277 research outputs found

    Eroded dentin does not jeopardize the bond strength of adhesive restorative materials

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    This in vitro study evaluated the bond strength of adhesive restorative materials to sound and eroded dentin. Thirty-six bovine incisors were embedded in acrylic resin and ground to obtain flat buccal dentin surfaces. Specimens were randomly allocated in 2 groups: sound dentin (immersion in artificial saliva) and eroded dentin (pH cycling model - 3× / cola drink for 7 days). Specimens were then reassigned according to restorative material: glass ionomer cement (KetacTM Molar Easy Mix), resin-modified glass ionomer cement (VitremerTM) or adhesive system with resin composite (Adper Single Bond 2 + Filtek Z250). Polyethylene tubes with an internal diameter of 0.76 mm were placed over the dentin and filled with the material. The microshear bond test was performed after 24 h of water storage at 37ºC. The failure mode was evaluated using a stereomicroscope (400×). Bond strength data were analyzed with two-way ANOVA and Tukey's post hoc tests (α = 0.05). Eroded dentin showed bond strength values similar to those for sound dentin for all materials. The adhesive system showed the highest bond strength values, regardless of the substrate (p < 0.0001). For all groups, the adhesive/mixed failure prevailed. In conclusion, adhesive materials may be used in eroded dentin without jeopardizing the bonding quality. It is preferable to use an etch-and-rinse adhesive system because it shows the highest bond strength values compared with the glass ionomer cements tested

    Quantum dilaton gravity as a linear dilaton conformal field theory

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    A model of matter-coupled gravity in two dimensions is quantized. The crucial requirement for performing the quantization is the vanishing of the conformal anomaly, which is achieved by tuning a parameter in the interaction potential. The spectrum of the theory is determined by mapping the model first onto a field theory with a Liouville interaction, then onto a linear dilaton conformal field theory. In absence of matter fields a pure gauge theory with massless ground state is found; otherwise it is possible to minimally couple up to 11 matter scalar fields: in this case the ground state is tachyonic and the matter sector decouples, like the transverse oscillators in the critical bosonic string.Comment: 7 pages, RevTeX4 file. v2: some comments and one reference adde

    Grain Surface Models and Data for Astrochemistry

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    AbstractThe cross-disciplinary field of astrochemistry exists to understand the formation, destruction, and survival of molecules in astrophysical environments. Molecules in space are synthesized via a large variety of gas-phase reactions, and reactions on dust-grain surfaces, where the surface acts as a catalyst. A broad consensus has been reached in the astrochemistry community on how to suitably treat gas-phase processes in models, and also on how to present the necessary reaction data in databases; however, no such consensus has yet been reached for grain-surface processes. A team of ∼25 experts covering observational, laboratory and theoretical (astro)chemistry met in summer of 2014 at the Lorentz Center in Leiden with the aim to provide solutions for this problem and to review the current state-of-the-art of grain surface models, both in terms of technical implementation into models as well as the most up-to-date information available from experiments and chemical computations. This review builds on the results of this workshop and gives an outlook for future directions

    Centrality Behaviour of J/ψ\psi Production in Na50

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    The J/ψ\psi production in 158 A GeV Pb-Pb interactions is studied, in the dimuon decay channel, as a function of centrality, as measured with the electromagnetic or with the very forward calorimeters. After a first sharp variation at mid centrality, both patterns continue to fall down and exhibit a curvature change at high centrality values. This trend excludes any conventional hadronic model and is in agreement with a deconfined quark-gluon phase scenario. We report also preliminary results on the measured charged multiplicity, as given by a dedicated detector.Comment: 5 pages, 7 figures (in eps) talk given at XXXI International Symposium on Multiparticle Dynamics, Sep. 1-7, 2001, Datong China URL http://ismd31.ccnu.edu.cn

    Avaliação nutricional em crianças e adolescentes com cirrose: estudo transversal de duas séries

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    Introdução: A cirrose caracteriza-se por uma alteração crônica do parênquima hepático que frequentemente leva à desnutrição em crianças e adolescentes. A intervenção nutricional deve ser feita precocemente, o que requer um cuidadoso acompanhamento desses pacientes. Objetivos: Comparar os resultados da avaliação nutricional de crianças e adolescentes cirróticos realizada em dois períodos de tempo distintos. Métodos: Foram utilizados bancos de dados oriundos de duas pesquisas conduzidas com pacientes pediátricos com cirrose. Após a aplicação de critérios de inclusão e exclusão, 67 crianças e adolescentes foram avaliados em duas séries com intervalo de aproximadamente uma década entre elas. As duas séries tiveram as variáveis antropométricas estatura para idade (E/I) e dobra cutânea tricipital para idade (DCT/I) avaliadas de acordo com os padrões da Organização Mundial de Saúde. A gravidade da doença foi avaliada pelos modelos Pediatric End-stage Liver Disease (PELD)/ Model for End-stage Liver Disease (MELD) e pelo escore Child-Pugh. O nível de significância foi estabelecido em 5%. Resultados: Os resultados da avaliação do estado nutricional dos pacientes nas duas séries não mostraram diferença estatisticamente significativa. Na série 1, 22,6% dos pacientes apresentaram desnutrição, e 27,8% na série 2 (p = 0,955). Conclusões: Podemos concluir que nas duas séries avaliadas, separadas por aproximadamente uma década, o percentual de desnutrição e a gravidade da cirrose se mantiveram estáveis. Palavras-chave: Avaliação nutricional, criança, adolescente, cirrose
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