68 resultados para Maximum-entropy selection criterion


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O trabalho foi conduzido em área de pasto já formado e rebaixado, situado na Fazenda Canchim (UEPAE de São Carlos EMBRAPA), São Carlos - SP, em Latossolo Vermelho Amarelo, fase arenosa. Com a finalidade de avaliar a concentração e acúmulo de micronutrientes a partir dos 30 dias após o rebaixamento até aos 180 dias. A área foi adubada com nitrogênio correspondendo à 250 kg de sulfato de amônio por hectare. Em intervalos de 30 dias após o rebaixamento até aos 180 dias, foram coletadas quatro metros quadrados das plantas ao acaso, sem sub dividir em folhas e caules O material seco à 80°C, foi analisado para Cu, Zn, B, Mn e Fe. Os autores concluíram que: . A concentração de cobre é mais elevada aos 30 dias com 7,63ppm. . A concentração de zinco é maxima aos 180 dias com 22,66 ppm e mínima aos 120 dias com 12, 42ppm . A concentração de boro e maxima aos 150 dias com 11,76 ppm e mínima aos 60 dias com 1,69 ppm. . A concentração de manganês é máxima aos 180 dias com 133,85 ppm e mínima aos 30 dias com 49,64 ppm. . A concentração de ferro é máxima aos 180 dias com 236,25 ppm e mínima aos 90 dias com 136,22ppm . O acúmulo de cobre é máximo aos 90 dias. . O acúmulo de boro de mangês é máximo aos 180 dias. . O acúmulo de zinco e ferro não diferiu nas diferentes idades. A exportação de micronutrientes contida na produção máxima de 1.425 kg de matéria seca por hectare obedece a seguinte ordem: ferro - 286 g; manganês - 157 g; zinco - 23g; boro - 13,2g e cobre 7,6 g.

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O presente trabalho foi conduzido em área de pasto já formado e rebaixado, situado na Fazenda Canchim (UEPAE de São Carlos-EMBRAPA), São Carlos - SP, em Latossolo Vermelho Amarelo, fase arenosa. Com a finalidade de avaliar o coeficiente de digestibilidade in vitro da matéria seca em função da idade, a partir dos 30 dias após o rebaixamento até aos l80 dias. A área foi adubada com nitrogênio correspondendo à 250 kg de sulfato de amônio por hectare. Em intervalos de 30 dias após o rebaixamento até aos l80 dias, colhiam-se quatro metrosquadrados das plantas ao acaso, sem subdividir em folhas e caules No mate rial coletado foi determinado o coeficiente de digestibilidade invitro sobre vinte e quatro amostras com duas repetições. Os resultados mostram que o coeficiente de digestibilidade da matéria seca é máximo aos 30 dias com 51,9% e decresce aos 180 dias com 29,4%.

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Plantas de capim tobiati, em condições controladas, foram submetidas a tratamentos em soluções nutritivas completa e carentes em N, P, K, Ca, Mg, Se B, com o objetivo de se obter o quadro sintomatológico das carências, bem como os teores dos elementos no caule e folhas. Foi obtido o quadro sintomatológico de todas as carências. Os teores encontra dos nas folhas de plantas com sintomas e normais, foram os seguintes: N: 1,0 -2,06; P: 0,08-0,15; K: 0,47-2,99; Mg: 0,12-1,52; Ca: 0,19-1,18; S: 0,08-0,16; B: 15,11-95,55 (ppm).

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Durante oitenta e um dias, foi conduzido um experimento com omissão de micronutrientes, em casa de vegetação, visando estabelecer o quadro sintomatológico das deficiências nutricionais e verificar os efeitos da omissão dos micronutrientes na produção de matéria seca do capim tobiatã. Foram testados os tratamentos: completo, omissão de Fe, omissão de Cu, omissão de Mn e omissão de Zn. A produção de matéria seca obtida nos diferentes tratamentos foi: completo = 62,2 g; -Cu = 45,7 g; -Zn = 46,9 g; -B = 48,1 g; -Mn = 48,1 ge-Fe=48,8 g. A concentração média em ppm, determinada nas folhas novas em função dos tratamentos foi: +B = 19 ppm e -B = 23 ppm; +Cu = 2,0 ppm e -Cu = 0,8; +Fe = 79 ppm e -Fe = 81 ppm; + Mn = 42 ppm e -Mn 41 ppm; +Zn = 27 ppm e -Zn = 31 ppm. A soma total dos micronutrientes nas diversas partes em mg por tratamento foi: +B = 1221; -B = 1227; +Cu = 85; -Cu = 21; +Fe = 4734; -Fe = 2788; +Mn = 536; -Mn = 393; +Zn = 2273 e -Zn = 1444.

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Shell selection by the hermit crab Paguristes tortugae Schmitt, 1933 from Anchieta Island (Brazil) was analyzed using the six most frequently occupied shell species in the field and taking into account the sexual condition of the individuals, the shell size and the shell species. The experiments were conducted under laboratory conditions and the shell species preference was estimated on the basis of the frequency that each species was chosen by the individuals. The preferred shell species and size were determined by regression analysis. The highest correlation coefficients were obtained for the relations between the hermit dimensions and shell dry weight. The ovigerous females preferred shells with larger internal volume: Leucozonia nassa (Gmelin, 1791) and Cerithium atratum (Born, 1778). In the experiment of shell size, males preferred heavier shells whereas females selected the shape characteristics of the shell, such as the aperture and the internal volume, which are probably related to the growth and offspring guarantee, respectively. In general, and independent of sex condition, P. tortugae showed significant selection among all shells utilized. The results suggest that shell selection by P. tortugae involves sexual and reproductive condition preferences.

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This study aimed to evaluate the water depth selection during foraging, the efficiency in prey capture, and the food items captured by Casmerodius albus (Linnaeus, 1758) and Egretta thula (Molina, 1782). The work was conducted at an urban lagoon, Lagoa Rodrigo de Freitas, Rio de Janeiro. Four transects were made each month (two in the morning and two in the afternoon) for six months. When the birds were detected foraging, the water depth and the types of prey captured were recorded. There was no significant relationship between the foraging efficiencies of the two species. However, they differed in relation to the water depth when foraging, and also in the food items captured. Casmerodius albus captured mainly fishes while Egretta thula captured mainly invertebrates. The results suggest that the differences in water depth when foraging and the food items captured allow a differential use of the food resources available by C. albus and E. thula at Lagoa Rodrigo de Freitas.

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ABSTRACT Male gladiator frogs of Hypsiboas Wagler, 1830 build nests on available substrate surrounding ponds and streams where female spawn eggs during the breeding period. Although gladiator frogs seem to show plasticity in the way they construct their nests, there is no study reporting if these species present preferences about microhabitat conditions for nest-building (mainly under subtropical climate). Predation pressure and environmental conditions have been considered major processes shaping the great diversity of reproductive strategies performed by amphibians, but microhabitat conditions should explain where to build a nest as well as how nest looks. This study aimed to test nest site selection for nest-building by Hypsiboas faber(Wied-Neuwied, 1821), determining which factors are related to nest site selection and nest features. The survey was conducted at margins of two permanent ponds in Southern Brazil. Habitat factors were evaluated in 18 plots with nest and 18 plots in the surrounding without nest (control), describing vegetation structure and heterogeneity, and substrate characteristics. Water temperature was measured inside the nest and in its adjacency. Nest features assessed were area, depth and temperature. Habitat characteristics differed between plots with and without nest. Microhabitat selected for nest-building was characterized by great vegetation cover and height, as well as shallower water and lower cover of organic matter in suspension than in plots without nest. Differences between temperature inside nest and in its adjacency were not observed. No relationship between nest features and habitat descriptors was evidenced. Results revealed that Hypsiboas faber does not build nests anywhere. Males seem to prefer more protected habitats, probably avoiding predation, invasion of conspecific males and inclement weather. Lack of differences between temperature inside- and outside-nest suggest that nest do not improve this condition for eggs and tadpole development. Nest architecture was not related to habitat characteristics, which may be determined by other factors, as nest checking by females before amplexus. Nest site selection should increase offspring survival as well the breeding success of Hypsiboas faber.

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The silica structure of the grass Panicum maximum were studied by electron and phase contrast microscopy. Several interesting kinds of silica formation (spiklets) were found. The most ineresting structures ressembels the "Schaumstruktur" found by HELMCKE in diatoms. Another interesting structure was described in the "silica cells" and a detailed study of the mophology of some different kinds of spiklets was made.

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A study of the Adolpho Lutz Collection of Tabanidae at the Instituto Oswaldo Cruz and of additional Lutz material at the Instituto Butantan in São Paulo is reported. Of the ninety-four species of Tabanidae validly described by Lutz, type material of eighty-four was recognized, either holotypes, allotypes or syntypes. Lectotypes were selected from among syntype series or remaining specimens and all type material was labelled. Of the ten species of which no type material could be found, neotypes were designated in the case of two species, Erephosis nigricans and Erephosis pseudo-aurimaculata. Types of three species, Chrysops ecuadoriensis, Dichelacera salvadorensis and Esenbeckia nigricorpus are believed to have been in Hamburg and destroyed during the last war. Types of two species, Esenbeckia biscutellata and E. dubia, and additional type material of several others are believed to have been in Montevideo. A request for information about them remains unanswered. Types of the remaining three species, Dichelacera intermedia, Dichelacera laceriascia and Esenbeckia distinguenda could not be found, and it is believed that at least the type of the last species was accidentally destroyed. Three specific of subspecific names proposed by Lutz but palaced by others in synonymy have been revalidated, Acanthocera intermedia, Erephosis brevistria and Esenbeckia fenestrata. Generic placement of two names has been changed, Esenbeckia arcuata ricardoae to Proboscoides, and Selasoma giganteum to Stibasoma. Seven specific names proposed by Lutz appear to be synonyms of earlier names, as follows: Bombylopsis juxtaleonina Lutz and Castro, 1936 = B. leonina Lutz, 1909. Bombylopsis pseudoanalis Lutz, 1909 = B. erythronotata (Bigot, 1892). Esenbeckia fuscipennis var. flavescens Lutz, 1909 = Esenbeckia fuscipennis Wied., 1828. Fidena chrysopyga Lutz and Castro, 1936 = F. atra Lutz and Castro, 1936. Laphriomyia longipalpis Lutz and Castro, 1937 = L. mirabilis Lutz, 1911. Stibasoma semiflavum Lutz, 1915 = St. bicolor Bigot, 1892. Tabanus hesperus Lutz, 1912 = Chlorotabanus (Cryptolylus) innotescens (Walker, 1854). Four Lutz names appear to antedate names proposed by others, viz.: Diachlorus angustifrons Kröber, 1930 and D. ochraceus Kröb., 1928 not Macquart, 1850 = Diachlorus fuscistigma Lutz, 1913. Psalidia fairchildi Barretto, 1950 = dicladocera conspicua Lutz and Neiva, 1914. Fidena pseudo-fulvithorax Kröb., 1931 = Erephopsis flavicrinis Lutz, 1909. Esenbeckia lemniscata Enderlein, 1925 = Esenbeckia clari Lutz, 1909. Some comments on Lutz' system of classification are given together with notes on the genotypes and included species of his genera as revaled by his collection and notes.

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From an initial double infection in mice, established by simultaneous and equivalent inocula of bloodstream forms of strains Y and F of Trypanosoma cruzi, two lines were derived by subinoculations: one (W) passaged every week, the other (M) every month. Through biological and biochemical methods only the Y strain was identified at the end of the 10th and 16th passages of line W and only the F strain at the 2nd and 4th passages of line M. The results illustrate strain selection through laboratory manipulation of initially mixed populations of T. cruzi.

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The behavioral response of Biomphalaria straminea to light was evaluted in terms of location of the snail in a Y-shaped aquarium in a situation of selection and of the rate (cm/hour) and direction of locomotion under homogeneous 9vertical) or differential (horizontal) lighting upon only one arm of the aquarium. The light source consisted of daylight fluorescent lamps with a spectrum close to that of natural light, with illumination varying from 28 to 350 lux. Analysis of the data showed that all animals, whether in groups or isolated, were attracted to light, although the time needed to approach the light source was 50% shorter for the former than for the latter. The rate of locomotion of B. straminea was 35% higher than observed in B. glabrata and 51% higher than that observed in B. tenagophila studied under similar conditions. The results are discussed in terms of social factors and geographical distribution of the three species.

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Selection III mice have particular immunological characteristics: they are high (H III) or low (L III) antibody producer animals, yet both lines display similar T cell responses and macrophage activities. We submittedthese mice to infection with Schistosoma mansoni to assess in vivo parasite and egg burden, hepatic collagen and cellular composition of granulomas in both lines. Titration of anti-Schistosoma IgG by ELISA showed remarkably higher values inH III line, at both studied periods (8th and 12th weeks post-infection). Nevertheless, the number of adult worms recovered from the portal system was similar inboth lines, being not associated with anti-Schistosoma antibody levels. There isan increase in hepatic collagen from the 8th to the 12th weeks post-infection, which is paralleled by an increase in the number of eggs in the liver. This association apparently occurs at the same radio in H III and L III animals. The most important difference found between the two lines was the outstanding contrast interms of volume and eosinophil counts in the granulomas, with lesions from H IIImice clearly being larger and containing more of these cells than LIII lesions.