988 resultados para pedra-ume-caá


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As folhas de Myrcia multiflora (Lam.) DC, Myrcia guianensis (Aubl.) Urb. e Eugenia punicifolia (H. B. K.) DC. são anatômica c morfologicamentc descritas. As espécies revelaram diversos elementos histológicos universais para a família, bem como peculiares das mesmas e importantes para orientar a diagnose desses vegetais e para o reconhecimento de fraudes, que ocorrem através de substituições intencionais ou não. Entre os elementos histológicos característicos, destacam-se: ornamentações de cutícula foliar, tipos de estômatos, tipos de contornos celulares das células epidérmicas em vista facial, tipo e abundância relativa de inclusões celulares inorgânicas.

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O uso do fogo e de roçadeira para controle de plantas daninhas em pastagens tem se mostrado pouco efetivo. Já o uso de herbicidas sintéticos, embora mais eficaz no controle de plantas daninhas, tem sido questionado quanto ao impacto ambiental. Portanto, a busca de compostos naturais para possível utilização como herbicida é de fundamental importância. Esses fatos motivaram o presente estudo, que teve como objetivos isolar, identificar e caracterizar a atividade alelopática potencial de substâncias químicas produzidas por Myrcia guianensis (pedra-ume-caá). Foram analisados os efeitos potenciais alelopáticos de extratos brutos, partições, óleo essencial e das substâncias químicas isoladas (ácido gálico e ácido protocatecuico) sobre a germinação e o desenvolvimento da radícula e do hipocótilo das plantas daninhas Mimosa pudica (malícia) e Senna obtusifolia (mata-pasto) em pastagens. Os extratos brutos e as partições foram analisados em concentração de 1%; o óleo essencial, em concentrações de 1, 5, 10, 15 e 20 ppm; e as substâncias isoladas, em concentrações de 15, 30, 45 e 60 ppm. A espécie malícia se mostrou mais sensível aos efeitos alelopáticos dos extratos brutos e das partições. O óleo essencial inibiu a germinação da malícia e estimulou a germinação no mata-pasto. A atividade alelopática das substâncias químicas isoladas esteve associada à concentração, e a atividade mais intensa foi em 60 ppm.

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O uso do fogo e de roçadeira para controle de plantas daninhas em pastagens tem se mostrado pouco efetivo. Já o uso de herbicidas sintéticos, embora mais eficaz no controle de plantas daninhas, tem sido questionado quanto ao impacto ambiental. Portanto, a busca de compostos naturais para possível utilização como herbicida é de fundamental importância. Esses fatos motivaram o presente estudo, que teve como objetivos isolar, identificar e caracterizar a atividade alelopática potencial de substâncias químicas produzidas por Myrcia guianensis (pedra-ume-caá). Foram analisados os efeitos potenciais alelopáticos de extratos brutos, partições, óleo essencial e das substâncias químicas isoladas (ácido gálico e ácido protocatecuico) sobre a germinação e o desenvolvimento da radícula e do hipocótilo das plantas daninhas Mimosa pudica (malícia) e Senna obtusifolia (mata-pasto) em pastagens. Os extratos brutos e as partições foram analisados em concentração de 1%; o óleo essencial, em concentrações de 1, 5, 10, 15 e 20 ppm; e as substâncias isoladas, em concentrações de 15, 30, 45 e 60 ppm. A espécie malícia se mostrou mais sensível aos efeitos alelopáticos dos extratos brutos e das partições. O óleo essencial inibiu a germinação da malícia e estimulou a germinação no mata-pasto. A atividade alelopática das substâncias químicas isoladas esteve associada à concentração, e a atividade mais intensa foi em 60 ppm.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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O conhecimento dos requerimentos nutricionais das espécies e de suas respostas à correção do substrato é fundamental para a produção de mudas de qualidade. O objetivo deste trabalho foi avaliar o efeito de diferentes tipos de calcário e da correção da deficiência de Ca e Mg sobre o desenvolvimento de mudas de angelim-pedra (D. excelsa) em casa de vegetação, utilizando-se como substrato Latossolo Amarelo. Foram testados três tipos de calcário e fornecimento de Ca e Mg por meio de fontes não-corretivas da acidez em três relações Ca:Mg. Os tratamentos consistiram de T0 & testemunha; T1 & calcário dolomítico; T2 & calcário magnesiano; T3 & calcário calcítico; T4 & Ca e Mg na relação 3:1; T5 & Ca e Mg na relação 9:1; e T6 & Ca e Mg na relação 15:1. O delineamento experimental foi de blocos ao acaso, com cinco repetições, totalizando 35 parcelas, cada uma delas com 3 mudas. O substrato foi adubado com doses equivalentes a 100-250-150 e 15 kg ha-1 de N, P2O5, K2O e S, respectivamente e com solução de micronutrientes (3 mL de Chelamix L-1 de água destilada). Foram avaliadas: a altura da planta, o diâmetro do colo, matéria seca da parte aérea, matéria seca da raiz, matéria seca total, relação raiz/parte aérea e conteúdos de nutrientes da parte aérea das plantas. De modo geral, a aplicação de calcário favoreceu o crescimento de D. excelsa, sendo os melhores resultados obtidos com a aplicação de calcário magnesiano na relação 9:1.

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Os utensílios culinários podem liberar alguns componentes inorgânicos durante a cocção de alimentos. A migração destes pode ser interessante desde que ocorra em quantidades adequadas às necessidades nutricionais do usuário ou não existam implicações toxicológicas. Foi avaliada a migração de metais (Fe, Mg, Mn, Cr, Ni, Ca, Zn, Pb, Cd e Hg) por espectrometria de emissão óptica, utilizando ácidos láctico e acético como simulantes do alimento em panelas de aço inoxidável (304), ferro fundido (GG-10) e pedra-sabão (esteatito), durante 15 cocções seqüenciais. O comportamento da migração durante cinco ciclos de estocagem a 22ºC também foi estudado. Análise de regressão dos dados revelou que, em função do uso, as panelas de inox apresentam redução da migração de metais de forma rápida, enquanto as de pedra-sabão mostram um declínio suave na migração, contrastando com as de ferro, que apresentam aumento na migração de Fe e Mn com o uso contínuo. Em nenhum utensílio foi observada a liberação de metais pesados, como Pb, Cd ou Hg.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Major and trace-element microanalyses of the main minerals from the 610 Ma Pedra Branca Syenite, southeast Brazil, allow inferences on intensive parameters of magmatic crystallization and on the partition of trace-elements among these minerals, with important implications for the petrogenetic evolution of the pluton. Two main syenite types make up the pluton, a quartz-free syenite with tabular alkali feldspar (laminated silica-saturated syenite, LSS, with Na-rich augite + phlogopite + hematite + magnetite + titanite + apatite) and a quartz-bearing syenite (laminated silica-oversaturated syenite, LSO, with scarce corroded plagioclase plus diopside + biotite +/- hornblende + ilmenite magnetite +/- titanite + apatite). Both types share a remarkable enrichment in incompatible elements as K, Ba, Sr, P and LREE. Apatite saturation temperatures of similar to 1060-1090 degrees C are the best estimates of liquidus, whereas the pressure of emplacement, based on Al-in-hornblende barometry, is estimated as 3.3 to 4.8 khan Although both units crystallized under oxidizing conditions, oxygen fugacity was probably higher in LSS, as shown by higher mg# of the mafic minerals and higher hematite contents in Hem-Ilm(ss). In contrast with the Ca-bearing alkali-feldspar from LSO, which hosts most of the whole-rock Sr and Pb, virtually Ca-free alkali-feldspar from LSS hosts similar to 50% of whole-rock Sr and similar to 80% of Pb, the remainder of these elements being shared by apatite, pyroxene and titanite. This contrast reflects a strong crystal-chemical control, whereby a higher proportion of an element with similar ratio and charge (Ca2+) enhances the residence of Sr and Pb in the M-site of alkali feldspar. The more alkaline character of the LSS magma is inferred to have inhibited zircon saturation; Zr + Hf remained in solution until late in the crystallization, and were mostly accommodated in the structure of Ca-Na pyroxene and titanite, which are one order of magnitude richer in these elements compared to the same minerals in LSO, where most of Zr and Hf are inferred to reside in zircon. The REE, Th and U reside mostly in titanite and apatite; D(REE)Tit/Ap raises steadily from 1 to 6 from La to Tb then remains constant up to Lu in the LSO sample; these values are about half as much in the LSS sample, where lower contents of incompatible elements in titanite are attributed to its greater modal abundance and earlier crystallization. (C) 2012 Elsevier B.V. All rights reserved.

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This study evaluated bone response to a Ca- and P- enriched titanium (Ti) surface treated by a multiphase anodic spark deposition coating (BSP-AK). Two mongrel dogs received bilateral implantation of 3 Ti cylinders (4.1 x 12 mm) in the humerus, being either BSP-AK treated or untreated (machined - control). At 8 weeks postimplantation, bone fragments containing the implants were harvested and processed for histologic and histomorphometric analyses. Bone formation was observed in cortical area and towards the medullary canal associated to approximately 1/3 of implant extension. In most cases, in the medullary area, collagen fiber bundles were detected adjacent and oriented parallel to Ti surfaces. Such connective tissue formation exhibited focal areas of mineralized matrix lined by active osteoblasts. The mean percentages of bone-to-implant contact were 2.3 (0.0-7.2 range) for BSP-AK and 0.4 (0.0-1.3 range) for control. Although the Mann-Whitney test did not detect statistically significant differences between groups, these results indicate a trend of BSP-AK treated surfaces to support contact osteogenesis in an experimental model that produces low bone-to-implant contact values.

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This work presents a study of selected outcrops from the Pedra das Torrinhas Formation of the Guaritas Group (Cambrian, Camaquã Basin), near the basin bordering Encantadas Fault Zone. The studied succession includes alluvial fan deposits that pass laterally into eolian deposits. Sedimentary facies and architectural element analysis were performed, followed by sedimentary petrography and microscopic porosity analysis, aiming to characterize the porosity of the deposits and its spatial distribution. The main objective was to contribute to a better understanding of the porosity spatial distribution in depositional systems characterized by the interaction between alluvial and eolian processes, with special reference to deposits formed prior to the development of terrestrial plants. Porosity values are related to depositional processes, with higher porosities associated to eolian dune deposits (mean of 8.4%), and lower porosity related to interdunes (mean of 3.4%) and alluvial fans (mean of 4.3%). Architectural elements analysis revealed the spatial relationships of these deposits, a response to the interplay of the eolian and alluvial processes. The integration of porosity data reveals that the interaction of alluvial and eolian processes results in heterogeneous distribution of porosity at the facies association scale. Eolian reworking of alluvial facies increases porosity whereas sheet-flood and other alluvial processes in the interdune areas reduce porosity.

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Large-conductance Ca(2+)-activated K(+) channels (BK) play a fundamental role in modulating membrane potential in many cell types. The gating of BK channels and its modulation by Ca(2+) and voltage has been the subject of intensive research over almost three decades, yielding several of the most complicated kinetic mechanisms ever proposed. A large number of open and closed states disposed, respectively, in two planes, named tiers, characterize these mechanisms. Transitions between states in the same plane are cooperative and modulated by Ca(2+). Transitions across planes are highly concerted and voltage-dependent. Here we reexamine the validity of the two-tiered hypothesis by restricting attention to the modulation by Ca(2+). Large single channel data sets at five Ca(2+) concentrations were simultaneously analyzed from a Bayesian perspective by using hidden Markov models and Markov-chain Monte Carlo stochastic integration techniques. Our results support a dramatic reduction in model complexity, favoring a simple mechanism derived from the Monod-Wyman-Changeux allosteric model for homotetramers, able to explain the Ca(2+) modulation of the gating process. This model differs from the standard Monod-Wyman-Changeux scheme in that one distinguishes when two Ca(2+) ions are bound to adjacent or diagonal subunits of the tetramer.

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Context. The formation and evolution of the Galactic bulge and its relationship with the other Galactic populations is still poorly understood. Aims. To establish the chemical differences and similarities between the bulge and other stellar populations, we performed an elemental abundance analysis of alpha- (O, Mg, Si, Ca, and Ti) and Z-odd (Na and Al) elements of red giant stars in the bulge as well as of local thin disk, thick disk and halo giants. Methods. We use high-resolution optical spectra of 25 bulge giants in Baade's window and 55 comparison giants (4 halo, 29 thin disk and 22 thick disk giants) in the solar neighborhood. All stars have similar stellar parameters but cover a broad range in metallicity (-1.5 < [Fe/H] < +0.5). A standard 1D local thermodynamic equilibrium analysis using both Kurucz and MARCS models yielded the abundances of O, Na, Mg, Al, Si, Ca, Ti and Fe. Our homogeneous and differential analysis of the Galactic stellar populations ensured that systematic errors were minimized. Results. We confirm the well-established differences for [alpha/Fe] at a given metallicity between the local thin and thick disks. For all the elements investigated, we find no chemical distinction between the bulge and the local thick disk, in agreement with our previous study of C, N and O but in contrast to other groups relying on literature values for nearby disk dwarf stars. For -1.5 < [Fe/H] < -0.3 exactly the same trend is followed by both the bulge and thick disk stars, with a star-to-star scatter of only 0.03 dex. Furthermore, both populations share the location of the knee in the [alpha/Fe] vs. [Fe/H] diagram. It still remains to be confirmed that the local thick disk extends to super-solar metallicities as is the case for the bulge. These are the most stringent constraints to date on the chemical similarity of these stellar populations. Conclusions. Our findings suggest that the bulge and local thick disk stars experienced similar formation timescales, star formation rates and initial mass functions, confirming thus the main outcomes of our previous homogeneous analysis of [O/Fe] from infrared spectra for nearly the same sample. The identical a-enhancements of thick disk and bulge stars may reflect a rapid chemical evolution taking place before the bulge and thick disk structures we see today were formed, or it may reflect Galactic orbital migration of inner disk/bulge stars resulting in stars in the solar neighborhood with thick-disk kinematics.

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The structural, dielectric, and vibrational properties of pure and rare earth (RE)-doped Ba(0.77) Ca(0.23)TiO(3) (BCT23; RE = Nd, Sm, Pr, Yb) ceramics obtained via solid-state reaction were investigated. The pure and RE-doped BCT23 ceramics sintered at 1450 degrees C in air for 4 h showed a dense microstructure in all ceramics. The use of RE ions as dopants introduced lattice-parameter changes that manifested in the reduction of the volume of the unit cell. RE-doped BCT23 samples exhibit a more homogenous microstructure due to the absence of a Ti-rich phase in the grain boundaries as demonstrated by scanning electron microscopy imaging. The incorporation of REs led to perturbations of the local symmetry of TiO(6) octahedra and the creation of a new Raman mode. The results of Raman scattering measurements indicated that the Curie temperature of the ferroelectric phase transition depends on the RE ion and ion content, with the Curie temperature shifting toward lower values as the RE content increases, with the exception of Yb(3+) doping, which did not affect the ferroelectric phase transition temperature. The phase transition behavior is explained using the standard soft mode model. Electronic paramagnetic resonance measurements showed the existence of Ti vacancies in the structure of RE-doped BCT23. Defects are created via charge compensation mechanisms due to the incorporation of elements with a different valence state relative to the ions of the pure BCT23 host. It is concluded that the Ti vacancies are responsible for the activation of the Raman mode at 840 cm(-1), which is in agreement with lattice dynamics calculations. (c) 2011 American Institute of Physics. [doi:10.1063/1.3594710]

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Thermodynamics, equilibrium structure, and dynamics of glass-forming liquids Ca(NO(3))(2)center dot nH(2)O, n=4, 6, and 8, have been investigated by molecular dynamics (MD) simulations. A polarizable model was considered for H(2)O and NO(3)- on the basis of previous fluctuating charge models for pure water and the molten salt 2Ca(NO(3))(2)center dot 3KNO(3). Similar thermodynamic properties have been obtained with nonpolarizable and polarizable models. The glass transition temperature, T(g), estimated from MD simulations was dependent on polarization, in particular the dependence of T(g) with electrolyte concentration. Significant polarization effects on equilibrium structure were observed in cation-cation, cation-anion, and water-water structures. Polarization increases the diffusion coefficient of H(2)O, but does not change significantly the diffusion coefficients of ions. Viscosity decreases upon inclusion of polarization, but the conductivity calculated with the polarizable model is smaller than the nonpolarizable model because polarization enhances anion-cation interactions.

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Changes in intracellular Ca(2+) concentration ([Ca(2+)](i)) play a central role in neuronal differentiation. However, Ca(2+) signaling in this process remains poorly understood and it is unknown whether embryonic and adult stem cells share the same signaling pathways. To clarify this issue, neuronal differentiation was analyzed in two cell lines: embryonic P19 carcinoma stem cells (CSCs) and adult murine bone-marrow mesenchymal stem cells (MSC). We studied Ca(2+) release from the endoplasmic reticulum via intracellular ryanodine-sensitive (RyR) and IP(3)-sensitive (IP(3)R) receptors. We observed that caffeine, a RyR agonist, induced a [Ca(2+)](i) response that increased throughout neuronal differentiation. We also demonstrated a functional coupling between RyRs and L-but not with N-, P-, or Q-type Ca(v)1 Ca(2+) channels, both in embryonal CSC and adult MSC. We also found that agonists of L-type channels and of RyRs increase neurogenesis and neuronal differentiation, while antagonists of these channels have the opposite effect. Thus, our data demonstrate that in both cell lines RyRs control internal Ca(2+) release following voltage-dependent Ca(2+) entry via L-type Ca(2+) channels. This study shows that both in embryonal CSC and adult MSC [Ca(2+)](i) is controlled by a common pathway, indicating that coupling of L-type Ca(2+) channels and RyRs may be a conserved mechanism necessary for neuronal differentiation.