172 resultados para impedância bioelétrica


Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Engenharia Elétrica - FEIS

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Engenharia Mecânica - FEIS

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Biotecnologia - IQ

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Química - IQ

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Engenharia Elétrica - FEB

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Química - IQ

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The glassy carbon is a material with a huge technological evolution. Due to its lightness, biocompatibility and their thermal and electrical properties this material finds applications in several industrial fields such as electronics, medical, aerospace and chemical. In order to explore the conductive properties of glassy carbon for use as modified electrodes, the present work aims the processing of monolithic and reticulated glassy carbon with colloidal copper for use in electrochemical applications. First, the best parameters for the cure of furfuryl alcohol resin doped were established through viscosimetry measurements and pressurized differential scanning calorimetry. The analysis of the micrographs of the cured resins show that copper concentrations above 3% weight, generate higher porosity in the material. The characterizations of the monolithic and reticulated glassy carbon resulting from carbonization were performed by scanning electron microscopy (SEM), Raman and Electrochemical impedance spectroscopy, and although it was not possible to detect the presence of copper by SEM, the influence of these particles have been observed by Raman and FT-IR spectra and electrochemical behavior of the material. The decrease in conductivity of monolithic and reticulated glassy carbon in the presence of copper may be related to the defects caused by the presence of copper in the structure of the material.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The materials designed to be used in electroluminescent (EL) devices construction are studied and improved since 1936. Great interests in the development of this kind of devices are mainly due to its low power consumption, flexibility, low cost and easy processing. One class of ELs devices with these characteristics are produced by employing a organic-polymeric/inorganic composite from a conductive polymer blend and an inorganic electroluminescent material (Zn2SiO4:Mn) dispersed in the polymeric matrix. This kind of device operates in d.c. or a.c. potentials, with EL of hundreds candela in the green region of the visible spectrum. However, few studies on the light emission were performed for these devices. In order to characterize devices made from composites, in this work is proposed a method of characterizing the electroluminescence associated with the impedance spectroscopy technique. To implement the technique of impedance spectroscopy was employ an experimental setup consisting of a source of a.c. voltage, an oscilloscope, and a reference resistor. Associated with this system, was use a photo diode and an analog electrometer to characterize the emitted light signal from the sample. The system was implemented allows characterization by impedance spectroscopy in the frequency range from 0.2 Hz up to 2 MHz and voltage amplitudes of 5 mV up to 20 kV. This system permits, at the same time, measurement of the RMS value of the luminance for devices in frequency range from 20 Hz up to 2 MHz. To test the system efficiency, an EL device was characterized showing analogous results to those reported in literature. By doing this, was demonstrated the efficiency of the system for electroluminescence characterization associated with the electrical characterization by impedance spectroscopy, for devices

Relevância:

10.00% 10.00%

Publicador:

Resumo:

A combinação de polímeros com nanopartículas de metais nobres resultam na formação de filmes finos, que podem ser utilizado na fabricação de nanosensores. Esses filmes finos possuem propriedades exclusivas, que causam ressonância plasmônica de superfície pela mudança conformacional dos mesmos. Essa variação conformacional é causada pela interação com analito ou por estímulo externo, podendo ser analisada por espectroscopia de absorção na região do UV-vis. Este simples e econômico meio de transdução do sinal apresenta-se como uma ferramenta bastante promissora, e se combinado com a alta seletividade encontrada em reações biológicas, torna-se ainda mais promissora no desenvolvimento de sensores. Os esforços desse projeto foram concentrados para o desenvolvimento dos sensores que respondam a estímulos externo e baseado na utilização de polímeros escovas. Este trabalho de conclusão de curso foi baseada na produção de sensores nanoplasmônicos, que na presença de fatores externos causam modificação estrutural dos filmes finos poliméricos depositados sobre um substrato e dão um resposta altamente seletiva. As mudanças conduzirão à geração de sinais ópticos ou eletroquímico, que serão medidos por transmissão de ressonância plasmônica de superfície ou via eletroquímica. Foram realizados experimentos de voltametria cíclica e impedância eletroquímica em pH=3 para avaliar a capacidade de eletródica deste material. Também foram efetuados experimentos por espectrofotometria de absorção na região de ultravioleta-visível em pHs variando de 3 a 7 para se analisar o efeito plasmônico do material. Pode-se notar que em pH mais ácidos o polímero se mostrou mais condutor e de acordo com a literatura este efeito é causado pela expansão polimérica que deixa o mesmo em seu estado ativo ON (expandido). Já em pH mais básicos os polímeros demonstraram um comportamento inverso por os mesmo se contraem, ...

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The teaching of hearing physiology requires an knowledge integration of Human Anatomy, Biophysics, more precisely Bioacoustics and Bioelectrogenesis, as well as Neurophysiology. Students present difficulty to build knowledge about functional mechanisms of sound conduction and sensory transduction, especially if the elements are not visible forms, as the middle and inner ear structures. To make the teaching about hearing physiology and sensory perception easier, was produced a set of didactical materials about the subject. At first, a resin model that faithfully describes the anatomical relationship of the ossicles with the tympanic membrane was developed. Subsequently, a second model that, besides illustrates the mechanism of acoustic impedance overcoming, also reveals how acoustic sensorial transduction occurs in inner ear, was designed and produced. In the third didactical model, are visualized, through students interaction, areas of the cerebral cortex that interpret the different sensory modalities. In addition, were created three educational videos about hearing problems and a site on Human Hearing Physiology, available on Institute of Biosciences website. The results of this course conclusion monograph are presented in the form of articles that were submitted to Journal Physics in the School and the Journal of the Nucleus of Teaching

Relevância:

10.00% 10.00%

Publicador:

Resumo:

An experimental study in dogs was accomplished to evaluate impedances at the acupuncture points and the relative false points. According to the physics concepts and the Ohm’ Law, an electrical circuit was set up to determine the impedance. This circuit was introduced into three experiments in anesthetized dogs with needles at selected points. In the first two experiments, was applied an alternating tension with 200Hz frequency in the circuit and, in the last experiment, the frequency was increased to 10kHz, the tensions and electrical currents were measured between every pair of points for the all experiments. The impedances were calculated with the values obtained by experiments. The analysis of impedance values indicated that there is a coherent relation between the results and the applied frequencies in circuit, so just at high frequency condition admits the correct measurement of total impedance, therefore the last experiment gave the result which agreed with the theory, that the impedances at acupuncture points are lower than the impedances at false points

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Pós-graduação em Engenharia Mecânica - FEB

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Distribution networks are formed by long lines that carry electricity substations to homes and industries. These lines have associated impedance and depending on operating conditions of the network these impedances may vary. This paper provides a detailed analysis of the effects observed in studies of voltage drop, short circuit and electrical losses, when considered the drivers sequence impedances used in primary distribution network at different temperatures. Therefore, it is initially presented a calculation methodology and details the factors that influence the final values. The methodology presented tackles in a practical way the main factors that directly or indirectly influence the values of the impedances as an emblematic example and will be properly dealt with throughout the paper is the effect of temperature on the values of the sequence impedances. More specifically is dealt with the case of XLPE cables protected, by having a higher maximum operating temperature than the operating temperature of the network. The effects observed in the power flow generated when considering the impedance values at both temperatures were analyzed. The impedance drivers tend to increase with increasing temperature. Thus the impedance of the conductor XLPE protected will tend to be greater for the maximum operating temperature for which the operating temperature of the network, resulting in greater voltage drop and higher electrical losses