984 resultados para Molecular design


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A deficiência auditiva como déficit sensorial mais comum tem dentre suas diferentes etiologias as alterações genéticas. Assim, é importante que a investigação audiológica se associe à busca do diagnóstico etiológico. OBJETIVO: Relatar o perfil audiológico e genético de três irmãos portadores de deficiência auditiva neurossensorial não-sindrômica. MATERIAL E MÉTODO: Estudo de caso de três irmãos, do sexo masculino, com 3, 5 e 16 anos, respectivamente, submetidos à avaliação audiológica comportamental e eletrofisiológica, e estudo molecular. RESULTADOS: Os achados audiológicos mostraram: audiometria do tipo neurossensorial, bilateral, simétrica, de grau moderado a moderadamente severo e configuração descendente acentuada. EOAT e EOAPD ausentes nos dois irmãos mais novos. PEATE compatível com perda auditiva moderadamente severa a severa. Presença do P300 com latências dentro da normalidade bilateralmente no irmão mais velho. Os achados do exame molecular mostraram que as duas crianças mais novas eram heterozigotos para a mutação 35delG no gene GJB2 e o mais velho não apresentava essa mutação. CONCLUSÃO: A associação das avaliações fonoaudiológicas e genéticas permite o diagnóstico etiológico de perdas auditivas que à primeira vista são semelhantes, mas que não obedecem à mesma estrutura genética. Os estudos moleculares devem ser abrangentes, evitando diagnósticos precipitados que prejudiquem o aconselhamento genético.

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Improvement of the environmental performance of processes and products is a common objective in industry, and has been receiving increased attention in recent years. The main objective of this work is to evaluate the potential environmental impact of two bedding products, a polyurethane foam mattress (PFM) and a pocket spring mattress (PSM). These two types are the most common mattresses used in Europe. A Life Cycle Assessment (LCA) shows that the PFM has a higher environmental impact than the PSM. For both products the main cause of environmental impact is the manufacturing process, respectively the polyurethane foam block moulding process for the PFM, and the pocket spring nucleus process for the PSM. A scenario analysis shows the possibility of reducing the environmental impact of the products’ life cycle using an alternative End-of-Life scenario, resorting to incineration rather than landfill. Two strategies were also studied in order to reduce the environmental impact of the PFM: (1) reutilization of foam that was sent to the waste system management, and (2) a 20% weight reduction of the polyurethane foam. The second strategy has proven to be the most effective.

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Experimental scratch resistance testing provides two numbers: the penetration depth Rp and the healing depth Rh. In molecular dynamics computer simulations, we create a material consisting of N statistical chain segments by polymerization; a reinforcing phase can be included. Then we simulate the movement of an indenter and response of the segments during X time steps. Each segment at each time step has three Cartesian coordinates of position and three of momentum. We describe methods of visualization of results based on a record of 6NX coordinates. We obtain a continuous dependence on time t of positions of each of the segments on the path of the indenter. Scratch resistance at a given location can be connected to spatial structures of individual polymeric chains.

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Indentation tests are used to determine the hardness of a material, e.g., Rockwell, Vickers, or Knoop. The indentation process is empirically observed in the laboratory during these tests; the mechanics of indentation is insufficiently understood. We have performed first molecular dynamics computer simulations of indentation resistance of polymers with a chain structure similar to that of high density polyethylene (HDPE). A coarse grain model of HDPE is used to simulate how the interconnected segments respond to an external force imposed by an indenter. Results include the time-dependent measurement of penetration depth, recovery depth, and recovery percentage, with respect to indenter force, indenter size, and indentation time parameters. The simulations provide results that are inaccessible experimentally, including continuous evolution of the pertinent tribological parameters during the entire indentation process.

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Part replacement and repair is needed in structures with moving parts because of scratchability and wear. In spite of some accumulation of experimental evidence, scratch resistance is still not well understood. We have applied molecular dynamics to study scratch resistance of amorphous polymeric materials through computer simulations. As a first approach, a coarse grain model was created for high density polyethylene at the mesoscale. We have also extended the traditional approach and used real units rather than reduced units (to our knowledge, for the first time), which enable an improved quantification of simulation results. The obtained results include analysis of penetration depth, residual depth and recovery percentage related to indenter force and size. Our results show there is a clear effect from these parameters on the tribological properties. We also discuss a "crooked smile" effect on the scratched surface and the reasons for its appearance.

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This paper presents experimental results of the communication performance evaluation of a prototype ZigBee-based patient monitoring system commissioned in an in-patient floor of a Portuguese hospital (HPG – Hospital Privado de Guimar~aes). Besides, it revisits relevant problems that affect the performance of nonbeacon-enabled ZigBee networks. Initially, the presence of hidden-nodes and the impact of sensor node mobility are discussed. It was observed, for instance, that the message delivery ratio in a star network consisting of six wireless electrocardiogram sensor devices may decrease from 100% when no hidden-nodes are present to 83.96% when half of the sensor devices are unable to detect the transmissions made by the other half. An additional aspect which affects the communication reliability is a deadlock condition that can occur if routers are unable to process incoming packets during the backoff part of the CSMA-CA mechanism. A simple approach to increase the message delivery ratio in this case is proposed and its effectiveness is verified. The discussion and results presented in this paper aim to contribute to the design of efficient networks,and are valid to other scenarios and environments rather than hospitals.

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We have employed molecular dynamics simulations to study the behavior of virtual polymeric materials under an applied uniaxial tensile load. Through computer simulations, one can obtain experimentally inaccessible information about phenomena taking place at the molecular and microscopic levels. Not only can the global material response be monitored and characterized along time, but the response of macromolecular chains can be followed independently if desired. The computer-generated materials were created by emulating the step-wise polymerization, resulting in self-avoiding chains in 3D with controlled degree of orientation along a certain axis. These materials represent a simplified model of the lamellar structure of semi-crystalline polymers,being comprised of an amorphous region surrounded by two crystalline lamellar regions. For the simulations, a series of materials were created, varying i) the lamella thickness, ii) the amorphous region thickness, iii) the preferential chain orientation, and iv) the degree of packing of the amorphous region. Simulation results indicate that the lamella thickness has the strongest influence on the mechanical properties of the lamella-amorphous structure, which is in agreement with experimental data. The other morphological parameters also affect the mechanical response, but to a smaller degree. This research follows previous simulation work on the crack formation and propagation phenomena, deformation mechanisms at the nanoscale, and the influence of the loading conditions on the material response. Computer simulations can improve the fundamental understanding about the phenomena responsible for the behavior of polymeric materials, and will eventually lead to the design of knowledge-based materials with improved properties.

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Nesta comunicação apresentamos as metodologias utilizadas no trabalho de documentação participativa que está a ser desenvolvido no programa Manobras no Porto, no âmbito do projeto de investigação “The Museum of All: Práticas de Comunicação Institucional num Mundo de Redes Participativas”. Numa altura em que nos deparamos com grandes transformações económicas, sociais e culturais nas nossas sociedades, acreditamos que o trabalho de construção de um arquivo documental sobre os aspectos que caracterizam uma determinada cultura local, visando proteger o seu património imaterial, tornar-se-á tão profícuo, quanto maior for o envolvimento dos próprios membros dessa cultura, no processo. No caso de estudo que aqui apresentamos, pretendemos compreender de que modo é que a documentação audiovisual participativa poderá vir a contribuir para o reforço da capacidade coletiva e envolvimento dos cidadãos locais no processo de revitalização social, económica e cultural do Centro Histórico do Porto. Depois de uma primeira fase de trabalho de campo de auscultação, levada a cabo através de um processo de observação participante, iremos implementar novas estratégias de recolha e criação coletiva com o objetivo de proporcionar um processo de documentação mais envolvente e participativo.

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In this paper we present the methodologies and preliminary conclusions of the first phase of the work of construction of audiovisual narratives related to the project “Manobras no Porto”, which will serve as a case study for the main research project entitled: “The Museum of All: Institutional Communication Practices in a Participatory Networked World”. The main objective of this research project is to understand how the use of collective and participatory creation of identities and narratives can contribute to get audiences engaged with cultural institutions and events. We intend to identify the effects and measure the dynamics of participation of audiences in the construction of audiovisual objects, and understand how these may influence the reconfiguration of the missions of the institutions and cultural projects, in the development of societies.