248 research outputs found

    On dicraeosaurid (sauropoda) vertebra from the la amarga formation (barremian–aptian, lower cretaceous), Neuquén basin, patagonia, Argentina

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    Field works carried out by Dr. Bonaparte and collaborators in the La Amarga Formation (Barremian–Aptian) in 2000, allowed the collecting of a vertebral element not previously communicated. This material has not been properly protected, so it is broken and kept in paleontological collection of Museo Provincial “Olsacher” of Zapala city. The descriptions were based solely on a photograph. The parapophyses are located on the dorsal part of the centrum, like in the anterior dorsal vertebrae of Dicraeosaurus hansemanni Janensch and Amargasaurus cazaui Salgado and Bonaparte. The posterior articular surface of the centrum is strongly concave with an elliptical outline. The neural arch bears two deep and wide centropostzygapophyseal fossae with a triangular outline. These fossae are framed laterally by stout centropostzygapophyseal laminae, project dorsoventrally like a massive columnar bone. The transverse processes are inclined dorsally more than 30° from the horizontal axis, as in the dorsal vertebrae of D. hansemanni, A. cazaui, Brachytrachelopan mesai Rauhut, Remes, Fechner, Cladera and Puerta and Pilmatueia faundezi Coria, Windholz, Ortega and Currie. The element bears an elongate bifid neural spine, character that share with the most of presacral vertebrae of the dicraeosaurids. This structure is straight, dorsoanteriorly oriented and its degree of development reminds to the presacral vertebrae of A. cazaui. This element is similar to the anterior dorsal vertebrae of A. cazaui, although it could be comparable with Amargatitanis macni Apesteguía, come from the same locality and lithostratigraphic unit, whose presacral vertebrae are unknown.Fil: Windholz, Guillermo Jose. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte. Instituto de Investigación en Paleobiología y Geología; Argentina. Provincia del Neuquén. Municipalidad de Plaza Huincul. Museo "Carmen Funes"; ArgentinaFil: Baiano, Mattia Antonio. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte. Instituto de Investigación en Paleobiología y Geología; Argentina. Provincia del Neuquén. Municipalidad de Plaza Huincul. Museo "Carmen Funes"; ArgentinaFil: Bellardini, Flavio. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte. Instituto de Investigación en Paleobiología y Geología; Argentina. Gobierno de la Provincia de la Pampa. Secretaria de Cultura. Direccion Provincial de Patrimonio Cultural.; ArgentinaFil: Meso, Jorge Gustavo. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Patagonia Norte. Instituto de Investigación en Paleobiología y Geología; ArgentinaFil: Juáres Valieri, R.. Gobierno de la Provincia de Río Negro. Ministerio de Turismo, Cultura y Deporte. Secretaría de Cultura; Argentina. Museo de Ciencias de Añelo; ArgentinaFil: Porfiri, J.. Museo de Ciencias de Añelo; Argentina. Universidad Nacional del Comahue; ArgentinaFil: Filippi, L.. Gobierno de la Provincia del Neuquén. Municipalidad de Rincón de Los Sauces. Secretaria de Turismo y Patrimonio. Museo Municipal Argentino Urquiza; ArgentinaFil: Garrido, A.. Provincia de Neuquén. Ministerio de Energía, Ambiente y Servicios Públicos. Dirección Provincial de Minería. Museo Provincial de Ciencias Naturales Prof. "Dr. Juan A. Olsacher"; Argentina. Universidad Nacional del Comahue. Facultad de Ingeniería. Departamento de Geología y Petróleo; Argentina2das Jornadas de Paleovertebrados de la Cuenca NeuquinaNeuquénArgentinaAsociación Paleontológica Argentin

    Ultrastable CO2 Laser Trapping of Lithium Fermions

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    We demonstrate an ultrastable CO2 laser trap that provides tight confinement of neutral atoms with negligible optical scattering and minimal laser-noise- induced heating. Using this method, fermionic 6Li atoms are stored in a 0.4 mK deep well with a 1/e trap lifetime of 300 sec, consistent with a background pressure of 10^(-11) Torr. To our knowledge, this is the longest storage time ever achieved with an all-optical trap, comparable to the best reported magnetic traps.Comment: 4 pages using REVTeX, 1 eps figur

    Effects of Genetic Variants in ADCY5, GIPR, GCKR and VPS13C on Early Impairment of Glucose and Insulin Metabolism in Children

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    OBJECTIVE: Recent genome-wide association studies identified novel candidate genes for fasting and 2 h blood glucose and insulin levels in adults. We investigated the role of four of these loci (ADCY5, GIPR, GCKR and VPS13C) in early impairment of glucose and insulin metabolism in children. RESEARCH DESIGN AND METHODS: We genotyped four variants (rs2877716; rs1260326; rs10423928; rs17271305) in 638 Caucasian children with detailed metabolic testing including an oGTT and assessed associations with measures of glucose and insulin metabolism (including fasting blood glucose, insulin levels and insulin sensitivity/secretion indices) by linear regression analyses adjusted for age, sex, BMI-SDS and pubertal stage. RESULTS: The major allele (C) of rs2877716 (ADCY5) was nominally associated with decreased fasting plasma insulin (P = 0.008), peak insulin (P = 0.009) and increased QUICKI (P = 0.016) and Matsuda insulin sensitivity index (P = 0.013). rs17271305 (VPS13C) was nominally associated with 2 h blood glucose (P = 0.009), but not with any of the insulin or insulin sensitivity parameters. We found no association of the GIPR and GCKR variants with parameters of glucose and insulin metabolism. None of the variants correlated with anthropometric traits such as height, WHR or BMI-SDS, which excluded potential underlying associations with obesity. CONCLUSIONS: Our data on obese children indicate effects of genetic variation within ADCY5 in early impairment of insulin metabolism and VPS13C in early impairment of blood glucose homeostasis

    Laser Machining by short and ultrashort pulses, state of the art and new opportunities in the age of the photons

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    An overview is given of the applications of short and ultrashort lasers in material processing. Shorter pulses reduce heat-affected damage of the material and opens new ways for nanometer accuracy. Even forty years after the development of the laser there is a lot of effort in developing new and better performing lasers. The driving force is higher accuracy at reasonable cost, which is realised by compact systems delivering short laser pulses of high beam quality. Another trend is the shift towards shorter wavelengths, which are better absorbed by the material and which allows smaller feature sizes to be produced. Examples of new products, which became possible by this technique, are given. The trends in miniaturization as predicted by Moore and Taniguchi are expected to continue over the next decade too thanks to short and ultrashort laser machining techniques. After the age of steam and the age of electricity we have entered the age of photons now

    GWAS for urinary sodium and potassium excretion highlights pathways shared with cardiovascular traits

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    © 2019, The Author(s). Urinary sodium and potassium excretion are associated with blood pressure (BP) and cardiovascular disease (CVD). The exact biological link between these traits is yet to be elucidated. Here, we identify 50 loci for sodium and 13 for potassium excretion in a large-scale genome-wide association study (GWAS) on urinary sodium and potassium excretion using data from 446,237 individuals of European descent from the UK Biobank study. We extensively interrogate the results using multiple analyses such as Mendelian randomization, functional assessment, co localization, genetic risk score, and pathway analyses. We identify a shared genetic component between urinary sodium and potassium expression and cardiovascular traits. Ingenuity pathway analysis shows that urinary sodium and potassium excretion loci are over-represented in behavioural response to stimuli. Our study highlights pathways that are shared between urinary sodium and potassium excretion and cardiovascular traits

    Intensities of helium Stark lines in the region of levels anticrossing between n = 6 and n = 7

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    Studies of intensities of Stark lines of atomic He have been performed. The applied fields were high enough that shifts of the upper levels of the observed transitions became larger than the separation distance between levels with different principal quantum numbers. Overlapping of structures belonging to neighboring principal quantum numbers leads to levels anticrossing effects, what is reflected in variation of intensities of the observed spectral lines. Using the density matrix theory, calculations of the line intensities have been performed. By matching the superpositions of the excited states in the theoretical calculations we can follow the results of observation. Computer simulations have been performed for the observed levels anticrossing region between n = 6 and n = 7 in the second triplet series (23P–n3Q, Q = S, P, D, ...)
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