6 resultados para 108-661
em Instituto Politécnico do Porto, Portugal
Resumo:
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.
Resumo:
Molecularly imprinted polymers (MIP) were used as potentiometric sensors for the selective recognition and determination of chlormequat (CMQ). They were produced after radical polymerization of 4-vinyl pyridine (4-VP) or methacrylic acid (MAA) monomers in the presence of a cross-linker. CMQwas used as template. Similar nonimprinted (NI) polymers (NIP) were produced by removing the template from reaction media. The effect of kind and amount of MIP or NIP sensors on the potentiometric behavior was investigated. Main analytical features were evaluated in steady and flow modes of operation. The sensor MIP/4-VP exhibited the best performance, presenting fast near-Nernstian response for CMQover the concentration range 6.2×10-6 – 1.0×10-2 mol L-1 with detection limits of 4.1×10-6 mol L-1. The sensor was independent from the pH of test solutions in the range 5 – 10. Potentiometric selectivity coefficients of the proposed sensors were evaluated over several inorganic and organic cations. Results pointed out a good selectivity to CMQ. The sensor was applied to the potentiometric determination of CMQin commercial phytopharmaceuticals and spiked water samples. Recoveries ranged 96 to 108.5%.
Resumo:
In this work, tin selenide thin films (SnSex) were grown on soda lime glass substrates by selenization of dc magnetron sputtered Sn metallic precursors. Selenization was performed at maximum temperatures in the range 300 °C to 570 °C. The thickness and the composition of the films were analysed using step profilometry and energy dispersive spectroscopy, respectively. The films were structurally and optically investigated by X-ray diffraction, Raman spectroscopy and optical transmittance and reflectance measurements. X-Ray diffraction patterns suggest that for temperatures between 300 °C and 470 °C, the films are composed of the hexagonal-SnSe2 phase. By increasing the temperature, the films selenized at maximum temperatures of 530 °C and 570 °C show orthorhombic-SnSe as the dominant phase with a preferential crystal orientation along the (400) crystallographic plane. Raman scattering analysis allowed the assignment of peaks at 119 cm−1 and 185 cm−1 to the hexagonal-SnSe2 phase and those at 108 cm−1, 130 cm−1 and 150 cm−1 to the orthorhombic-SnSe phase. All samples presented traces of condensed amorphous Se with a characteristic Raman peak located at 255 cm−1. From optical measurements, the estimated band gap energies for hexagonal-SnSe2 were close to 0.9 eV and 1.7 eV for indirect forbidden and direct transitions, respectively. The samples with the dominant orthorhombic-SnSe phase presented estimated band gap energies of 0.95 eV and 1.15 eV for indirect allowed and direct allowed transitions, respectively.
Resumo:
Ancillary services represent a good business opportunity that must be considered by market players. This paper presents a new methodology for ancillary services market dispatch. The method considers the bids submitted to the market and includes a market clearing mechanism based on deterministic optimization. An Artificial Neural Network is used for day-ahead prediction of Regulation Down, regulation-up, Spin Reserve and Non-Spin Reserve requirements. Two test cases based on California Independent System Operator data concerning dispatch of Regulation Down, Regulation Up, Spin Reserve and Non-Spin Reserve services are included in this paper to illustrate the application of the proposed method: (1) dispatch considering simple bids; (2) dispatch considering complex bids.
Resumo:
Wind resource evaluation in two sites located in Portugal was performed using the mesoscale modelling system Weather Research and Forecasting (WRF) and the wind resource analysis tool commonly used within the wind power industry, the Wind Atlas Analysis and Application Program (WAsP) microscale model. Wind measurement campaigns were conducted in the selected sites, allowing for a comparison between in situ measurements and simulated wind, in terms of flow characteristics and energy yields estimates. Three different methodologies were tested, aiming to provide an overview of the benefits and limitations of these methodologies for wind resource estimation. In the first methodology the mesoscale model acts like “virtual” wind measuring stations, where wind data was computed by WRF for both sites and inserted directly as input in WAsP. In the second approach, the same procedure was followed but here the terrain influences induced by the mesoscale model low resolution terrain data were removed from the simulated wind data. In the third methodology, the simulated wind data is extracted at the top of the planetary boundary layer height for both sites, aiming to assess if the use of geostrophic winds (which, by definition, are not influenced by the local terrain) can bring any improvement in the models performance. The obtained results for the abovementioned methodologies were compared with those resulting from in situ measurements, in terms of mean wind speed, Weibull probability density function parameters and production estimates, considering the installation of one wind turbine in each site. Results showed that the second tested approach is the one that produces values closest to the measured ones, and fairly acceptable deviations were found using this coupling technique in terms of estimated annual production. However, mesoscale output should not be used directly in wind farm sitting projects, mainly due to the mesoscale model terrain data poor resolution. Instead, the use of mesoscale output in microscale models should be seen as a valid alternative to in situ data mainly for preliminary wind resource assessments, although the application of mesoscale and microscale coupling in areas with complex topography should be done with extreme caution.