos produzidos. Métodos: Objetivando a incorporação desse resíduo como substituto parcial dos agregados miúdos em argamassa, foram fabricados corpos de prova (CPs) seguindo as normas da ABNT-NBR 5738. Todos os corpos foram desmoldados após 24 horas de sua confecção e imersos em água por 28 dias para a cura. Utilizou-se o traço 3:1, areia e cimento, em relação a massa dos componentes, ou seja, para cada 300 g de areia adicionou-se 100 g de cimento. Na confecção de argamassa com resíduo utilizou-se o mesmo traço, porém com a substituição de parte da areia pelo resíduo. Foram fabricados CPs com 5%, 15%, 50% e 0% de resíduo para que este sirva de referência. Como os corpos possuem um formato cilíndrico, foram obtidas imagens em duas projeções: frontal e superior utilizando um equipamento digital com os seguintes parâmetros: 83 kVp e 16 mAs e, 85 kVp e 30 mAs, respectivamente. Resultados: As imagens mostram que na projeção frontal é possível verificar que a distribuição do resíduo nos corpos é homogênea, o que pode proporcionar uniformidade nos resultados de testes de resistência à compressão que serão realizados futuramente. Porém, na projeção superior ainda será necessário um estudo dos parâmetros que deverão ser utilizados no equipamento de raios X para melhorar a sua qualidade. Além disso, métodos de processamento digital de imagens poderão ser aplicados nas imagens para auxiliar na visualização dos resíduos incorporados. Também pode ser visto nas imagens que a forma utilizada para a incorporação do resíduo resulta na sua distribuição uniforme, compatível com o que se deseja neste tipo de incorporação.
Processamento e restituição digital de fotografias aéreas coloridas para estudo da cobertura vegetal
Resumo:
This work aimed to apply geoprocessing techniques to identify and to quantify the types of vegetal coverings in part of the county Botucatu – SP, having been divided into three phases: acquisition of data; georeferencing based on the digital topographic maps in 1:50000 scale and finally the thematic maps were generated. The methodology used to the analogical aerial photographics georeferencing showed efficient, considering that it was based on scientific procedures of residues
Processamento e restituição digital de fotografias aéreas coloridas para estudo da cobertura vegetal
Resumo:
This work aimed to apply geoprocessing techniques to identify and to quantify the types of vegetal coverings in part of the county Botucatu – SP, having been divided into three phases: acquisition of data; georeferencing based on the digital topographic maps in 1:50000 scale and finally the thematic maps were generated. The methodology used to the analogical aerial photographics georeferencing showed efficient, considering that it was based on scientific procedures of residues analysis and the positioning central was classified as A, according to the Cartographic Precision Pattern.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)