873 resultados para SANGRE - ANALISIS DE GAS


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Se desconoce en la actualidad en Colombia la calidad de la interpretación de los gases arteriales por parte de los residentes de medicina de emergencias. Los gases arteriales es una de las ayudas diagnósticas de más rápida consecución en el servicio de urgencias y más utilizadas por ser indispensable en la valoración de patologías de alta prevalencia como son las enfermedades respiratorias y la sepsis. Su mala interpretación puede llevar a mal direccionamiento del manejo de pacientes en estado crítico por lo que es indefectible que los residentes logren un buen entrenamiento en la interpretación de los mismos. Por esta razón se realiza este estudio analítico de concordancia con recolección prospectiva, de corte transversal que busca determinar el grado de concordancia en la interpretación de gases arteriales de los residentes del programa de Medicina de Emergencias de la Universidad del Rosario y especialista en cuidado crítico, así como la interpretación entre ellos según su nivel de entrenamiento y describir cuáles son los hallazgos que encuentran en la interpretación de los mismos. Se recolectaron 60 gases arteriales realizados a paciente hospitalizados en la unidad de cuidados intensivos de la Fundación Santa Fe de Bogotá y se halló la concordancia entre la lectura de los residentes del programa de Medicina de Emergencias y un intensivista. Encontrando una concordancia moderada (r 0.445 y 0.442, ) en las respuestas identificadas en los residentes de segundo y tercer año de residencia(p:0,000y0,01).(MESH: Blood Gas Análisis, Emergency Medical Services, Education, Medical, Graduate)

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La técnica de recolección es el primer paso para obtener una muestra de sangre de cordón umbilical de óptima calidad. Dicho proceso es esencial en los eventos que conducen al éxito del trasplante de células madre. Aunque no existe consenso internacional sobre el procedimiento de recolección, dos técnicas son las principales: la técnica in utero y la técnica ex utero. La técnica in utero aporta ventajas en cuanto al volumen sanguíneo y conteo celular. El parto por cesárea, si se realiza por razones obstétricas es benéfico para la recolección con técnica in utero. Es necesaria la realización de estudios que permitan mayor nivel de evidencia.

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El acelerado avance de la inmunología ha generado el desarrollo de técnicas que permiten resultados más precisos y de métodos de separación, tanto de componentes celulares como humorales, útiles en el diagnóstico. La presente edición tiene como objetivo proveer las herramientas necesarias para entender estos avances, junto con los mecanismos implicados en el desarrollo de algunas técnicas de diagnóstico inmunológico e interpretación clínica. Entre los temas tratados se encuentra el estudio de la estructura y fisiología de Toxoplasma gondii, que sirve de modelo para la elaboración de péptidos sintéticos de proteínas inmunogénicas y, además, puede ser aplicado en el desarrollo de métodos de diagnóstico en otros parásitos de importancia clínica. El presente manual ha sido elaborado con el fin de proporcionar una ayuda en el desarrollo de prácticas de laboratorio en inmunología y está dirigido, principalmente, a estudiantes universitarios y trabajadores de las diferentes áreas de la salud como medicina, bacteriología, biología y química.

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Tesis (Médico Veterinario). -- Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Medicina Veterinaria, 2014

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Colombia está dando pasos importantes para ubicarse en cada uno de los frentes energéticos, el sector de gas natural en Colombia ha experimentado un alto crecimiento de la demanda, acompañado de la introducción y profundización de un marco de mercado. Las compañías que hacen parte de este sector utilizan el marketing relacional, como consecuencia de los cambios producidos en la estructura y competencia de la industria; no obstante, esto exige a las empresas una orientación al mercado con énfasis en la implementación de acciones de marketing proactivas, ya que en el mediano y largo plazo sólo serán rentables las compañías que mejor satisfagan las necesidades y exigencias de los consumidores. Estas empresas tienen un concepto de clientes o consumidores como objetivó final, pero no de un concepto de comunidad. Las estrategias comunitarias es un conocimiento nuevo, que es importante divulgar para aquellas empresas de servicios, que además de incluir estrategias de marketing relacional, y proclamar una responsabilidad social, deben incluir el concepto comunidad en la misión estratégica de la empresa. Así bien, se pretendió identificar mediante un estudio de tipo empírico-analítico si existía un concepto de comunidad, así como si se utilizaban estrategias comunitarias en la relación de la organización Gas Natural Fenosa con las comunidades a las que prestan el servicio. Gas Natural Fenosa en Colombia opera como distribuidor y comercializador de gas y electricidad, la Compañía provee gas natural a hogares, industria, comercio y vehículos. Se evidenció que el concepto comunidad sí se incluye en la estrategia de la empresa, ya que más que una estrategia de marketing transaccional, relacional, o una responsabilidad social se realizan actividades en pro del desarrollo y el empoderamiento de la sociedad, actividades culturales, de educación y donaciones, que son trascendentales a la hora de hablar del crecimiento de las comunidades, se hace uso de una estrategia comunitaria o marketing social ya que Gas Natural Fenosa con estas actividades genera recordación, publicidad y capacitación a los clientes y proveedores lo que disminuye las quejas y reclamaciones, etc.. y que a la vez vincula la empresa y la marca con una causa social de interés, en una relación de beneficio mutuo.

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A miniaturised gas analyser is described and evaluated based on the use of a substrate-integrated hollow waveguide (iHWG) coupled to a microsized near-infrared spectrophotometer comprising a linear variable filter and an array of InGaAs detectors. This gas sensing system was applied to analyse surrogate samples of natural fuel gas containing methane, ethane, propane and butane, quantified by using multivariate regression models based on partial least square (PLS) algorithms and Savitzky-Golay 1(st) derivative data preprocessing. The external validation of the obtained models reveals root mean square errors of prediction of 0.37, 0.36, 0.67 and 0.37% (v/v), for methane, ethane, propane and butane, respectively. The developed sensing system provides particularly rapid response times upon composition changes of the gaseous sample (approximately 2 s) due the minute volume of the iHWG-based measurement cell. The sensing system developed in this study is fully portable with a hand-held sized analyser footprint, and thus ideally suited for field analysis. Last but not least, the obtained results corroborate the potential of NIR-iHWG analysers for monitoring the quality of natural gas and petrochemical gaseous products.

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Plackett-Burman experimental design was applied for the robustness assessment of GC×GC-qMS (Comprehensive Two-Dimensional Gas Chromatography with Fast Quadrupolar Mass Spectrometric Detection) in quantitative and qualitative analysis of volatiles compounds from chocolate samples isolated by headspace solid-phase microextraction (HS-SPME). The influence of small changes around the nominal level of six factors deemed as important on peak areas (carrier gas flow rate, modulation period, temperature of ionic source, MS photomultiplier power, injector temperature and interface temperature) and of four factors considered as potentially influential on spectral quality (minimum and maximum limits of the scanned mass ranges, ions source temperature and photomultiplier power). The analytes selected for the study were 2,3,5-trimethylpyrazine, 2-octanone, octanal, 2-pentyl-furan, 2,3,5,6-tetramethylpyrazine, and 2-nonanone e nonanal. The factors pointed out as important on the robustness of the system were photomultiplier power for quantitative analysis and lower limit of mass scanning range for qualitative analysis.

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Traveling wave ion mobility mass spectrometry (TWIM-MS) is shown to be able to separate and characterize several isomeric forms of diterpene glycosides stevioside (Stv) and rebaudioside A (RebA) that are cationized by Na(+) and K(+) at different sites. Determination and characterization of these coexisting isomeric species, herein termed catiomers, arising from cationization at different and highly competitive coordinating sites, is particularly challenging for glycosides. To achieve this goal, the advantage of using CO2 as a more massive and polarizable drift gas, over N2 , was demonstrated. Post-TWIM-MS/MS experiments were used to confirm the separation. Optimization of the possible geometries and cross-sectional calculations for mobility peak assignments were also performed. Copyright © 2015 John Wiley & Sons, Ltd.

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In this work, we discuss the use of multi-way principal component analysis combined with comprehensive two-dimensional gas chromatography to study the volatile metabolites of the saprophytic fungus Memnoniella sp. isolated in vivo by headspace solid-phase microextraction. This fungus has been identified as having the ability to induce plant resistance against pathogens, possibly through its volatile metabolites. Adequate culture media was inoculated, and its headspace was then sampled with a solid-phase microextraction fiber and chromatographed every 24 h over seven days. The raw chromatogram processing using multi-way principal component analysis allowed the determination of the inoculation period, during which the concentration of volatile metabolites was maximized, as well as the discrimination of the appropriate peaks from the complex culture media background. Several volatile metabolites not previously described in the literature on biocontrol fungi were observed, as well as sesquiterpenes and aliphatic alcohols. These results stress that, due to the complexity of multidimensional chromatographic data, multivariate tools might be mandatory even for apparently trivial tasks, such as the determination of the temporal profile of metabolite production and extinction. However, when compared with conventional gas chromatography, the complex data processing yields a considerable improvement in the information obtained from the samples. This article is protected by copyright. All rights reserved.

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In this communication we describe the application of a conductive polymer gas sensor as an air pressure sensor. The device consists of a thin doped poly(4'-hexyloxy-2,5-biphenylene ethylene) (PHBPE) film deposited on an interdigitated metallic electrode. The sensor is cheap, easy to fabricate, lasts for several months, and is suitable for measuring air pressures in the range between 100 and 700 mmHg.

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Gas-phase SiCl3+ ions undergo sequential solvolysis type reactions with water, methanol, ammonia, methylamine and propylene. Studies carried out in a Fourier Transform mass spectrometer reveal that these reactions are facile at 10-8 Torr and give rise to substituted chlorosilyl cations. Ab initio and DFT calculations reveal that these reactions proceed by addition of the silyl cation to the oxygen or nitrogen lone pair followed by a 1,3-H migration in the transition state. These transition states are calculated to lie below the energy of the reactants. By comparison, hydrolysis of gaseous CCl3+ is calculated to involve a substantial positive energy barrier.

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The aggregation of interacting Brownian particles in sheared concentrated suspensions is an important issue in colloid and soft matter science per se. Also, it serves as a model to understand biochemical reactions occurring in vivo where both crowding and shear play an important role. We present an effective medium approach within the Smoluchowski equation with shear which allows one to calculate the encounter kinetics through a potential barrier under shear at arbitrary colloid concentrations. Experiments on a model colloidal system in simple shear flow support the validity of the model in the concentration range considered. By generalizing Kramers' rate theory to the presence of shear and collective hydrodynamics, our model explains the significant increase in the shear-induced reaction-limited aggregation kinetics upon increasing the colloid concentration.

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Using Monte Carlo simulations we investigate some new aspects of the phase diagram and the behavior of the diffusion coefficient in an associating lattice gas (ALG) model on different regions of the phase diagram. The ALG model combines a two dimensional lattice gas where particles interact through a soft core potential and orientational degrees of freedom. The competition between soft core potential and directional attractive forces results in a high density liquid phase, a low density liquid phase, and a gas phase. Besides anomalies in the behavior of the density with the temperature at constant pressure and of the diffusion coefficient with density at constant temperature are also found. The two liquid phases are separated by a coexistence line that ends in a bicritical point. The low density liquid phase is separated from the gas phase by a coexistence line that ends in tricritical point. The bicritical and tricritical points are linked by a critical lambda-line. The high density liquid phase and the fluid phases are separated by a second critical tau-line. We then investigate how the diffusion coefficient behaves on different regions of the chemical potential-temperature phase diagram. We find that diffusivity undergoes two types of dynamic transitions: a fragile-to-strong transition when the critical lambda-line is crossed by decreasing the temperature at a constant chemical potential; and a strong-to-strong transition when the critical tau-line is crossed by decreasing the temperature at a constant chemical potential.

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Gas aggregation is a well known method used to produce clusters of different materials with good size control, reduced dispersion, and precise stoichiometry. The cost of these systems is relatively high and they are generally dedicated apparatuses. Furthermore, the usual sample production speed of these systems is not as fast as physical vapor deposition devices posing a problem when thick samples are needed. In this paper we describe the development of a multipurpose gas aggregation system constructed as an adaptation to a magnetron sputtering system. The cost of this adaptation is negligible and its installation and operation are both remarkably simple. The gas flow for flux in the range of 60-130 SCCM (SCCM denotes cubic centimeter per minute at STP) is able to completely collimate all the sputtered material, producing spherical nanoparticles. Co nanoparticles were produced and characterized using electron microscopy techniques and Rutherford back-scattering analysis. The size of the particles is around 10 nm with around 75 nm/min of deposition rate at the center of a Gaussian profile nanoparticle beam.

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High-resolution synchrotron x-ray powder diffraction in La(0.7)Ca(0.3)MnO(3) shows in detail a first-order structural phase transition from orthorhombic (space-group Pnma) to rhombohedral (space-group R (3) over barc) crystal structures near T(S)=710 K. Magnetic susceptibility measurements show that the rhombohedral phase strictly obeys the Curie-Weiss law as opposed to the orthorhombic phase. A concomitant change in the electrical resistivity behavior, consistent with an alteration from nonadiabatic to adiabatic small polaron hopping regimes, was also observed at T(S). The simultaneous change in transport and magnetic properties are identified as a transition from a correlated polaron liquid for Tgas for T>T(S), driven by the change in the crystal symmetry.