898 resultados para Ambientes sociomorais
Resumo:
Directionally solidified zirconia-based eutectic (DSE) fibres were obtained using the laser floating zone (LFZ) method. Two systems were investigated: zirconia-barium zirconate and zirconia-mullite. The purpose was to take advantage of zirconia properties, particularly as an ionic conductor and a mechanical rein-forcement phase. The influence of processing conditions in the structural and microstructural characteristics and their consequences on the electrical and mechanical behaviour were the focus of this thesis. The novel zirconia-barium zirconate eutectic materials were developed in order to combine oxygen ionic conduction through zirconia with protonic conduction from barium zirconate, promoting mixed ionic conduction behaviour. The mi-crostructure of the fibres comprises two alternated regions: bands having coarser zirconia-rich microstructure; and inter-band regions changing from a homogeneous coupled eutectic, at the lowest pulling rate, to columnar colony microstructure, for the faster grown fibres. The bands inter-distance increases with the growth rate and, at 300 mm/h, zirconia dendrites develop enclosed in a fine-interpenetrated network of 50 vol.% ZrO2-50 vol.% BaZrO3. Both phases display contiguity without interphase boundaries, according to impedance spec-troscopy data. Yttria-rich compositions were considered in order to promote the yttrium incorporation in both phases, as revealed by Raman spectroscopy and corroborated by the elemental chemical analysis in energy dispersive spectros-copy. This is a mandatory condition to attain simultaneous contribution to the mixed ionic conduction. Such results are supported by impedance spectrosco-py measurements, which clearly disclose an increase of total ionic conduction for lower temperatures in wet/reduction atmospheres (activation energies of 35 kJ/mol in N2+H2 and 48 kJ/mol in air, in the range of 320-500 ºC) compared to the dry/oxidizing conditions (attaining values close to 90 kJ/mol, above 500 ºC). At high temperatures, the proton incorporation into the barium zirconate is un-favourable, so oxygen ion conduction through zirconia prevails, in dry and oxi-dizing environments, reaching a maximum of 1.3x10-2 S/cm in dry air, at ~1000 ºC. The ionic conduction of zirconia was alternatively combined with another high temperature oxygen ion conductor, as mullite, in order to obtain a broad elec-trolytic domain. The growth rate has a huge influence in the amount of phases and microstructure of the directionally solidified zirconia-mullite fibres. Their microstructure changes from planar coupled eutectic to dendritic eutectic mor-phology, when the growth rate rises from 1 to 500 mm/h, along with an incre-ment of tetragonal zirconia content. Furthermore, high growth rates lead to the development of Al-Si-Y glassy phase, and thus less mullite amount, which is found to considerably reduce the total ionic conduction of as-grown fibres. The reduction of the glassy phase content after annealing (10h; 1400 ºC) promotes an increase of the total ionic conduction (≥0.01 S/cm at 1370 °C), raising the mullite and tetragonal zirconia contents and leading to microstructural differ-ences, namely the distribution and size of the zirconia constituent. This has important consequences in conductivity by improving the percolation pathways. A notable increase in hardness is observed from 11.3 GPa for the 10 mm/h pulled fibre to 21.2 GPa for the fibre grown at 500 mm/h. The ultra-fine eutectic morphology of the 500 mm/h fibres results in a maximum value of 534 MPa for room temperature bending strength, which decreases to about one-fourth of this value at high temperature testing (1400 ºC) due to the soft nature of the glassy-matrix.
Resumo:
Cherenkov Imaging counters require large photosensitive areas, capable of single photon detection, operating at stable high gains under radioactive backgrounds while standing high rates, providing a fast response and a good time resolution, and being insensitive to magnetic fields. The development of photon detectors based in Micro Pattern Gaseous detectors (MPGDs), represent a new generation of gaseous photon detectors. In particular, gaseous detectors based on stacked Thick-Gaseous Electron Multipliers (THGEMs), or THGEM based structures, coupled to a CsI photoconverter coating, seem to fulfil the requirements imposed by Cherenkov imaging counters. This work focus on the study of the THGEM-based detectors response as function of its geometrical parameters and applied voltages and electric fields, aiming a future upgrade of the Cherenkov Imaging counter RICH-1 of the COMPASS experiment at CERN SPS. Further studies to decrease the fraction of ions that reach the photocathode (Ion Back Flow – IBF) to minimize the ageing and maximize the photoelectron extraction are performed. Experimental studies are complemented with simulation results, also perfomed in this work.
Resumo:
The global aim of this thesis was to evaluate and assess the effects of a pesticide (dimethoate) and a metal (nickel), as model chemicals, within different organization levels, starting at the detoxification pathways (enzymatic biomarkers) and energy costs associated (energy content quantification, energy consumption and CEA) along with the physiological alterations at the individual and population level (mortality), leading to a metabolomic analysis (using liquid 1H-NMR) and finally a gene expression analysis (transcriptome and RT-qPCR analysis). To better understand potential variations in response to stressors, abiotic factors were also assessed in terrestrial isopods such as temperature, soil moisture and UV radiation. The evaluation performed using biochemical biomarkers and energy related parameters showed that increases in temperature might negatively affect the organisms by generating oxidative stress. It also showed that this species is acclimated to environments with low soil moisture, and that in high moisture scenarios there was a short gap between the optimal and adverse conditions that led to increased mortality. As for UV-R, doses nowadays present have shown to induce significant negative impact on these organisms. The long-term exposure to dimethoate showed that besides the neurotoxicity resulting from acetylcholinesterase inhibition, this stressor also caused oxidative stress. This effect was observed for both concentrations used (recommended field dose application and a below EC50 value) and that its combination with different temperatures (20ºC and 25ºC) showed different response patterns. It was also observed that dimethoate’s degradation rate in soils was higher in the presence of isopods. In a similar study performed with nickel, oxidative stress was also observed. But, in the case of this stressor exposure, organisms showed a strategy where the energetic costs necessary for detoxification (biomarkers) seemed to be compensated by positive alterations in the energy related parameters. In this work we presented for the first time a metabolomic profile of terrestrial isopods exposed to stressors (dimethoate and niquel), since until the moment only a previous study was performed on a metabolomic evaluation in nonexposed isopods. In the first part of the study we identify 24 new metabolites that had not been described previously. On the second part of the study a metabolomic profile variation of abstract non-exposed organism throughout the exposure was presented and finally the metabolomic profile of organisms exposed to dimethoate and nickel. The exposure to nickel suggested alteration in growth, moult, haemocyanin and glutathione synthesis, energy pathways and in osmoregulation. As for the exposure to dimethoate alterations in osmoregulation, energy pathways, moult and neurotransmission were also suggested. In this work it was also presented the first full body transcriptome of a terrestrial isopod from the species Porcellionides pruinosus, which will complement the scarce information available for this group of organisms. This transcriptome also served as base for a RNA-Seq and a RT-qPCR analysis. The results of the RNA-Seq analysis performed in organisms exposed to nickel showed that this stressor negatively impacted at the genetic and epigenetic levels, in the trafficking, storage and elimination of metals, generates oxidative stress, inducing neurotoxicity and also affecting reproduction. These results were confirmed through RT-qPCR. As for the impact of dimethoate on these organisms it was only accessed through RT-qPCR and showed oxidative stress, an impact in neurotransmission, in epigenetic markers, DNA repair and cell cycle impairment. This study allowed the design of an Adverse Outcome Pathway draft that can be used further on for legislative purposes.
Resumo:
This thesis describes the design and implementation of a reliable centimeter-level indoor positioning system fully compatible with a conventional smartphone. The proposed system takes advantage of the smartphone audio I/O and processing capabilities to perform acoustic ranging in the audio band using non-invasive audio signals and it has been developed having in mind applications that require high accuracy, such as augmented reality, virtual reality, gaming and audio guides. The system works in a distributed operation mode, i.e. each smartphone is able to obtain its own position using only acoustic signals. To support the positioning system, a Wireless Sensor Network (WSN) of synchronized acoustic beacons is used. To keep the infrastructure in sync we have developed an Automatic Time Synchronization and Syntonization (ATSS) protocol with a standard deviation of the sync offset error below 1.25 μs. Using an improved Time Difference of Arrival (TDoA) estimation approach (which takes advantage of the beacon signals’ periodicity) and by performing Non-Line-of-Sight (NLoS) mitigation, we were able to obtain very stable and accurate position estimates with an absolute mean error of less than 10 cm in 95% of the cases and a mean standard deviation of 2.2 cm for a position refresh period of 350 ms.
Resumo:
Salt marshes are highly productive intertidal habitats that serve as nursery grounds for many commercially and economically important species. Because of their location and physical and biological characteristics, salt marshes are considered to be particularly vulnerable to anthropogenic inputs of oil hydrocarbons. Sediment contamination with oil is especially dangerous for salt marsh vegetation, since low molecular weight aromatic hydrocarbons can affect plants at all stages of development. However, the use of vegetation for bioremediation (phytoremediation), by removal or sequestration of contaminants, has been intensively studied. Phytoremediation is an efficient, inexpensive and environmental friendly approach for the removal of aromatic hydrocarbons, through direct incorporation by the plant and by the intervention of degrading microbial populations in the rhizosphere (microbe-assisted phytoremediation). Rhizosphere microbial communities are enriched in important catabolic genotypes for degradation of oil hydrocarbons (OH) which may have a potential for detoxification of the sediment surrounding the roots. In addition, since rhizosphere bacterial populations may also internalize into plant tissues (endophytes), rhizocompetent AH degrading populations may be important for in planta AH degradation and detoxification. The present study involved field work and microcosms experiments aiming the characterization of relevant plant-microbe interactions in oilimpacted salt marshes and the understanding of the effect of rhizosphere and endosphere bacteria in the role of salt marsh plants as potential phytoremediation agents. In the field approach, molecular tools were used to assess how plant species- and OH pollution affect sediment bacterial composition [bulk sediment and sediment surrounding the roots (rhizosphere) of Halimione portulacoides and Sarcocornia perennis subsp. perennis] in a temperate estuary (Ria de Aveiro, Portugal) chronically exposed to OH pollution. In addition, the 16S rRNA gene sequences retrieved in this study were used to generate in silico metagenomes and to evaluate the distribution of potential bacterial traits in different microhabitats. Moreover, a combination of culture-dependent and -independent approaches was used to investigate the effect of oil hydrocarbons contamination on the structure and function of endophytic bacterial communities of salt marsh plants.Root systems of H. portulacoides and S. perennis subsp. perennis appear to be able to exert a strong influence on bacterial composition and in silico metagenome analysis showed enrichment of genes involved in the process of polycyclic aromatic hydrocarbon (PAH) degradation in the rhizosphere of halophyte plants. The culturable fraction of endophytic degraders was essentially closely related to known OH-degrading Pseudomonas species and endophytic communities revealed sitespecific effects related to the level of OH contamination in the sediment. In order to determine the effects of oil contamination on plant condition and on the responses in terms of structure and function of the bacterial community associated with plant roots (rhizosphere, endosphere), a microcosms approach was set up. The salt marsh plant Halimione portulacoides was inoculated with a previous isolated Pseudomonas sp. endophytic degrader and the 2-methylnaphthalene was used as model PAH contaminant. The results showed that H. portulacoides health and growth were not affected by the contamination with the tested concentration. Moreover, the decrease of 2-methylnaphthalene at the end of experiment, can suggest that H. portulacoides can be considered as a potential plant for future uses in phytoremedition approaches of contaminated salt marsh. The acceleration of hydrocarbon degradation by inoculation of the plants with the hydrocarbon-degrading Pseudomonas sp. could not, however, be demonstrated, although the effects of inoculation on the structure of the endophytic community observed at the end of the experiment indicate that the strain may be an efficient colonizer of H. portulacoides roots. The results obtained in this work suggest that H. portulacoides tolerates moderate concentrations of 2-methylnaphthalene and can be regarded as a promising agent for phytoremedition approaches in salt marshes contaminated with oil hydrocarbons. Plant/microbe interactions may have an important role in the degradation process, as plants support a diverse endophytic bacterial community, enriched in genetic factors (genes and plasmids) for hydrocarbon degradation.
Resumo:
O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores. O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores.O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores.No geral, os alunos com a professora investigadora puderam afirmar que a avaliação de conhecimentos adquiridos pelos alunos, na sala de aula, é condicionada pela sensação térmica sentida para ambientes considerados de “frios” e ambientes considerados de “quentes”. Concluiu-se, que o processo de aprendizagem é afetado pelas condições termohigrométricas do ambiente que rodeiam os alunos. É importante salientar, que a análise de resultados mostrou que quando os valores da sensação térmica sentida pelos alunos é inferior a -0,5, ou superior a +0,5 da escala térmica de cores, os resultados obtidos da avaliação de conhecimentos tendem a ser negativos e quando a sensação térmica sentida pelos alunos se localiza na zona de conforto térmico, ou seja, entre os valores de -0,5 e +0,5, os resultados são, no geral, positivos, o que confirma que os resultados das avaliações de conhecimentos, para os alunos, depende do ambiente térmico. Foi possível ainda constatar que quando a sensação térmica sentida pelos alunos regista valores baixos com tendência a “frio” (-2) ou altos com tendência a “quente” (+2) os resultados obtidos pelos alunos são, no geral, bastante negativos. O grau de insatisfação previsto para cada ambiente térmico quando se usou o índice EsConTer, mostrou concordância de interpretação em face da sensação térmica sentida pelos alunos e registada na escala de sensação térmica de cores. Pensamos ter evidências suficientes para afirmar que a abordagem didática utilizada, considerada de inovadora, durante a realização do trabalho, na disciplina de Ciências Físico-Químicas promoveu nos alunos o gosto pela disciplina e que os resultados obtidos indicam que: os alunos sentiram interesse e motivação pela disciplina, conseguiram compreender a sua importância para o seu futuro e para o seu dia-a-dia, pois conseguiram ver a aplicação dos diversos conteúdos abordados na disciplina em diversas situações do seu quotidiano; a verdadeiros “investigadores”, suscitando assim um maior envolvimento e motivação nos alunos; a utilização de questões problema para a introdução dos conteúdos foi uma estratégia que os alunos consideraram uma mais-valia, uma vez que associados a essas questões existiram discussões e debates que promoveram a participação de todos os alunos, tornando as aulas mais interativas e mais motivantes. Importa salientar que ao longo dos diversos debates surgiram, ainda, mais questões que foram muito úteis, pois os alunos aquando da realização das atividades práticas tentaram sempre ir em busca das respostas às suas inquietações e ajudaram a que a professora investigadora implementasse, ainda mais, atividades para que os alunos conseguissem por eles próprios encontrar as respostas e percebessem o que estavam a trabalhar; as aulas foram importantes para a aprendizagem dos conteúdos da disciplina e contribuíram para desmitificar a ideia de que a disciplina de Física e Química é “difícil”, pois os alunos perceberam que os conteúdos abordados podem de uma forma simples e eficaz serem aplicados a situações do seu dia-a-dia. Assim, considerando os pressupostos anteriores, podemos afirmar que as estratégias implementadas foram, de uma forma geral, promotoras de motivação, de participação dos alunos nas aulas e nas suas aprendizagens. Estamos convictos de que toda a metodologia adotada é uma forte contribuição para o Ensino nas Ciências, nomeadamente, na Física e Química, usando uma temática Conforto Térmico e que o método usado é uma ferramenta importante e inovadora para avaliar como situações de desconforto térmico podem condicionar o processo de aprendizagem dos alunos. Pensamos que este trabalho é bastante interessante para os profissionais de ensino, nomeadamente para os professores de Física e Química e de Geografia, uma vez que mostra como a partir de dados como a temperatura do ar e da humidade relativa do ar se podem fazer fascinantes estudos e envolver ativamente os alunos. Nos trabalhos desenvolvidos houve sempre o cuidado de criar metodologias dinâmicas e motivadoras, aliadas sempre à perspetiva CTSA, com vista ao melhoramento das aulas e, também, deixar uma contribuição para os colegas, profissionais de ensino, que eventualmente analisarem este documento. A metodologia adoptada permitiu encontrar respostas às questões formuladas. Por último, podemos afirmar que numa problemática energética que afeta a humanidade, os políticos através de alguns indicadores apresentados neste estudo, poderão considerar que os resultados obtidos pelos alunos são influenciados pelo ambiente térmico de cada sala de aula e que a solução de melhorar resultados é, também, criar condições de conforto térmico nas salas de aula das escolas. Partilhamos da opinião que os resultados nacionais obtidos pelos alunos por si só são redutores em análise comparativa de melhor ou pior escola em termos de ranking. Consideramos que uma escola confortável gera condições de bem-estar que condiciona o processo de aprendizagem ao longo do ano.
Resumo:
Nowadays, communication environments are already characterized by a myriad of competing and complementary technologies that aim to provide an ubiquitous connectivity service. Next Generation Networks need to hide this heterogeneity by providing a new abstraction level, while simultaneously be aware of the underlying technologies to deliver richer service experiences to the end-user. Moreover, the increasing interest for group-based multimedia services followed by their ever growing resource demands and network dynamics, has been boosting the research towards more scalable and exible network control approaches. The work developed in this Thesis enables such abstraction and exploits the prevailing heterogeneity in favor of a context-aware network management and adaptation. In this scope, we introduce a novel hierarchical control framework with self-management capabilities that enables the concept of Abstract Multiparty Trees (AMTs) to ease the control of multiparty content distribution throughout heterogeneous networks. A thorough evaluation of the proposed multiparty transport control framework was performed in the scope of this Thesis, assessing its bene ts in terms of network selection, delivery tree recon guration and resource savings. Moreover, we developed an analytical study to highlight the scalability of the AMT concept as well as its exibility in large scale networks and group sizes. To prove the feasibility and easy deployment characteristic of the proposed control framework, we implemented a proof-of-concept demonstrator that comprehends the main control procedures conceptually introduced. Its outcomes highlight a good performance of the multiparty content distribution tree control, including its local and global recon guration. In order to endow the AMT concept with the ability to guarantee the best service experience by the end-user, we integrate in the control framework two additional QoE enhancement approaches. The rst employs the concept of Network Coding to improve the robustness of the multiparty content delivery, aiming at mitigating the impact of possible packet losses in the end-user service perception. The second approach relies on a machine learning scheme to autonomously determine at each node the expected QoE towards a certain destination. This knowledge is then used by di erent QoE-aware network management schemes that, jointly, maximize the overall users' QoE. The performance and scalability of the control procedures developed, aided by the context and QoE-aware mechanisms, show the advantages of the AMT concept and the proposed hierarchical control strategy for the multiparty content distribution with enhanced service experience. Moreover we also prove the feasibility of the solution in a practical environment, and provide future research directions that bene t the evolved control framework and make it commercially feasible.
Resumo:
Este trabalho focou-se no estudo do impacte das condições ambientais, de instalação e de utilização na degradação da fibra ótica, que frequentemente resultam na redução do desempenho das fibras óticas. Entre este fatores, foram estudados os efeitos de ambientes agressivos para o revestimento da fibra, nomeadamente no tempo de vida e resistência. Foi também estudado o efeito da propagação de sinais óticos de elevadas potências em curvaturas apertadas e a sua influência na degradação do desempenho da fibra ótica. Ainda neste âmbito, foi também estudado o desempenho de fibras óticas insensíveis a curvtura e fibras dopadas com Érbio, sendo analisada a dinâmica do efeito rastilho nestas fibras. Como parte integrante das redes óticas, os conetores óticos são de extrema importância na sua estrutura. O seu desempenho será refletido na qualidade do serviço da rede, e por isso é determinante estudar os fatores que contribuem para a sua degradação e mau funcionamento. Assim, este trabalho apresenta um estudo do comportamento de conetores óticos perante situações de mau manuseamento (como são limpeza insuficiente e degradação física da face final). Em adição foi também dado ênfase à reutilização de fibra danificada pelo efeito rastilho no desenvolvimento de sensores, passíveis de serem utilizados na monitorização de índice de refração, pressão hidrostática, tensão ou alta temperatura. Este procedimento surge como uma solução de baixo custo para o desenvolvimento de sensores em fibra ótica a partir de fibra danificada e inutilizável para as suas habituais aplicações em transmissão e/ou reflexão de sinais óticos.
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A investigação sobre a promoção do questionamento na relação pedagógica revela ser uma estratégia que valoriza o papel do aluno enquanto aquele que aprende, alterando a forma como as aulas são vividas por alunos e professores. Perante a inexistência de estudos que ensaiem o estímulo ao questionamento e, simultaneamente, integrem a Web 2.0 no processo de ensino e de aprendizagem no Ensino Básico, delineou-se a presente investigação. O estudo situa-se, assim, na interseção de dois campos: por um lado, as potencialidades do incentivo ao questionamento no processo pedagógico e, por outro, a integração educativa das TIC. A questão de Investigação que orientou este estudo foi a de avaliar de que forma é que o incentivo ao questionamento poderia contribuir para integrar o blogue de disciplina no trabalho em sala de aula de Ciências Naturais. Assim, concebemos, implementámos e avaliámos uma intervenção didática centrada na promoção da competência de questionamento, dando voz aos alunos, estimulando-os a formularem perguntas sobre os conteúdos, tanto presencialmente como no blogue da disciplina, denominado por “Mentes Curiosas”, utilizando essas perguntas como elementos integradores dos dois espaços. O estudo seguiu uma metodologia de investigação-ação e envolveu 36 alunos do 9.º ano de escolaridade, divididos em duas turmas, na disciplina de Ciências Naturais. Os instrumentos e métodos de recolha de dados foram diversificados, tendo todos os dados sido submetidos a uma análise de conteúdo. O estudo revela que os alunos utilizaram o blogue respondendo aos desafios colocados escrevendo comentários, respostas e, sobretudo, fazendo perguntas para as quais gostariam de obter respostas. O docente integrou essas perguntas na prática letiva dando continuidade às discussões de um ambiente para o outro, utilizando, desta forma, as perguntas dos alunos para a integração dos dois ambientes. A análise do questionamento registado revela que as perguntas online estão mais centradas nos conteúdos científicos e apresentam maior qualidade cognitiva quando comparadas com as formuladas em sala de aula. Por sua vez, no contexto presencial, as perguntas escritas são de maior nível de complexidade do que as perguntas orais. Através das diversas estratégias implementadas, quer para a promoção da capacidade de escrever perguntas, quer no trabalho realizado com o blogue, transformou-se a dinâmica do trabalho em sala de aula, melhorando-se o empenhamento dos alunos na aprendizagem. A estratégia de incentivo ao questionamento pelos alunos revelou-se, assim, como um fator que permite integrar de forma profícua o ambiente online no ambiente presencial neste nível de ensino. Por fim, a reflexão que fomos fazendo sobre as potencialidades do questionamento na relação professor-alunos-conteúdos, tanto no ambiente presencial como no virtual, levou-nos a perspetivar as perguntas segundo duas dimensões: Competência Cognitiva e Estratégia Didática. Enquanto Competência, o questionamento assume a função de ferramenta cognitiva e de regulador do processo de ensino e de aprendizagem. Enquanto Estratégia, a pergunta pode ser encarada como uma ferramenta didática na relação dialógica que se estabelece entre professor e alunos.
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Last-resort antibiotics are the final line of action for treating serious infections caused by multiresistant strains. Over the years the prevalence of resistant bacteria has been increasing. Natural environments are reservoirs of antibiotic resistance, highly influenced by human-driven activities. The importance of aquatic systems on the evolution of antibiotic resistance is highlighted from the assumption that clinically-relevant resistance genes have originated in strains ubiquitous in these environments. We hypothesize that: a) rivers are reservoirs and disseminators of antibiotic resistance; b) anthropogenic activities potentiate dissemination of resistance to last-resort antibiotics. Hence, the main goal of the work is to compare the last-resort antibiotics resistome, in polluted and unpolluted water. Rivers from the Vouga basin, exposed to different anthropogenic impacts, were sampled. Water quality parameters were determined to classify rivers as unpolluted or polluted. Two bacterial collections were established enclosing bacteria resistant to cefotaxime (3rd generation cephalosporin) and to imipenem (carbapenem). Each collection was characterized regarding: phylogenetic diversity, antibiotic susceptibility, resistance mechanisms and mobile genetic elements. The prevalence of cefotaxime- and imipenem-resistant bacteria was higher in polluted water. Results suggested an important role in the dissemination of antibiotic resistance for Enterobacteriaceae, Pseudomonas and Aeromonas. The occurrence of bacteria resistant to non-beta-lactams was higher among isolates from polluted water as also the number of multiresistant strains. Among strains resistant to cefotaxime, extended-spectrum beta-lactamase (ESBL) genes were detected (predominantly blaCTX-M-like) associated to mobile genetic elements previously described in clinical strains. ESBL-producers were often multiresistant as a result of co-selection mechanisms. Culture-independent methods showed clear differences between blaCTX-M-like sequences found in unpolluted water (similar to ancestral genes) and polluted water (sequences identical to those reported in clinical settings). Carbapenem resistance was mostly related to the presence of intrinsically resistant bacteria. Yet, relevant carbapenemase genes were detected as blaOXA-48-like in Shewanella spp. (the putative origin of these genes), and blaVIM-2 in Pseudomonas spp. isolated from polluted rivers. Culture-independent methods showed an higher than the previously reported diversity of blaOXA-48-like genes in rivers. Overall, clear differences between polluted and unpolluted systems were observed, regarding prevalence, phylogenetic diversity and susceptibility profiles of resistant bacteria and occurrence of clinically relevant antibiotic resistance genes, thus validating our hypotheses. In this way, rivers act as disseminators of resistance genes, and anthropogenic activities potentiate horizontal gene transfer and promote the constitution of genetic platforms that combine several resistance determinants, leading to multiresistance phenotypes that may persist even in the absence of antibiotics.
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The massive adoption of sophisticated mobile devices and applications led to the increase of mobile data in the last decade, which it is expected to continue. This increase of mobile data negatively impacts the network planning and dimension, since core networks are heavy centralized. Mobile operators are investigating atten network architectures that distribute the responsibility of providing connectivity and mobility, in order to improve the network scalability and performance. Moreover, service providers are moving the content servers closer to the user, in order to ensure high availability and performance of content delivery. Besides the e orts to overcome the explosion of mobile data, current mobility management models are heavy centralized to ensure reachability and session continuity to the users connected to the network. Nowadays, deployed architectures have a small number of centralized mobility anchors managing the mobile data and the mobility context of millions of users, which introduces issues related to performance and scalability that require costly network mechanisms. The mobility management needs to be rethought out-of-the box to cope with atten network architectures and distributed content servers closer to the user, which is the purpose of the work developed in this Thesis. The Thesis starts with a characterization of mobility management into well-de ned functional blocks, their interaction and potential grouping. The decentralized mobility management is studied through analytical models and simulations, in which di erent mobility approaches distinctly distribute the mobility management functionalities through the network. The outcome of this study showed that decentralized mobility management brings advantages. Hence, it was proposed a novel distributed and dynamic mobility management approach, which is exhaustively evaluated through analytical models, simulations and testbed experiments. The proposed approach is also integrated with seamless horizontal handover mechanisms, as well as evaluated in vehicular environments. The mobility mechanisms are also speci ed for multihomed scenarios, in order to provide data o oading with IP mobility from cellular to other access networks. In the pursuing of the optimized mobile routing path, a novel network-based strategy for localized mobility is addressed, in which a replication binding system is deployed in the mobility anchors distributed through the access routers and gateways. Finally, we go further in the mobility anchoring subject, presenting a context-aware adaptive IP mobility anchoring model that dynamically assigns the mobility anchors that provide the optimized routing path to a session, based on the user and network context. The integration of dynamic and distributed concepts in the mobility management, such as context-aware adaptive mobility anchoring and dynamic mobility support, allow the optimization of network resources and the improvement of user experience. The overall outcome demonstrates that decentralized mobility management is a promising direction, hence, its ideas should be taken into account by mobile operators in the deployment of future networks.
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Bacterial infections are an increasing problem for human health. In fact, an increasing number of infections are caused by bacteria that are resistant to most antibiotics and their combinations. Therefore, the scientific community is currently searching for new solutions to fight bacteria and infectious diseases, without promoting antimicrobial resistance. One of the most promising strategies is the disruption or attenuation of bacterial Quorum Sensing (QS), a refined system that bacteria use to communicate. In a QS event, bacteria produce and release specific small chemicals, signal molecules - autoinducers (AIs) - into the environment. At the same time that bacterial population grows, the concentration of AIs in the bacterial environment increases. When a threshold concentration of AIs is reached, bacterial cells respond to it by altering their gene expression profile. AIs regulate gene expression as a function of cell population density. Phenotypes mediated by QS (QSphenotypes) include virulence factors, toxin production, antibiotic resistance and biofilm formation. In this work, two polymeric materials (linear polymers and molecularly imprinted nanoparticles) were developed and their ability to attenuate QS was evaluated. Both types of polymers should to be able to adsorb bacterial signal molecules, limiting their availability in the extracellular environment, with expected disruption of QS. Linear polymers were composed by one of two monomers (itaconic acid and methacrylic acid), which are known to possess strong interactions with the bacterial signal molecules. Molecularly imprinted polymer nanoparticles (MIP NPs) are particles with recognition capabilities for the analyte of interest. This ability is attained by including the target analyte at the synthesis stage. Vibrio fischeri and Aeromonas hydrophila were used as model species for the study. Both the linear polymers and MIP NPs, tested free in solutions and coated to surfaces, showed ability to disrupt QS by decreasing bioluminescence of V. fischeri and biofilm formation of A. hydrophila. No significant effect on bacterial growth was detected. The cytotoxicity of the two types of polymers to a fibroblast-like cell line (Vero cells) was also tested in order to evaluate their safety. The results showed that both the linear polymers and MIP NPs were not cytotoxic in the testing conditions. In conclusion, the results reported in this thesis, show that the polymers developed are a promising strategy to disrupt QS and reduce bacterial infection and resistance. In addition, due to their low toxicity, solubility and easy integration by surface coating, the polymers have potential for applications in scenarios where bacterial infection is a problem: medicine, pharmaceutical, food industry and in agriculture or aquaculture.
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During the last century mean global temperatures have been increasing. According to the predictions, the temperature change is expected to exceed 1.5ºC in this century and the warming is likely to continue. Freshwater ecosystems are among the most sensitive mainly due to changes in the hydrologic cycle and consequently changes in several physico-chemical parameters (e.g. pH, dissolved oxygen). Alterations in environmental parameters of freshwater systems are likely to affect distribution, morphology, physiology and richness of a wide range of species leading to important changes in ecosystem biodiversity and function. Moreover, they can also work as co-stressors in environments where organisms have already to cope with chemical contamination (such as pesticides), increasing the environmental risk due to potential interactions. Therefore, the objective of this work was to evaluate the effects of climate change related environmental parameters on the toxicity of pesticides to zebrafish embryos. The following environmental factors were studied: pH (3.0-12.0), dissolved oxygen level (0-8 mg/L) and UV radiation (0-500 mW/m2). The pesticides studied were the carbamate insecticide carbaryl and the benzimidazole fungicide carbendazim. Stressors were firstly tested separately in order to derive concentration- or intensity-response curves to further study the effects of binary combinations (environmental factors x pesticides) by applying mixture models. Characterization of zebrafish embryos response to environmental stress revealed that pH effects were fully established after 24 h of exposure and survival was only affected at pH values below 5 and above 10. Low oxygen levels also affected embryos development at concentrations below 4 mg/L (delay, heart rate decrease and edema), and at concentrations below 0.5 mg/L the survival was drastically reduced. Continuous exposure to UV radiation showed a strong time-dependent impact on embryos survival leading to 100% of mortality after 72 hours of exposure. The toxicity of pesticides carbaryl and carbendazim was characterized at several levels of biological organization including developmental, biochemical and behavioural allowing a mechanistic understanding of the effects and highlighting the usefulness of behavioural responses (locomotion) as a sensitive endpoint in ecotoxicology. Once the individual concentration response relationship of each stressor was established, a combined toxicity study was conducted to evaluate the effects of pH on the toxicity of carbaryl. We have shown that pH can modify the toxicity of the pesticide carbaryl. The conceptual model concentration addition allowed a precise prediction of the toxicity of the jointeffects of acid pH and carbaryl. Nevertheless, for alkaline condition both concepts failed in predicting the effects. Deviations to the model were however easy to explain as high pH values favour the hydrolysis of carbaryl with the consequent formation of the more toxic degradation product 1- naphtol. Although in the present study such explanatory process was easy to establish, for many other combinations the “interactive” nature is not so evident. In the context of the climate change few scenarios predict such increase in the pH of aquatic systems, however this was a first approach focused in the lethal effects only. In a second tier assessment effects at sublethal level would be sought and it is expectable that more subtle pH changes (more realistic in terms of climate changes scenarios) may have an effect at physiological and biochemical levels with possible long term consequences for the population fitness.
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Bioorganic ferroelectrics and piezoelectrics are becoming increasingly important in view of their intrinsic compatibility with biological environment and biofunctionality combined with strong piezoelectric effect and switchable polarization at room temperature. Here we study piezoelectricity and ferroelectricity in the smallest amino acid glycine, representing a broad class of non-centrosymmetric amino acids. Glycine is one of the basic and important elements in biology, as it serves as a building block for proteins. Three polymorphic forms with different physical properties are possible in glycine (α, β and γ), Of special interest for various applications are non-centrosymmetric polymorphs: β-glycine and γ-glycine. The most useful β-polymorph being ferroelectric took much less attention than the other due to its instability under ambient conditions. In this work, we could grow stable microcrystals of β-glycine by the evaporation of aqueous solution on a (111)Pt/Ti/SiO2/Si substrate as a template. The effects of the solution concentration and Pt-assisted nucleation on the crystal growth and phase evolution were characterized by X-ray diffraction analysis and Raman spectroscopy. In addition, spin-coating technique was used for the fabrication of highly aligned nano-islands of β-glycine with regular orientation of the crystallographic axes relative the underlying substrate (Pt). Further we study both as-grown and tip-induced domain structures and polarization switching in the β-glycine molecular systems by Piezoresponse Force Microscopy (PFM) and compare the results with molecular modeling and computer simulations. We show that β-glycine is indeed a room-temperature ferroelectric and polarization can be switched by applying a bias to non-polar cuts via a conducting tip of atomic force microscope (AFM). Dynamics of these in-plane domains is studied as a function of applied voltage and pulse duration. The domain shape is dictated by both internal and external polarization screening mediated by defects and topographic features. Thermodynamic theory is applied to explain the domain propagation induced by the AFM tip. Our findings suggest that β-glycine is a uniaxial ferroelectric with the properties controlled by the charged domain walls which in turn can be manipulated by external bias. Besides, nonlinear optical properties of β-glycine were investigated by a second harmonic generation (SHG) method. SHG method confirmed that the 2-fold symmetry is preserved in as-grown crystals, thus reflecting the expected P21 symmetry of the β-phase. Spontaneous polarization direction is found to be parallel to the monoclinic [010] axis and directed along the crystal length. These data are confirmed by computational molecular modeling. Optical measurements revealed also relatively high values of the nonlinear optical susceptibility (50% greater than in the z-cut quartz). The potential of using stable β-glycine crystals in various applications are discussed in this work.
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Industrial activities are the major sources of pollution in all environments. Depending on the type of industry, various levels of organic and inorganic pollutants are being continuously discharged into the environment. Although, several kinds of physical, chemical, biological or the combination of methods have been proposed and applied to minimize the impact of industrial effluents, few have proved to be totally effective in terms of removal rates of several contaminants, toxicity reduction or amelioration of physical and chemical properties. Hence, it is imperative to develop new and innovative methodologies for industrial wastewater treatment. In this context nanotechnology arises announcing the offer of new possibilities for the treatment of wastewaters mainly based on the enhanced physical and chemical proprieties of nanomaterials (NMs), which can remarkably increase their adsorption and oxidation potential. Although applications of NMs may bring benefits, their widespread use will also contribute for their introduction into the environment and concerns have been raised about the intentional use of these materials. Further, the same properties that make NMs so appealing can also be responsible for producing ecotoxicological effects. In a first stage, with the objective of selecting NMs for the treatment of organic and inorganic effluents we first assessed the potential toxicity of nanoparticles of nickel oxide (NiO) with two different sizes (100 and 10-20 nm), titanium dioxide (TiO2, < 25 nm) and iron oxide (Fe2O3, ≈ 85x425 nm). The ecotoxicological assessment was performed with a battery of assays using aquatic organisms from different trophic levels. Since TiO2 and Fe2O3 were the NMs that presented lower risks to the aquatic systems, they were selected for the second stage of this work. Thus, the two NMs pre-selected were tested for the treatment of olive mill wastewater (OMW). They were used as catalyst in photodegradation systems (TiO2/UV, Fe2O3/UV, TiO2/H2O2/UV and Fe2O3/H2O2/UV). The treatments with TiO2 or Fe2O3 combined with H2O2 were the most efficient in ameliorating some chemical properties of the effluent. Regarding the toxicity to V. fischeri the highest reduction was recorded for the H2O2/UV system, without NMs. Afterwards a sequential treatment using photocatalytic oxidation with NMs and degradation with white-rot fungi was applied to OMW. This new approach increased the reduction of chemical oxygen demand, phenolic content and ecotoxicity to V. fischeri. However, no reduction in color and aromatic compounds was achieved after 21 days of biological treatment. The photodegradation systems were also applied to treat the kraft pulp mill and mining effluents. For the organic effluent the combination NMs and H2O2 had the best performances in reduction the chemical parameters as well in terms of toxicity reduction. However, for the mine effluent the best (TiO2/UV and Fe2O3/UV) were only able to significantly remove three metals (Zn, Al and Cd). Nonetheless the treatments were able of reducing the toxicity of the effluent. As a final stage, the toxicity of solid wastes formed during wastewater treatment with NMs was assessed with Chironomus riparius larvae, a representative species of the sediment compartment. Certain solid wastes showed the potential to negatively affect C. riparius survival and growth, depending on the type of effluent treated. This work also brings new insights to the use of NMs for the treatment of industrial wastewaters. Although some potential applications have been announced, many evaluations have to be performed before the upscaling of the chemical treatments with NMs.