3 resultados para Feedback sensory
em Instituto Politécnico do Porto, Portugal
Resumo:
Using low cost portable devices that enable a single analytical step for screening environmental contaminants is today a demanding issue. This concept is here tried out by recycling screen-printed electrodes that were to be disposed of and by choosing as sensory element a low cost material offering specific response for an environmental contaminant. Microcystins (MCs) were used as target analyte, for being dangerous toxins produced by cyanobacteria released into water bodies. The sensory element was a plastic antibody designed by surface imprinting with carefully selected monomers to ensure a specific response. These were designed on the wall of carbon nanotubes, taking advantage of their exceptional electrical properties. The stereochemical ability of the sensory material to detect MCs was checked by preparing blank materials where the imprinting stage was made without the template molecule. The novel sensory material for MCs was introduced in a polymeric matrix and evaluated against potentiometric measurements. Nernstian response was observed from 7.24 × 10−10 to 1.28 × 10−9 M in buffer solution (10 mM HEPES, 150 mM NaCl, pH 6.6), with average slopes of −62 mVdecade−1 and detection capabilities below 1 nM. The blank materials were unable to provide a linear response against log(concentration), showing only a slight potential change towards more positive potentials with increasing concentrations (while that ofthe plastic antibodies moved to more negative values), with a maximum rate of +33 mVdecade−1. The sensors presented good selectivity towards sulphate, iron and ammonium ions, and also chloroform and tetrachloroethylene (TCE) and fast response (<20 s). This concept was successfully tested on the analysis of spiked environmental water samples. The sensors were further applied onto recycled chips, comprehending one site for the reference electrode and two sites for different selective membranes, in a biparametric approach for “in situ” analysis.
Resumo:
A novel artificial antibody for troponin T (TnT) was synthesized by molecular imprint (MI) on the surface of multiwalled carbon nanotubes (MWCNT). This was done by attaching TnT to the MWCNT surface, and filling the vacant spaces by polymerizing under mild conditions acrylamide (monomer) in N,N′-methylenebisacrylamide (cross-linker) and ammonium persulphate (initiator). After removing the template, the obtained biomaterial was able to rebind TnT and discriminate it among other interfering species. Stereochemical recognition of TnT was confirmed by the non-rebinding ability displayed by non-imprinted (NI) materials, obtained by imprinting without a template. SEM and FTIR analysis confirmed the surface modification of the MWCNT. The ability of this biomaterial to rebind TnT was confirmed by including it as electroactive compound in a PVC/plasticizer mixture coating a wire of silver, gold or titanium. Anionic slopes of 50 mV decade−1 were obtained for the gold wire coated with MI-based membranes dipped in HEPES buffer of pH 7. The limit of detection was 0.16 μg mL−1. Neither the NI-MWCNT nor the MWCNT showed the ability to recognize the template. Good selectivity was observed against creatinine, sucrose, fructose, myoglobin, sodium glutamate, thiamine and urea. The sensor was tested successfully on serum samples. It is expected that this work opens new horizons on the design of new artificial antibodies for complex protein structures.
Resumo:
Introdução:O envelhecimento influencia negativamente o controlo postural, diminuindo a capacidade de recuperar o equilíbrio após uma perturbação externa e consequentemente aumento do risco de queda nos adultos mais velhos Objetivo(s):Verificar a influência do treino do passo rápido voluntário nas estratégias de feedforward e feedback em adultos mais velhos aquando o stepping anterior e posterior, bem como o timing e sequência de ativação muscular, ajustes posturais antecipatórios (APA) e compensatórios (APC1,APC2), comprimento, latência, velocidade média (VM) do passo e estratégias de passo lateral Métodos:19 participantes foram distribuídos aleatoriamente por dois grupos, o grupo experimental (n=9) e o grupo controlo (n=10), estudo randomizado controlado. Ambos foram submetidos a um protocolo de exercício físico durante 3 meses, 2 vezes/semana. Adicionalmente o grupo experimental (GE) realizou o treino do passo rápido voluntário bilateral nas várias direções. A resposta a um desequilíbrio postural em vários sentidos e consequente resposta de stepping anterior, posterior ou lateral foram avaliadas por meio de eletromiografia de superfície e por um sistema de imagem 3D Resultados: Na variação entre o momento inicial e final (M0-M1), durante o stepping anterior o GE, comparativamente ao GC, aumentou e diminuiu significativamente o timing do RF ipsilateral e GemM, respetivamente. Na variação do timing dos músculos BF ipsilateral e contralateral e TA contralateral, o GE diminuiu significativamente menos do que o GC. O GE aumentou significativamente o comprimento do stepping posterior do que o GC. Quanto à variação da latência observou-se que o GE aumentou significativamente do que o GC nos dois steppings. Na variação da VM, do stepping anterior, o GE diminuiu significativamente mais do que GC. O GE aumentou e diminuiu significativamente os APAS e os APC1 do que o GC no stepping posterior e anterior, respetivamente. Verificou-se que a estratégia mais frequente nos dois momentos e grupos foi a estratégia de stepping lateral direto Conclusão: A contínua prática do stepping rápido voluntário parece promover um melhor controlo postural sendo um importante exercício específico para prevenção de quedas