8 resultados para Colocação de implantes justacrestalmente
em Repositório Institucional da Universidade Estadual de São Paulo - UNESP
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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O Brasil é o terceiro maior consumidor de cosméticos no mundo, representando a segunda colocação em produtos de higiene capilar. Tal colocação está relacionada aos nossos padrões de cuidados estéticos capilares, que muitas vezes, provocam agressões físicas e químicas, deixando os cabelos danificados e quebradiços. Os condicionadores capilares tornam-se uma ferramenta interessante, devido aos inúmeros benefícios protetores oferecidos às superfícies dos fios. A presença de tensoativos catiônicos e álcoois graxos de cadeia longa, unidos à temperatura de fusão dos materiais, velocidade de agitação imposta e resfriamento adequado do produto, podem ser os responsáveis pela formação de cristais líquidos. Tais estruturas conferem estabilidade, viscosidade, melhorias na aparência estética e sensorial do produto e, devido a estas qualidades estão ganhando espaço no mercado cosmético. Assim, o objetivo do trabalho foi desenvolver e formular condicionadores capilares variando-se as concentrações e/ou os tensoativos catiônicos e álcoois graxos, visando obter estruturas líquido-cristalinas associadas aos condicionadores, através da técnica de microscopia de luz polarizada (MLP), caracterização das estruturas pela técnica de espalhamento de raios-X a baixo ângulo (SAXS) e analise do perfil de textura (TPA) das formulações. Foram manipuladas 14 emulsões O/A, variando-se os álcoois graxos de cadeia longa (16 a 18C) e ceras auto emulsionantes catiônicas. Os resultados da MLP foram, em sua maioria, positivos para a presença de estruturas na forma de cruz de malta. A técnica de SAXS confirmou os sistemas sugeridos pela MLP caracterizando a estrutura líquida cristalina do tipo lamelar. A TPA inferiu que a alta estabilidade física apresentada por estas emulsões, e seu particular desempenho no deslizamento dos cabelos, pode estar relacionada à presença de tal organização estrutural nas formulações...
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Surface treatments have been used to modify the surface of titanium alloys. The purpose of this study is to evaluate the surface of Ti-30Ta alloy after biomimetic approach associated to antibiotic incorporation. The ingots were obtained in arc melting furnace, treated and cold-worked by swaging. The surface treatment was performed in two steps: biomimetic treatment and antibiotic incorporation. For biomimetic treatment, first an alkaline treatment (NaOH 1M at 60ºC) was performed, followed by heat treatment and immersion in SBFx5 (Simulated Body Fluid) for a period of 24 hours. In order to incorporate the antibiotic, samples were immersed in a solution formed by drugs plus SBFx5 for 48 hours. The sample surfaces were analyzed by scanning electron microscopy (SEM), X-Ray diffraction (XRD), atomic force microscopy (AFM) and contact angle measurements. The release of antibiotic from coated implants was measured in phosphate buffer saline at pH 7.4 by using UV/VIS spectrometry. Results have shown changes on the surface after incorporating the drug, which is gradually co-precipitated with the Ca-P crystals, forming a uniform and rough layer on the metal surface
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With advances in health care, has been na increase of demand for material that could replace the functions of the human body parts, thus evolved biomedic prosthesis which today are responsible for the constant improvement of the quality of life. The Titanium alloys are widely used as implants due to its properties, like high mechanical resistance, biocompatibility and corrosion resistance, and the addition alloying elements like Zirconium, may improve some of those properties. Such properties are related to the microstructure and consequently to the type of processing performed. The purpose of this dissertation was to characterize the experimental alloy Ti15Zr after route of processsing and heat treatment in order to extend the knowledge about this alloy. The latter has been abtained by fusion of pure metals in a arc melting furnace with an inert argon atmosphere. The material has been homogenized in a tube furnace at 950ºC for 24h and cold worked by swaging, after that, bars with 10 mm of diameter were obtained by the process of rotary forging. The samples were solubilized at 900º C for 2 hours and quenched in water. After that, 4 samples were submitted to the aging, at 400º C, 450º C, 500º C and 550º C. The microstructure and phase analysis was done by optical microscopy and X-rays diffraction (XRD), the mechanical characterization was carried out by microhardness test and finally, evaluation of corrosion resistance of the alloy by electrochemical tests. The XRD and the optical microscopy made it possible to analyze that the heat treatment influenced the phase shifting from α to α', and probably affected the alloy hardness, at the first aged sample at 500º Chas been a sudden increase in the value of hardness, probably by appearance of omega phase, unwanted phase to the medical application duo to great fragility, and finally ... (Complete abstract click electronic access below)
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Pós-graduação em Bases Gerais da Cirurgia - FMB
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)