957 resultados para Adverse conditions
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Low-intensity laser has been used as a physical agent in various fields of medical sciences such as bone and tissue repair. Meanwhile little is known about its effects in adverse conditions such as abolition of load and osteopenic. With the assumption that the laser Ga-Al-As accelerates the process of bone consolidation, goal of this study was to evaluate bone mineral density (BMD) in incomplete transverse osteotomies of tibia in adult rats, treated with low power laser therapy in three different groups: G1 (n = 10), reference 15 days; G2 (n=10), suspended by the tail and, accordingly, treated with laser for 12 days; G3 (n = 10), suspended by the tail by 36 days and that after 21 days, there was laser treatment for 12 days. The right tibia treated with laser and left served as control. The laser was used to Ga-Al-As, DMC - Flash Lase® III, with wavelength 830nm, 100 mW, 4J, 140 J / cm ², 40s of application in 12 sessions. It was used densitometer-Lunar DPX®, with computer program for "small animals", and the analysis of BMD was made in the bone throughout the region and the osteotomy. The results showed no efficacy of laser therapy in the process of bone repair, both in animals of group 1, as in group 2 and 3. It follows that either the low-power laser was not an effective performance or the effects of laser therapy is not only manifested at the site of irradiation as well as the systemic level.
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The implement of Specialized’s Dentistry Centers in Brazil is, on present-day, one of the prime faces of Oral Health Brazilian Political, of which is to amplify and to qualify the specialized’s dentistry services proffer. The aim of this study, done with indirect dates, was to analyze the implantation and geographical distribution of these Centers in Brazil and try to make a relationship between this information and social and oral health factors. The results obtained showed the presence of 339 Centers already implanted in Brazil, homogeneously allocated in 283 cities, by a total of 5.560 brazilian cities, presented in the five Greater Regions. The most of the Centers were presented in large load cities. The data showed Southeast, Central West and Northeast regions with the major percentage of cities carrying Specialized’s Dentistry Centers (7,6%; 6,5%; 6,1%, respectively), while North and South regions present the minor covering taxes (4,0% and 4,5%, respectively). Relation to population’s social and buccal needs, North and Northeast Regions have the most adverse conditions, on the contrary to South, Southeast and Central West Regions who show the best one. Although the finded results were not so expressive, reflecting the brazilian geographical and populational characteristics and the essential development of specialized dentistry services, this initiative presents a real progress over the reorganization of dentistry’s practice.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fas-activated serine/threonine phosphoprotein (FAST) is the founding member of the FAST kinase domain-containing protein (FASTKD) family that includes FASTKD1-5. FAST is a sensor of mitochondrial stress that modulates protein translation to promote the survival of cells exposed to adverse conditions. Mutations in FASTKD2 have been linked to a mitochondrial encephalomyopathy that is associated with reduced cytochrome c oxidase activity, an essential component of the mitochondrial electron transport chain. We have confirmed the mitochondrial localization of FASTKD2 and shown that all FASTKD family members are found in mitochondria. Although human and mouse FASTKD1-5 genes are expressed ubiquitously, some of them are most abundantly expressed in mitochondria-enriched tissues. We have found that RNA interference-mediated knockdown of FASTKD3 severely blunts basal and stress-induced mitochondrial oxygen consumption without disrupting the assembly of respiratory chain complexes. Tandem affinity purification reveals that FASTKD3 interacts with components of mitochondrial respiratory and translation machineries. Our results introduce FASTKD3 as an essential component of mitochondrial respiration that may modulate energy balance in cells exposed to adverse conditions by functionally coupling mitochondrial protein synthesis to respiration.
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The U.S. natural gas industry has changed because of the recent ability to produce natural gas from unconventional shale deposits. One of the largest and most important deposits is the Marcellus Shale. Hydraulic fracturing and horizontal drilling have allowed for the technical feasibility of production, but concerns exist regarding the economics of shale gas production. These concerns are related to limited production and economic data for shale gas wells, declines in the rates of production, falling natural gas prices, oversupply issues coupled with slow growth in U.S. natural gas demand, and rising production costs. An attempt to determine profitability was done through the economic analysis of an average shale gas well using data that is representative of natural gas production from 2009 to 2011 in the Marcellus Shale. Despite the adverse conditions facing the shale gas industry it is concluded from the results of this analysis that a shale gas well in the Marcellus Shale is profitable based on NPV, IRR and breakeven price calculations.
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Gibberellin (GA) is a growth promoting hormone implicated in regulating a diversity of plant processes. This dissertation examines the role of GA metabolic and signaling genes in woody plant growth and development. Transgenic modifications, expression analysis, physiological/biochemical assays, biometric measurements and histological analysis were used to understand the regulatory roles these genes play in the model woody plant, Populus. Our results highlight the importance of GA regulatory genes in woody perennial growth, including: phenology, wood formation, phenotypic plasticity, and growth/survival under field conditions. We characterize two putative Populus orthologs of the SHORT INTERNODES (SHI) gene from Arabidopsis, a negative regulator of GA signaling. RNAi-mediated suppression of Populus SHI-like genes increased several growth-related traits, including extent of xylem proliferation, in a dose-dependent manner. Three Populus genes, sharing sequence homology to the positive regulator of GA signaling gene PHOTOPERIOD-RESPONSIVE 1 (PHOR1) from Solanum, are up-regulated in GA-deficient and insensitive plants suggesting a conserved role in GA signaling. We demonstrate that Populus PHOR1-like genes have overlapping and divergent function(s). Two PHOR1-like genes are highly expressed in roots, predominantly affect root growth (e.g., morphology, starch quantity and gravitropism), and induced by short-days (SD). The other PHOR1-like gene is ubiquitously expressed with a generalized function in root and shoot development. The effects of GA catabolic and signaling genes on important traits (e.g., adaptive and productivity traits) were studied in a multi-year field trial. Transgenics overexpressing GA 2-oxidase (GA2ox) and DELLA genes showed tremendous variation in growth, form, foliage, and phenology (i.e., vegetative and reproductive). Observed gradients in trait modifications were correlated to transgene expression levels, in a manner suggesting a dose-dependent relationship. We explore GA2ox and DELLA genes involvement in mediating growth responses to immediate short-term drought stress, and SD photoperiods, signaling prolonged periods of stress (e.g., winter bud dormancy). GA2ox and DELLA genes show substantial up-regulation in response to drought and SDs. Transgenics overexpressing homologs of these genes subjected to drought and SD photoperiods show hypersensitive growth restraint and increased stress resistances. These results suggest growth cessation (i.e., dormancy) in response to adverse conditions is mediated by GA regulatory genes.
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Ethanolic fermentation is classically associated with flooding tolerance when plant cells switch from respiration to anaerobic fermentation. However, recent studies have suggested that fermentation also has important functions in the presence of oxygen, mainly in germinating pollen and during abiotic stress. Pyruvate decarboxylase (PDC), which catalyzes the first step in this pathway, is thought to be the main regulatory enzyme. Here, we characterize the PDC gene family in Arabidopsis. PDC is encoded by four closely related genes. By using real-time quantitative polymerase chain reaction, we determined the expression levels of each individual gene in different tissues, under normal growth conditions, and when the plants were subjected to anoxia or other environmental stress conditions. We show that PDC1 is the only gene induced under oxygen limitation among the PDC1 gene family and that a pdc1 null mutant is comprised in anoxia tolerance but not other environmental stresses. We also characterize the expression of the aldehyde dehydrogenase (ALDH) gene family. None of the three genes is induced by anoxia but ALDH2B7 reacts strongly to ABA application and dehydration, suggesting that ALDH may play a role in aerobic detoxification of acetaldehyde. We discuss the possible role of ethanolic fermentation as a robust back-up energy production pathway under adverse conditions when mitochondrial function is disturbed.
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The storage of translationally inactive mRNAs in cytosolic granules enables cells to react flexibly to environmental changes. In eukaryotes, Scd6 (suppressor of clathrin deficiency 6)/Rap55 (RNA-associated protein 55), a member of the LSm14 (like-Sm14) family, is an important factor in the formation and activity of P-bodies, where mRNA decay factors accumulate, in stress granules that store mRNAs under adverse conditions and in granules that store developmentally regulated mRNAs. SCD6 from Trypanosoma brucei (TbSCD6) shares the same domain architecture as orthologous proteins in other organisms and is also present in cytosolic granules (equivalent to P-bodies). We show that TbSCD6 is a general repressor of translation and that its depletion by RNAi results in a global increase in protein synthesis. With few exceptions, the steady-state levels of proteins are unchanged. TbSCD6 is not required for the formation of starvation-induced granules in trypanosomes, and unlike Scd6 from yeast, Plasmodium and all multicellular organisms analysed to date, it does not form a complex with the helicase Dhh1 (DExD/H-box helicase 1). In common with Xenopus laevis RAP55, TbSCD6 co-purifies with two arginine methyltransferases; moreover, TbSCD6 itself is methylated on three arginine residues. Finally, a detailed analysis identified roles for the Lsm and N-rich domains in both protein localization and tr
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Las transformaciones socio-económicas, políticas y gremiales acaecidas a fines de los '70 inauguraron un período desfavorable para las condiciones de trabajo de los obreros agrícolas. Se desarrolló una tendencia hacia la disminución de los tiempos requeridos por cada tarea, la discontinuación del proceso productivo, la estacionalización de la demanda de empleo y una mayor especialización de la fuerza de trabajo. La fragmentación extrema del proceso productivo derivó así en el astillamiento del ciclo laboral de los trabajadores en términos de ingresos y de empleadores. En este contexto, fueron logrando imponerse y naturalizarse distintas formas y niveles de remuneración para cada una de las tareas agrícolas, aun en los casos en que un trabajador las realizara todas para un mismo patrón como peón permanente, y singularmente en los casos de los obreros temporarios que se enfrentan a distintos empleadores para desarrollar cada una de las labores con las que construyen su ciclo laboral. Nos proponemos analizar el rol que la combinación de estas formas y niveles salariales ha venido cumpliendo para el abaratamiento de la fuerza de trabajo agrícola en su conjunto, así como en su estímulo a una mayor productividad y en la frustración de conflictos abiertos o a gran escala entre esta fracción de la clase obrera rural y sus patrones, a pesar de las condiciones de trabajo desfavorables que verificamos en este estudio
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Las transformaciones socio-económicas, políticas y gremiales acaecidas a fines de los '70 inauguraron un período desfavorable para las condiciones de trabajo de los obreros agrícolas. Se desarrolló una tendencia hacia la disminución de los tiempos requeridos por cada tarea, la discontinuación del proceso productivo, la estacionalización de la demanda de empleo y una mayor especialización de la fuerza de trabajo. La fragmentación extrema del proceso productivo derivó así en el astillamiento del ciclo laboral de los trabajadores en términos de ingresos y de empleadores. En este contexto, fueron logrando imponerse y naturalizarse distintas formas y niveles de remuneración para cada una de las tareas agrícolas, aun en los casos en que un trabajador las realizara todas para un mismo patrón como peón permanente, y singularmente en los casos de los obreros temporarios que se enfrentan a distintos empleadores para desarrollar cada una de las labores con las que construyen su ciclo laboral. Nos proponemos analizar el rol que la combinación de estas formas y niveles salariales ha venido cumpliendo para el abaratamiento de la fuerza de trabajo agrícola en su conjunto, así como en su estímulo a una mayor productividad y en la frustración de conflictos abiertos o a gran escala entre esta fracción de la clase obrera rural y sus patrones, a pesar de las condiciones de trabajo desfavorables que verificamos en este estudio
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Las transformaciones socio-económicas, políticas y gremiales acaecidas a fines de los '70 inauguraron un período desfavorable para las condiciones de trabajo de los obreros agrícolas. Se desarrolló una tendencia hacia la disminución de los tiempos requeridos por cada tarea, la discontinuación del proceso productivo, la estacionalización de la demanda de empleo y una mayor especialización de la fuerza de trabajo. La fragmentación extrema del proceso productivo derivó así en el astillamiento del ciclo laboral de los trabajadores en términos de ingresos y de empleadores. En este contexto, fueron logrando imponerse y naturalizarse distintas formas y niveles de remuneración para cada una de las tareas agrícolas, aun en los casos en que un trabajador las realizara todas para un mismo patrón como peón permanente, y singularmente en los casos de los obreros temporarios que se enfrentan a distintos empleadores para desarrollar cada una de las labores con las que construyen su ciclo laboral. Nos proponemos analizar el rol que la combinación de estas formas y niveles salariales ha venido cumpliendo para el abaratamiento de la fuerza de trabajo agrícola en su conjunto, así como en su estímulo a una mayor productividad y en la frustración de conflictos abiertos o a gran escala entre esta fracción de la clase obrera rural y sus patrones, a pesar de las condiciones de trabajo desfavorables que verificamos en este estudio
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Climate variability and changes in the frequency of extremes events have a direct impact on crop yield and damages. Climate anomalies projections at monthly and yearly timescale allows us for adapting a cropping system (crops, varieties and management) to take advantage of favorable conditions or reduce the effect of adverse conditions. The objective of this work is to develop indices to evaluate the effect of climatic variability in summer cropping systems of Iberian Peninsula, in an attempt of relating yield variability to climate variability, extending the work of Rodríguez-Puebla (2004).
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La medida de la presión sonora es un proceso de extrema importancia para la ingeniería acústica, de aplicación en numerosas áreas de esta disciplina, como la acústica arquitectónica o el control de ruido. Sobre todo en esta última, es necesario poder efectuar medidas precisas en condiciones muy diversas. Por otra parte, la ubicuidad de los dispositivos móviles inteligentes (smartphones, tabletas, etc.), dispositivos que integran potencia de procesado, conectividad, interactividad y una interfaz intuitiva en un tamaño reducido, abre la posibilidad de su uso como sistemas de medida de calidad y de coste bajo. En este Proyecto se pretende utilizar las capacidades de entrada y salida, procesado, conectividad inalámbrica y geolocalización de los dispositivos móviles basados en iOS, en concreto el iPhone, para implementar un sistema de medidas acústicas que iguale o supere las prestaciones de los sonómetros existentes en el mercado. SonoPhone permitirá, mediante la conexión de un micrófono de medida adecuado, la realización de medidas de acuerdo a las normas técnicas en vigor, así como la posibilidad de programar, configurar y almacenar o trasmitir las medidas realizadas, que además estarán geolocalizadas con el GPS integrado en el dispositivo móvil. También se permitirá enviar los datos de la medida a un almacenamiento remoto en la nube. La aplicación tiene una estructura modular en la que un módulo de adquisición de datos lee la señal del micrófono, un back-end efectúa el procesado necesario, y otros módulos permiten la calibración del dispositivo y programar y configurar las medidas, así como su almacenamiento y transmisión en red. Una interfaz de usuario (GUI) permite visualizar las medidas y efectuar las configuraciones deseadas por el usuario, todo ello en tiempo real. Además de implementar la aplicación, se ha realizado una prueba de funcionamiento para determinar si el hardware del iPhone es adecuado para la medida de la presión acústica de acuerdo a las normas internacionales. Sound pressure measurement is an extremely important process in the field of acoustic engineering, with applications in numerous subfields, like for instance building acoustics and noise control, where it is necessary to be able to accurately measure sound pressure in very diverse (and sometimes adverse) conditions. On the other hand, the growing ubiquity of mobile devices such as smartphones or tablets, which combine processing power, connectivity, interactivity and an intuitive interface in a small size, makes it possible to use these devices as quality low-cost measurement systems. This Project aims to use the input-output capabilities of iOS-based mobile devices, in particular the iPhone, together with their processing power, wireless connectivity and geolocation features, to implement an acoustic measurement system that rivals the performance of existing devices. SonoPhone allows, with the addition of an adequate measurement microphone, to carry out measurements that comply with current technical regulations, as well as programming, configuring, storing and transmitting the results of the measurement. These measurements will be geolocated using the integrated GPS, and can be transmitted effortlessly to a remote cloud storage. The application is structured in modular fashion. A data acquisition module reads the signal from the microphone, while a back-end module carries out the necessary processing. Other modules permit the device to be calibrated, or control the configuration of the measurement and its storage or transmission. A Graphical User Interface (GUI) allows visual feedback on the measurement in progress, and provides the user with real-time control over the measurement parameters. Not only an application has been developed; a laboratory test was carried out with the goal of determining if the hardware of the iPhone permits the whole system to comply with international regulations regarding sound level meters.