864 resultados para Policy reference framework


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This paper models an n-stage stacked Blumlein generator for bipolar pulses for various load conditions. Calculation of the voltage amplitudes in time domain at the load and between stages is described for an n-stage generator. For this, the reflection and transmission coefficients are mathematically modeled where impedance discontinuity occurs (i.e., at the junctions between two transmission lines). The mathematical model developed is assessed by comparing simulation results to experimental data from a two-stage Blumlein solid-state prototype.

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Collecting and transporting solid waste is a constant problem for municipalities and populations in general. Waste management should take into account the preservation of the environment and the reduction of costs. The goal with this paper is to address a real-life solid waste problem. The case reveals some general and specific characteristics which are not rare, but are not widely addressed in the literature. Furthermore, new methods and models to deal with sectorization and routing are introduced, which can be extended to other applications. Sectorization and routing are tackled following a two-phase approach. In the first phase, a new method is described for sectorization based on electromagnetism and Coulomb’s Law. The second phase addresses the routing problems in each sector. The paper addresses not only territorial division, but also the frequency with which waste is collected, which is a critical issue in these types of applications. Special characteristics related to the number and type of deposition points were also a motivation for this work. A new model for a Mixed Capacitated Arc Routing Problem with Limited Multi-Landfills is proposed and tested in real instances. The computational results achieved confirm the effectiveness of the entire approach.

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Sectorization means dividing a whole into parts (sectors), a procedure that occurs in many contexts and applications, usually to achieve some goal or to facilitate an activity. The objective may be a better organization or simplification of a large problem into smaller sub-problems. Examples of applications are political districting and sales territory division. When designing/comparing sectors some characteristics such as contiguity, equilibrium and compactness are usually considered. This paper presents and describes new generic measures and proposes a new measure, desirability, connected with the idea of preference.

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RESUMO: INTRODUÇÃO E OBJETIVOS: Trata-se de estudo transversal descritivo, em etapa única, cujo objetivo foi traçar o perfil dos beneficiários do Programa De volta para casa (PVC), munícipes de Belo Horizonte / Minas Gerais / Brasil, quanto ás habilidades de vida independente (autonomia) e comportamento social. MÉTODO: O universo inicial de beneficiários era de 210, em julho de 2013, data de aprovação do protocolo. Por questões operacionais, o público-alvo considerado e estudado foi de 121 beneficiários. Foram utilizados como instrumentos as escalas Independent Living Skills Survey (ILSS) e Social Behavior Scale (SBS). Foi feita a análise estatística dos dados e os resultados foram analisados à luz do paradigma emergente de produção social da saúde. RESULTADOS: Considerando o total válido estudado de 121 beneficiários, os resultados revelaram que 82,4% apresentam diagnóstico de esquizofrenia e 62% eram do sexo masculino. Apresentaram média de idade de 57,9 anos e tempo médio de internação psiquiátrica antes de inserção no programa de 30,9 anos. Quanto à autonomia, os resultados da ILSS revelaram uma média global de 1,6 sendo que os melhores índices foram alcançados nos subitens Cuidados pessoais (2,69), Alimentação (2,53), Saúde (2,07) e os piores índices foram encontrados nos subitens Emprego (0,47), Lazer (0,86) e Preparo e armazenamento de alimentos (0,98). Quanto aos problemas no comportamento social, os resultados da SBS revelaram uma média global de 0,69 sendo que as áreas de maiores dificuldade foram: Rir ou falar sozinho (40,5%), Incoerência da fala (29%), Auto-cuidado precário e Pouca atividade (ambas com 25,6% cada). As áreas de menores dificuldades, ainda quanto à SBS, foram: Idéias suicidas 92,4%), Comportamento sexual inapropriado (7,4%) e Depressão (9,9%). CONCLUSÃO: Concluiu-se que o perfil dos beneficiários do PVC, quanto à autonomia e aos problemas de comportamento social, aponta para médias relativamente baixas. O desafio para o enfrentamento desta questão deverá considerar estratégias múltiplas de ação à luz do paradigma emergente de saúde e da reabilitação psicossocial que priorize o empoderamento e protagonismo do beneficiário. É necessário o desenvolvimento de outros estudos que ampliem o evidenciamento desta clientela no que tange às suas reais necessidades e potencialidades para que se possa efetivar o ajuste necessário para a legitimação do programa enquanto ação efetivo-eficaz de promoção de saúde.-------------ABSTRACT: descriptive cross-sectional study in a single stage was conducted to investigate independent living skills and social behavior profile of beneficiaries of Programa De Volta para casa (PVC) who live in Belo Horizonte/Minas Gerais/Brazil. METHODS: The target population included a total of 210 individuals in july 2013, when the study was approved by the ethics committees. Because of operational reasons only 121 individuals were evaluated. Data were collected using the Independent Living Skills Survey (ILSS) and the Social Behavior Scale (SBS). Statistical results were analyzed considering as a reference framework both the emerging paradigm of social health production. RESULTS: Considering a sample of 121 individuals, results revealed that 82.4% were diagnosed with schizophrenia, and 62% were male. The mean age was 57.9 years and the mean stay in the psychiatric hospital prior to PVC was 30.9 years. Independent living skills measured by ILSS revealed a global mean of 1.6, and the best scores were in the following subscales: personal care (2.69), feeding (2.53) and health (2.07). On the other hand, the worst scores were in the following subscales: employment (0.47), leisure (0.86) and food preparation (0.98). Impairment of social functioning measured by SBS revealed a global mean of 0.69, and the best scores were in the following subscales: laughing and talking by itself (40.5%), conversation: incoherence (29%), appearance and personal hygiene (25.6%), and idleness (25.6%). The worst scores were in the following subscales: suicidal ideations (92.4%), improper sexual behavior (7.4%), and depression (9.9%). CONCLUSION: It was concluded that the profile of PVC beneficiaries, regarding their autonomy and their problems of social behavior, points to a relatively low average. The challenge of facing this issue should consider multiple strategies of intervention that prioritizes the empowerment and leadership of the beneficiaries, based on the emerging paradigm of health and psychosocial rehabilitation as a reference framework. The development of other studies that expand the evidencing of this target population with respect to their real needs and capabilities in order to carry out the necessary adjustments for the legitimacy of the program as effective health promotion action is required.

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Musculoskeletal diseases are one of the leading causes of disability worldwide. Tendon injuries are responsible for substantial morbidity, pain and disability. Tissue engineering strategies aim at translating tendon structure into biomimetic materials. The main goal of the present study is to develop microengineered hydrogel fibers through the combination of microfabrication and chemical interactions between oppositely charged polyelectrolytes. For this, methacrylated hyaluronic acid (MeHA) and chondroitin sulfate (MeCS) were combined with chitosan (CHT). Hydrogel fibers were obtained by injecting polymer solutions (either MeHA or MeHA/MeCS and CHT) in separate microchannels that join at a y-junction, with the materials interacting upon contact at the interface. To evaluate cell behavior, human tendon derived cells (hTDCs) were isolated from tendon surplus samples during orthopedic surgeries and seeded on top of the fibers. hTDCs adhered to the surface of the fibers, remaining viable, and were found to be expressing CD44, the receptor for hyaluronic acid. The synthesis of hydrogel fibers crosslinkable through both physical and chemical mechanisms combined with microfabrication technology allows the development of biomimetic structures with parallel fibers being formed towards the replication of tendon tissue architecture.

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Mesenchymal stem cells (MSCs) are considered to be â â immunologically privileged.â â In a previous work when human adipose tissue-derived stem cells (hASCs) subcutaneously implanted in mice we did not identify an adverse host response1. Recently, it was shown that tissue regeneration could benefit from the polarization of M2 macrophages subpopulations 2. In this study we hypothesised that undifferentiated hASCs and derived osteoblasts and chondrocytes are able to switch murine bone marrow-derived macrophages (mBMMÃ s) into M2 phenotype, aiding tissue regeneration. Murine BMMÃ s were plated in direct contact with undifferentiated and osteo or chondro-differentiated hASCs for 4 h, 10 h, 24 h and 72 h. The cytokine profile was analysed by qRT-PCR and the surface markers were detected by flow cytometry. The direct interaction of both cell types was observed by time lapse microscopy. The results showed that mBMMÃ s polarized after contacting tissue culture polystyrene. This M2 phenotype was maintained along the experiment in direct contact with both undifferentiated and osteo or chondro-differentiated hASCs. This was confirmed by the expression of IL-1, IL-10, IL-4, TNF-a and IFN-g (genetic profile) and surface markers (CD206 + + , CD336 + + , MHC II + and CD86 + + ) detection. These data suggest the potential of hASCs in contemporary xenogenic tissue engineering and regenerative medicine strategies, as well as host immune system modulation in autoimmune diseases. 

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Supplementary information available at: http://www.rsc.org/suppdata/c5/gc/c5gc02231b/c5gc02231b1.pdf

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Dissertação de mestrado em Human Engineering

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The influence of the hip joint formulation on the kinematic response of the model of human gait is investigated throughout this work. To accomplish this goal, the fundamental issues of the modeling process of a planar hip joint under the framework of multibody systems are revisited. In particular, the formulations for the ideal, dry, and lubricated revolute joints are described and utilized for the interaction of femur head inside acetabulum or the hip bone. In this process, the main kinematic and dynamic aspects of hip joints are analyzed. In a simple manner, the forces that are generated during human gait, for both dry and lubricated hip joint models, are computed in terms of the system’s state variables and subsequently introduced into the dynamics equations of motion of the multibody system as external generalized forces. Moreover, a human multibody model is considered, which incorporates the different approaches for the hip articulation, namely ideal joint, dry, and lubricated models. Finally, several computational simulations based on different approaches are performed, and the main results presented and compared to identify differences among the methodologies and procedures adopted in this work. The input conditions to the models correspond to the experimental data capture from an adult male during normal gait. In general, the obtained results in terms of positions do not differ significantly when the different hip joint models are considered. In sharp contrast, the velocity and acceleration plotted vary significantly. The effect of the hip joint modeling approach is clearly measurable and visible in terms of peaks and oscillations of the velocities and accelerations. In general, with the dry hip model, intra-joint force peaks can be observed, which can be associated with the multiple impacts between the femur head and the cup. In turn, when the lubricant is present, the system’s response tends to be smoother due to the damping effects of the synovial fluid.

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The design of self-standing multilayered structures based on biopolymers has been attracting increasing interest due to their potential in the biomedical field. However, their use has been limited due to their gel-like properties. Herein, we report the combination of covalent and ionic cross-linking, using natural and non-cytotoxic cross-linkers, such as genipin and calcium chloride (CaCl2). Combining both cross-linking types the mechanical properties of the multilayers increased and the water uptake ability decreased. The ionic cross-linking of multilayered chitosan (CHI)â alginate (ALG) films led to freestanding membranes with multiple interesting properties, such as: improved mechanical strength, calcium-induced adhesion and shape memory ability. The use of CaCl2 also offered the possibility of reversibly switching all of these properties by simple immersion in a chelate solution. We attribute the switch-ability of the mechanical properties, shape memory ability and the propensity for induced-adhesion to the ionic cross-linking of the multilayers. These findings suggested the potential of the developed polysaccharide freestanding membranes in a plethora of research fields, including in biomedical and biotechnological fields.

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Natural deep eutectic solvents (NADES) have shown to be promising sustainable media for a wide range of applications. Nonetheless, very limited data is available on the properties of these solvents. A more comprehensive body of data on NADES is required for a deeper understanding of these solvents at molecular level, which will undoubtedly foster the development of new applications. NADES based on choline chloride, organic acids, amino acids and sugars were prepared, and their density, thermal behavior, conductivity and polarity were assessed, for different NADES compositions. The NADES studied can be stable up to 170 Â°C, depending on their composition. The thermal characterization revealed that all the NADES are glass formers and some, after water removal, exhibit crystallinity. The morphological characterization of the crystallizable materials was performed using polarized optical microscopy which also provided evidence of homogeneity/phase separation. The conductivity of the NADES was also assessed from 0 to 40 Â°C. The more polar, organic acid-based NADES presented the highest conductivities. The conductivity dependence on temperature was well described by the Vogelâ Fulcherâ Tammann equation for some of the NADES studied.

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Among the various possible embodiements of Advanced Therapies and in particular of Tissue Engineering the use of temporary scaffolds to regenerate tissue defects is one of the key issues. The scaffolds should be specifically designed to create environments that promote tissue development and not merely to support the maintenance of communities of cells. To achieve that goal, highly functional scaffolds may combine specific morphologies and surface chemistry with the local release of bioactive agents. Many biomaterials have been proposed to produce scaffolds aiming the regeneration of a wealth of human tissues. We have a particular interest in developing systems based in nanofibrous biodegradable polymers1,2. Those demanding applications require a combination of mechanical properties, processability, cell-friendly surfaces and tunable biodegradability that need to be tailored for the specific application envisioned. Those biomaterials are usually processed by different routes into devices with wide range of morphologies such as biodegradable fibers and meshes, films or particles and adaptable to different biomedical applications. In our approach, we combine the temporary scaffolds populated with therapeutically relevant communities of cells to generate a hybrid implant. For that we have explored different sources of adult and also embryonic stem cells. We are exploring the use of adult MSCs3, namely obtained from the bone marrow for the development autologous-based therapies. We also develop strategies based in extra-embryonic tissues, such as amniotic fluid (AF) and the perivascular region of the umbilical cord4 (Whartonâ s Jelly, WJ). Those tissues offer many advantages over both embryonic and other adult stem cell sourcess. These tissues are frequently discarded at parturition and its extracorporeal nature facilitates tissue donation by the patients. The comparatively large volume of tissue and ease of physical manipulation facilitates the isolation of larger numbers of stem cells. The fetal stem cells appear to have more pronounced immunomodulatory properties than adult MSCs. This allogeneic escape mechanism may be of therapeutic value, because the transplantation of readily available allogeneic human MSCs would be preferable as opposed to the required expansion stage (involving both time and logistic effort) of autologous cells. Topics to be covered: This talk will review our latest developments of nanostructured-based biomaterials and scaffolds in combination with stem cells for bone and cartilage tissue engineering.

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Tese de Doutoramento em Engenharia Civil

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Documento submetido para revisão pelos pares. A publicar em Journal of Parallel and Distributed Computing. ISSN 0743-7315