4 resultados para erythrocyte aggregation

em CiencIPCA - Instituto Politécnico do Cávado e do Ave, Portugal


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This work reports on the effect of carbon nanotube aggregation on the electrical conductivity and other network properties of polymer/carbon nanotube composites by modeling the carbon nanotubes as hard-core cylinders. It is shown that the conductivity decreases for increasing filler aggregation, and that this effect is more significant for higher cylinder volume fractions. It is also demonstrated, for volume fractions at which the giant component is present, that increasing the fraction of cylinders within clusters leads to a break of the giant component and the formation of a set of finite clusters. The decrease of the giant component with the increase of the fraction of cylinders within the cluster can be related to a decrease of the spanning probability due to a decrease of the number of cylinders between the clusters. Finally, it is demonstrated that the effect of aggregation can be understood by employing the network theory.

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Protein aggregation became a widely accepted marker of many polyQ disorders, including Machado-Joseph disease (MJD), and is often used as readout for disease progression and development of therapeutic strategies. The lack of good platforms to rapidly quantify protein aggregates in a wide range of disease animal models prompted us to generate a novel image processing application that automatically identifies and quantifies the aggregates in a standardized and operator-independent manner. We propose here a novel image processing tool to quantify the protein aggregates in a Caenorhabditis elegans (C. elegans) model of MJD. Confocal mi-croscopy images were obtained from animals of different genetic conditions. The image processing application was developed using MeVisLab as a platform to pro-cess, analyse and visualize the images obtained from those animals. All segmenta-tion algorithms were based on intensity pixel levels.The quantification of area or numbers of aggregates per total body area, as well as the number of aggregates per animal were shown to be reliable and reproducible measures of protein aggrega-tion in C. elegans. The results obtained were consistent with the levels of aggrega-tion observed in the images. In conclusion, this novel imaging processing applica-tion allows the non-biased, reliable and high throughput quantification of protein aggregates in a C. elegans model of MJD, which may contribute to a significant improvement on the prognosis of treatment effectiveness for this group of disor-ders

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In the last years, it has become increasingly clear that neurodegenerative diseases involve protein aggregation, a process often used as disease progression readout and to develop therapeutic strategies. This work presents an image processing tool to automatic segment, classify and quantify these aggregates and the whole 3D body of the nematode Caenorhabditis Elegans. A total of 150 data set images, containing different slices, were captured with a confocal microscope from animals of distinct genetic conditions. Because of the animals’ transparency, most of the slices pixels appeared dark, hampering their body volume direct reconstruction. Therefore, for each data set, all slices were stacked in one single 2D image in order to determine a volume approximation. The gradient of this image was input to an anisotropic diffusion algorithm that uses the Tukey’s biweight as edge-stopping function. The image histogram median of this outcome was used to dynamically determine a thresholding level, which allows the determination of a smoothed exterior contour of the worm and the medial axis of the worm body from thinning its skeleton. Based on this exterior contour diameter and the medial animal axis, random 3D points were then calculated to produce a volume mesh approximation. The protein aggregations were subsequently segmented based on an iso-value and blended with the resulting volume mesh. The results obtained were consistent with qualitative observations in literature, allowing non-biased, reliable and high throughput protein aggregates quantification. This may lead to a significant improvement on neurodegenerative diseases treatment planning and interventions prevention

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“Responsabilidade Financeira e Criminal § Direitos Constitucionais Sociais, Dinheiros Públicos e Recuperação de Activos”, com Prefácio do Sr. Prof. Associado com Agregação, da Faculdade de Direito da Universidade de Coimbra, Doutor Jónatas E.M. Machado, é o título e tema do nosso último livro jurídico dado à estampa pela chancela da Editora Juruá, Curitiba e Lisboa, 2015. Livro o qual está disponível em Portugal nas livrarias Almedina ou em inúmeras livrarias do Brasil. Ou ainda através da loja virtual daquela que é uma das maiores editoras do mundo em língua portuguesa, a Editora Juruá que tem mais de 46 anos de vida: www.jurua.com.br § "Financial Responsibility and Criminal § Constitutional Social Rights, Public Moneys and Assets Recovery" with Prof. Mr. Preface Associated with aggregation, the Law Faculty of the University of Coimbra, Doctor Jónatas E.M. Machado is the title and theme of our last legal book given to the press by the seal of Editora Jurua, Curitiba and Lisbon, 2015. Book which is available in Portugal Almedina in bookstores or in several bookstores in Brazil. Or through the online store of what is one of the largest publishers in the world in English, Editora Jurua which has more than 46 years: www.jurua.com.br