7 resultados para Nanometers displacement measurement

em Instituto Politécnico do Porto, Portugal


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Introdução: O acidente vascular encefálico (AVE) é uma importante e frequente condição de saúde que se repercute na funcionalidade do indivíduo. No sentido de reabilitar a função perdida, é comum o recurso a intervenções de fisioterapia baseado o conceito de Bobath. Como tal, importa verificar, as modificações no âmbito do controlo postural, através da migração do centro de pressão na base de suporte, face à aplicação de uma intervenção segundo abordagem baseada no conceito de Bobath em dois indivíduos com AVE. Métodos e participantes: Foram recrutados dois indivíduos com diagnóstico de AVE num hospital da zona do grande Porto. Dados referentes ao equilíbrio estático na condição de medição “olhos abertos ou fechados” e “calçado ou descalço” foram obtidos através de plataforma de forças, antes e após uma intervenção baseado no conceito de Bobath durante 13 semanas (M0 e M1). Nestes dois momentos foram ainda avaliados a mobilidade, função cognitiva, participação, equilíbrio através do teste Timed Up & Go (TUG) e Timed Up & Go Modificado (TUGM), e das escalas Mini Mental State Examination (MMSE), Postural Assessment for Stroke Scale (PASS), Escala de Berg (EB) e Índice de Barthel Modificado (IBM). Resultados: Os participantes obtiveram em ambos os momentos pontuação máxima no MMSE. Ambos os indivíduos atingiram o valor máximo no IBM em M1 (Mo: A: 78; B: 65). Ambos os indivíduos aumentaram o score entre M0 e M1, relativamente ao PASS (A: M0:21; M1:33; B: M0: 26; M1:34) e EB (A: M0:48; M1:54; B: M0: 30; M1:50). O tempo de realização do TUG e do TUGM diminuíram entre momentos em ambos os indivíduos (respectivamente: A: 15''13'' a 13''27''; B: 24''13'' a 13''88'' e A: 19''08''' a 13''27''; B: 29''60''' a 17''64'''). A área de deslocação do centro de pressão (CP) variou entre momentos em todas as condições de avaliação, sendo menor na condição “olhos abertos e descalço” em ambos os participantes (“olhos abertos e calçado”: A: M0= 1,364, M1=2,796; B: M0=1,892, M1=2,979; “olhos abertos e descalço”: A: M0= 0,758, M1=0,727; B: M0=3,064, M1=1,952; “olhos fechados e calçado”: A: M0= 2,360, M1=2,998; B: M0=2,232, M1= 4,392; “olhos fechados e descalço”: A: M0= 1,347, M1=2,388; B: M0=1,652, M1= 1,016). O desvio padrão das deslocações anteroposteriores variou entre momentos, sendo tendencialmente maior em M1 e na condição “descalço e olhos abertos”(“olhos abertos e calçado”: A: M0= 0,201, M1=0,500; B: M0=0,252, M1=0,310; “olhos abertos e descalço”: A: M0= 0,118, M1=0,165; B: M0=0,282, M1=0,276; “olhos fechados e calçado”: A: M0= 0,308, M1=0,398; B: M0=0,274, M1= 0,471; “olhos fechados e descalço”: A: M0= 0,158 , M1=0,373; B: M0=0,230, M1= 0,172), o desvio padrão das deslocações médio-lateral seguem a mesma tendência (“olhos abertos e calçado”: A: M0= 0,370 , M1=0,473; B: M0=0,454, M1=0,517; “olhos abertos e descalço”: A: M0= 0,354, M1=0,236 ; B: M0=0,584, M1=0,381; “olhos fechados e calçado”: A: M0= 0,425, M1=0,463; B: M0=0,462, M1= 0,583; “olhos fechados e descalço”: A: M0= 0,475, M1=0,416; B: M0=0,389, M1= 0,342). A velocidade de oscilação na direcção antero – posterior variou entre momentos, sendo tendencialmente menor em M1, em ambos os participantes e em todas as condições de avaliação: “olhos abertos e calçado”: A: M0= 0,886 , M1=0,532; B: M0=2,507, M1=01,072; “olhos abertos e descalço”: A: M0= 2,562, M1=3,815 ; B: M0=4,367, M1=0,262; “olhos fechados e calçado”: A: M0= 2,689, M1=1,757; B: M0=2,821, M1= 0,769; “olhos fechados e descalço”: A: M0= 2,984, M1=2,525; B: M0=4,100, M1= 0,265), a velocidade de oscilação na direcção médio – lateral seguem a mesma tendência para as condições de “olhos abertos e calçado”: A: M0= 6,524 , M1=6,218; B: M0=0,467, M1=0,404; “olhos fechados e calçado”: A: M0= 6,387, M1=1,927; B: M0=0,351, M1= 0,505; mas a velocidade de oscilação aumenta para as condições de “olhos abertos e descalço”: A: M0= 3,108, M1=7,806 ; B: M0=1,150, M1=8,054; “olhos fechados e descalço”: A: M0= 3,444, M1=3,839; B: M0=1,434, M1= 7,891). Conclusão: Entre os dois momentos os indivíduos melhoraram a sua mobilidade, equilíbrio, participação e actividades, potencialmente devido à intervenção baseado no conceito de Bobath.

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A novel biomimetic sensor for the potentiometric transduction of oxytetracycline is presented. The artificial host was imprinted in methacrylic acid and/or acrylamide based polymers. Different amounts of molecularly imprinted and non-imprinted polymers were dispersed in different plasticizing solvents and entrapped in a poly(vinyl chloride) matrix. Only molecularly imprinted based sensors allowed a potentiometric transduction, suggesting the existence of host–guest interactions. These sensors exhibited a near-Nernstian response in steady state evaluations; slopes and detection limits ranged 42–63 mV/decade and 2.5–31.3 µg/mL, respectively. Sensors were independent from the pH of test solutions within 2–5. Good selectivity was observed towards glycine, ciprofloxacin, creatinine, acid nalidixic, sulfadiazine, cysteine, hydroxylamine and lactose. In flowing media, the biomimetic sensors presented good reproducibility (RSD of ±0.7%), fast response, good sensitivity (65 mV/decade), wide linear range (5.0×10−5 to 1.0×10−2 mol/L), low detection limit (19.8 µg/mL), and a stable baseline for a 5×10−3M citrate buffer (pH 2.5) carrier. The sensors were successfully applied to the analysis of drugs and urine. This work confirms the possibility of using molecularly imprinted polymers as ionophores for organic ion recognition in potentiometric transduction.

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This article describes a finite element-based formulation for the statistical analysis of the response of stochastic structural composite systems whose material properties are described by random fields. A first-order technique is used to obtain the second-order statistics for the structural response considering means and variances of the displacement and stress fields of plate or shell composite structures. Propagation of uncertainties depends on sensitivities taken as measurement of variation effects. The adjoint variable method is used to obtain the sensitivity matrix. This method is appropriated for composite structures due to the large number of random input parameters. Dominant effects on the stochastic characteristics are studied analyzing the influence of different random parameters. In particular, a study of the anisotropy influence on uncertainties propagation of angle-ply composites is carried out based on the proposed approach.

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The interlaminar fracture toughness in pure mode II (GIIc) of a Carbon-Fibre Reinforced Plastic (CFRP) composite is characterized experimentally and numerically in this work, using the End-Notched Flexure (ENF) fracture characterization test. The value of GIIc was extracted by a new data reduction scheme avoiding the crack length measurement, named Compliance-Based Beam Method (CBBM). This method eliminates the crack measurement errors, which can be non-negligible, and reflect on the accuracy of the fracture energy calculations. Moreover, it accounts for the Fracture Process Zone (FPZ) effects. A numerical study using the Finite Element Method (FEM) and a triangular cohesive damage model, implemented within interface finite elements and based on the indirect use of Fracture Mechanics, was performed to evaluate the suitability of the CBBM to obtain GIIc. This was performed comparing the input values of GIIc in the numerical models with the ones resulting from the application of the CBBM to the numerical load-displacement (P-) curve. In this numerical study, the Compliance Calibration Method (CCM) was also used to extract GIIc, for comparison purposes.

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Considering tobacco smoke as one of the most health-relevant indoor sources, the aim of this work was to further understand its negative impacts on human health. The specific objectives of this work were to evaluate the levels of particulate-bound PAHs in smoking and non-smoking homes and to assess the risks associated with inhalation exposure to these compounds. The developed work concerned the application of the toxicity equivalency factors approach (including the estimation of the lifetime lung cancer risks, WHO) and the methodology established by USEPA (considering three different age categories) to 18 PAHs detected in inhalable (PM10) and fine (PM2.5) particles at two homes. The total concentrations of 18 PAHs (ΣPAHs) was 17.1 and 16.6 ng m−3 in PM10 and PM2.5 at smoking home and 7.60 and 7.16 ng m−3 in PM10 and PM2.5 at non-smoking one. Compounds with five and six rings composed the majority of the particulate PAHs content (i.e., 73 and 78 % of ΣPAHs at the smoking and non-smoking home, respectively). Target carcinogenic risks exceeded USEPA health-based guideline at smoking home for 2 different age categories. Estimated values of lifetime lung cancer risks largely exceeded (68–200 times) the health-based guideline levels at both homes thus demonstrating that long-term exposure to PAHs at the respective levels would eventually cause risk of developing cancer. The high determined values of cancer risks in the absence of smoking were probably caused by contribution of PAHs from outdoor sources.

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This paper presents the results of an exploratory study on knowledge management in Portuguese organizations. The study was based on a survey sent to one hundred of the main Portuguese organizations, in order to know their current practices relating knowledge management systems (KMS) usage and intellectual capital (IC) measurement. With this study, we attempted to understand what are the main tools used to support KM processes and activities in the organizations, and what metrics are pointed by organizations to measure their knowledge assets.

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Adhesive bonding is an excellent alternative to traditional joining techniques such as welding, mechanical fastening or riveting. However, there are many factors that have to be accounted for during joint design to accurately predict the joint strength. One of these is the adhesive layer thickness (tA). Most of the results are for epoxy structural adhesives, tailored to perform best with small values of tA, and these show that the lap joint strength decreases with increase of tA (the optimum joint strength is usually obtained with tA values between 0.1 and 0.2 mm). Recently, polyurethane adhesives were made available in the market, designed to perform with larger tA values, and whose fracture behaviour is still not studied. In this work, the effect of tA on the tensile fracture toughness (View the MathML source) of a bonded joint is studied, considering a novel high strength and ductile polyurethane adhesive for the automotive industry. This work consists on the fracture characterization of the bond by a conventional and the J-integral techniques, which accurately account for root rotation effects. An optical measurement method is used for the evaluation of crack tip opening (δn) and adherends rotation at the crack tip (θo) during the test, supported by a Matlab® sub-routine for the automated extraction of these parameters. As output of this work, fracture data is provided in traction for the selected adhesive, enabling the subsequent strength prediction of bonded joints.