86 resultados para Investigar para o design
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Dissertação apresentada para obtenção do Grau de Mestre em Engenharia Electrotécnica e de Computadores, pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia
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Dissertação para obtenção do Grau de Mestre em Engenharia Electrotécnica
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We characterize the optimal job design in a multitasking environment when the firms rely on implicit incentive contracts (i.e., bonus payments). Two natural forms of job design are compared: (i) individual accountability, where each agent is assigned to a particular job and assumes full responsibility for its outcome; and (ii) team accountability, where a group of agents share responsibility for a job and are jointly accountable for its outcome. The key trade-off is that team accountability mitigates the multitasking problem but may weaken the implicit contracts. The optimal job design follows a cut-off rule: firms with high reputation concerns opt for team accountability, whereas firms with low reputation concerns opt for individual accountability. Team accountability is more likely the more acute the multitasking problem is. However, the cut-off rule need not hold if the firm combines implicit incentives with explicit pay-per-performance contracts.
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Dissertação para obtenção do Grau de Doutor em Engenharia Electrotécnica e de Computadores
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A Work Project, presented as part of the requirements for the Award of a Masters Degree in Finance from the NOVA – School of Business and Economics
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Dissertação de mestrado em Audiovisuais e Media Interactivos (Ciências da Comunicação)
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Relatório de Actividade Profissional apresentado para cumprimento dos requisitos necessários à obtenção do grau de Mestre em Ciências da Comunicação – vertente de Novos Média e Práticas Web
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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 Electrotécnica e de Computadores
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Chlamydia trachomatis has a unique obligate intracellular developmental cycle that ends by the lysis of the cell and/or the extrusion of the bacteria in order to allow for re-infections. While Chlamydia trachomatis infections are often asymptomatic the diagnosis of Chlamydia trachomatis is usually late, occurring after manifestation of persistency. Investigations on the consequences of long-term infections and the molecular mechanisms behind it will reveal light to what extent bacteria can modulate host cell function and what the ultimate fate of host cells after clearance of an infection is. Such studies on the host cell fate could be greatly facilitated if the infected cells become permanently marked during and after the infection. Therefore, this project intends to develop a new genetic tool that would allow permanently labeling of Chlamydia trachomatis host cells. The plan was to generate a Chlamydia trachomatis strain that encodes a recombinant CRE recombinase, fused to a secretory effector function of the Chlamydia type 3 secretion system (T3SS). Upon translocation into the host cell, this recombinant CRE enzyme could then, owing to its site-specific recombination function, switch a reporter gene contained in the host cell genome. To this end, the reporter line carried a membrane-tagged tdTomato (mT) gene flanked by two LoxP sequences followed by a GFP gene. The translocation of the recombinant CRE recombinase into this cell line was designed to trigger the recombination of the LoxP sites whereby the cells would turn from red fluorescence to green as an irreversible label of the infected cells. Successful execution of this mechanism would allow to draw a direct link between Chlamydia trachomatis infection and the subsequent fate of the infected cell.
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The main objective of this work was the development of polymeric structures, gel and films, generated from the dissolution of the Chitin-Glucan Complex (CGC) in biocompatible ionic liquids for biomedical applications. Similar as chitin, CGC is only soluble in some special solvents which are toxic and corrosive. Due to this fact and the urgent development of biomedical applications, the need to use biocompatible ionic liquids to dissolve the CGC is indispensable. For the dissolution of CGC, the biocompatible ionic liquid used was Choline acetate. Two different CGC’s, KiOnutrime from KitoZyme and biologically produced CGC from Faculdade de Ciencias e Tecnologia (FCT) - Universidade Nova de Lisboa, were characterized in order to develop biocompatible wound dressing materials. The similar result is shown in term of the ratio of chitin:glucan, which is 1:1.72 for CGC-FCT and 1:1.69 for CGC-Commercial. For the analysis of metal element content, water and inorganic salts content and protein content, both polymers showed some discrepancies, where the content in CGC-FCT is always higher compared to the commercial one. The different characterization results between CGC-FCT and CGC-Commercial could be addressed to differences in the purification method, and the difference of its original strain yeast, whereas CGC-FCT is derived from P.pastoris and the commercial CGC is from A.niger. This work also investigated the effect of biopolymers, temperature dissolution, non-solvent composition on the characteristics of generated polymeric structure with biocompatible ionic liquid. The films were prepared by casting a polymer mixture, immersion in a non-solvent, followed by drying at ambient temperature. Three different non-solvents were tested in phase inversion method, i.e. water, methanol, and glycerol. The results indicate that the composition of non-solvent in the coagulation bath has great influence in generated polymeric structure. Water was found to be the best coagulant for producing a CGC polymeric film structure. The characterizations that have been done include the analysis of viscosity and viscoelasticity measurement, as well as sugar composition in the membrane and total sugar that was released during the phase inversion method. The rheology test showed that both polymer mixtures exhibit a non- Newtonian shear thinning behaviour. Where the viscosity and viscoelasticity test reveal that CGCFCT mixture has a typical behaviour of a viscous solution with entangled polymer chains and CGCCommercial mixture has true gel behaviour. The experimental results show us that the generated CGC solution from choline acetate could be used to develop both polymeric film structure and gel. The generated structures are thermally stable at 100° C, and are hydrophilic. The produced films have dense structure and mechanical stabilities against puncture up to 60 kPa.
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Due to the importance and wide applications of the DNA analysis, there is a need to make genetic analysis more available and more affordable. As such, the aim of this PhD thesis is to optimize a colorimetric DNA biosensor based on gold nanoprobes developed in CEMOP by reducing its price and the needed volume of solution without compromising the device sensitivity and reliability, towards the point of care use. Firstly, the price of the biosensor was decreased by replacing the silicon photodetector by a low cost, solution processed TiO2 photodetector. To further reduce the photodetector price, a novel fabrication method was developed: a cost-effective inkjet printing technology that enabled to increase TiO2 surface area. Secondly, the DNA biosensor was optimized by means of microfluidics that offer advantages of miniaturization, much lower sample/reagents consumption, enhanced system performance and functionality by integrating different components. In the developed microfluidic platform, the optical path length was extended by detecting along the channel and the light was transmitted by optical fibres enabling to guide the light very close to the analysed solution. Microfluidic chip of high aspect ratio (~13), smooth and nearly vertical sidewalls was fabricated in PDMS using a SU-8 mould for patterning. The platform coupled to the gold nanoprobe assay enabled detection of Mycobacterium tuberculosis using 3 8l on DNA solution, i.e. 20 times less than in the previous state-of-the-art. Subsequently, the bio-microfluidic platform was optimized in terms of cost, electrical signal processing and sensitivity to colour variation, yielding 160% improvement of colorimetric AuNPs analysis. Planar microlenses were incorporated to converge light into the sample and then to the output fibre core increasing 6 times the signal-to-losses ratio. The optimized platform enabled detection of single nucleotide polymorphism related with obesity risk (FTO) using target DNA concentration below the limit of detection of the conventionally used microplate reader (i.e. 15 ng/μl) with 10 times lower solution volume (3 μl). The combination of the unique optical properties of gold nanoprobes with microfluidic platform resulted in sensitive and accurate sensor for single nucleotide polymorphism detection operating using small volumes of solutions and without the need for substrate functionalization or sophisticated instrumentation. Simultaneously, to enable on chip reagents mixing, a PDMS micromixer was developed and optimized for the highest efficiency, low pressure drop and short mixing length. The optimized device shows 80% of mixing efficiency at Re = 0.1 in 2.5 mm long mixer with the pressure drop of 6 Pa, satisfying requirements for the application in the microfluidic platform for DNA analysis.
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Este estágio, realizado na CrowdProcess, consistiu em integrar a equipa da empresa, trabalhando na área do Design de Comunicação, Web e Gráfico, integrado no Departamento de Comunicação da empresa. A CrowdProcess é uma plataforma de computação distribuída que utiliza o poder de processamento dos browsers ligados para correr tarefas de computação distribuída. Uma vez que se trata de um produto online, a maioria do trabalho desenvolvido diz respeito a design e desenvolvimento web e apenas uma pequena parte dedicada a design gráfico. O trabalho foi desenvolvido com as linguagens HTML, CSS e JavaScript. Foram tidos em consideração os princípios de Design, Usabilidade e Arquitectura de Informação, com principal foco na prototipagem dos vários objectos desenvolvidos.
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ICAD2014, Campus de Caparica, Portugal
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Paper presented at the Colloquium Gerpisa 2013, Paris (http://gerpisa.org/node/2085), Session n°: 19 New kinds of mobility: old and new business models
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Num mundo em crescente evolução é necessário tentar melhorar as condições de saúde global. Um factor importante para a prevenção e tratamento de doenças é o seu correcto diagnóstico. Uma vez que nem todos os países têm a mesma capacidade económica, existe a necessidade de se criar testes rápidos e baratos que possam ser acessíveis no mundo inteiro. Os point-of-care tests, como é o caso dos biossensores de glucose vastamente utilizados na monitorização da diabetes, apresentam uma solução para este problema. Os biossensores impressos em papel, em particular, são uma ferramenta que pode vir a ser muito útil na construção destes testes rápidos tornando-os mais “amigos do ambiente” e reduzindo os seus custos. O objectivo deste trabalho foi desenvolver biossensores enzimáticos, de segunda geração, impressos em papel e baseados na enzima glucose oxidase, para a detecção da glucose. Inicialmente foi feito um estudo de possíveis mediadores a utilizar, tendo-se escolhido o ferroceno por apresentar um limite de detecção adequado, ter apresentado um valor de potencial de redução relativamente baixo, 0.232 V vs pseudo ref. Ag/AgCl, ser um composto fácil de obter e com custos reduzidos. Os dispositivos baseiam-se em canais microfluídicos, eléctrodos e ligações eléctricas fabricadas em substrato de papel, utilizando as técnicas de impressão a cera, screen printing e inkjet printing. O circuito constituinte destes dispositivos foi feito recorrendo a tintas condutoras, sendo que, à tinta utilizada para o eléctrodo de trabalho foi incorporado o ferroceno. Sobre o eléctrodo de trabalho foi impressa glucose oxidase, utilizando a técnica de inkjet printing. Os eléctrodos fabricados apresentaram resposta à glucose, muito embora com baixa reprodutibilidade, podendo esta ser causada pela falta de controlo na preparação dos mesmos (manufactura manual e variabilidade da viscosidade da pasta usada no eléctrodo de trabalho). A técnica de inkjet printing em enzimas é ainda muito recente, existindo ainda alguns aspectos, como o seu efeito na actividade da enzima, que não foram avaliados neste projecto, mas que no futuro deverão ser estudados. Podemos concluir que, os eléctrodos deram uma resposta electroquímica consistente à adição de glucose, 8 mM- 30 mM, sendo que os mesmos foram reconhecidos no glucómetro comercial TRUETrackTM blood glucometer; no entanto, os valores de corrente dos dispositivos estavam abaixo do limite de detecção do instrumento.