933 resultados para disaster research centers


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Anelis Kaiser is associate researcher at the Center for Cognitive Science at the University of Freiburg, Germany. Dr. Kaiser recently co-edited a special issue of the journal Neuroethics on gender and brain science. She is co-founder (with Isabelle Dussauge) of the interdisciplinary network NeuroGenderings, which brings together experts from the brain sciences, the humanities and science studies (STS) to critically study the sexed brain. She has published on sex and gender as constructed categories in science as well as on the topics of multilingualism and language processing in the brain. Co-sponsored with the Center for Lesbian and Gay Studies. - See more at: http://www.gc.cuny.edu/Page-Elements/Academics-Research-Centers-Initiatives/Centers-and-Institutes/Center-for-the-Study-of-Women-and-Society/Center-Events#sthash.bDeBg5fk.dpuf

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Understanding the relationship between diet, physical activity and health in humans requires accurate measurement of body composition and daily energy expenditure. Stable isotopes provide a means of measuring total body water and daily energy expenditure under free-living conditions. While the use of isotope ratio mass spectrometry (IRMS) for the analysis of 2H (Deuterium) and 18O (Oxygen-18) is well established in the field of human energy metabolism research, numerous questions remain regarding the factors which influence analytical and measurement error using this methodology. This thesis was comprised of four studies with the following emphases. The aim of Study 1 was to determine the analytical and measurement error of the IRMS with regard to sample handling under certain conditions. Study 2 involved the comparison of TEE (Total daily energy expenditure) using two commonly employed equations. Further, saliva and urine samples, collected at different times, were used to determine if clinically significant differences would occur. Study 3 was undertaken to determine the appropriate collection times for TBW estimates and derived body composition values. Finally, Study 4, a single case study to investigate if TEE measures are affected when the human condition changes due to altered exercise and water intake. The aim of Study 1 was to validate laboratory approaches to measure isotopic enrichment to ensure accurate (to international standards), precise (reproducibility of three replicate samples) and linear (isotope ratio was constant over the expected concentration range) results. This established the machine variability for the IRMS equipment in use at Queensland University for both TBW and TEE. Using either 0.4mL or 0.5mL sample volumes for both oxygen-18 and deuterium were statistically acceptable (p>0.05) and showed a within analytical variance of 5.8 Delta VSOW units for deuterium, 0.41 Delta VSOW units for oxygen-18. This variance was used as “within analytical noise” to determine sample deviations. It was also found that there was no influence of equilibration time on oxygen-18 or deuterium values when comparing the minimum (oxygen-18: 24hr; deuterium: 3 days) and maximum (oxygen-18: and deuterium: 14 days) equilibration times. With regard to preparation using the vacuum line, any order of preparation is suitable as the TEE values fall within 8% of each other regardless of preparation order. An 8% variation is acceptable for the TEE values due to biological and technical errors (Schoeller, 1988). However, for the automated line, deuterium must be assessed first followed by oxygen-18 as the automated machine line does not evacuate tubes but merely refills them with an injection of gas for a predetermined time. Any fractionation (which may occur for both isotopes), would cause a slight elevation in the values and hence a lower TEE. The purpose of the second and third study was to investigate the use of IRMS to measure the TEE and TBW of and to validate the current IRMS practices in use with regard to sample collection times of urine and saliva, the use of two TEE equations from different research centers and the body composition values derived from these TEE and TBW values. Following the collection of a fasting baseline urine and saliva sample, 10 people (8 women, 2 men) were dosed with a doubly labeled water does comprised of 1.25g 10% oxygen-18 and 0.1 g 100% deuterium/kg body weight. The samples were collected hourly for 12 hrs on the first day and then morning, midday, and evening samples were collected for the next 14 days. The samples were analyzed using an isotope ratio mass spectrometer. For the TBW, time to equilibration was determined using three commonly employed data analysis approaches. Isotopic equilibration was reached in 90% of the sample by hour 6, and in 100% of the sample by hour 7. With regard to the TBW estimations, the optimal time for urine collection was found to be between hours 4 and 10 as to where there was no significant difference between values. In contrast, statistically significant differences in TBW estimations were found between hours 1-3 and from 11-12 when compared with hours 4-10. Most of the individuals in this study were in equilibrium after 7 hours. The TEE equations of Prof Dale Scholler (Chicago, USA, IAEA) and Prof K.Westerterp were compared with that of Prof. Andrew Coward (Dunn Nutrition Centre). When comparing values derived from samples collected in the morning and evening there was no effect of time or equation on resulting TEE values. The fourth study was a pilot study (n=1) to test the variability in TEE as a result of manipulations in fluid consumption and level of physical activity; the magnitude of change which may be expected in a sedentary adult. Physical activity levels were manipulated by increasing the number of steps per day to mimic the increases that may result when a sedentary individual commences an activity program. The study was comprised of three sub-studies completed on the same individual over a period of 8 months. There were no significant changes in TBW across all studies, even though the elimination rates changed with the supplemented water intake and additional physical activity. The extra activity may not have sufficiently strenuous enough and the water intake high enough to cause a significant change in the TBW and hence the CO2 production and TEE values. The TEE values measured show good agreement based on the estimated values calculated on an RMR of 1455 kcal/day, a DIT of 10% of TEE and activity based on measured steps. The covariance values tracked when plotting the residuals were found to be representative of “well-behaved” data and are indicative of the analytical accuracy. The ratio and product plots were found to reflect the water turnover and CO2 production and thus could, with further investigation, be employed to identify the changes in physical activity.

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This special volume of Procedia Engineering contains papers presented at the 12th Global Congress on Manufacturing and Management (GCMM - 2014), held during 8-10 December 2014 at VIT University, Vellore, India. A total of 258 papers were presented during the conference, covering the entire spectrum of Materials Processing, Manufacturing Engineering, Industrial Engineering and Management. Materials and Manufacturing field is undergoing a rapid transformation due to unexpected challenges arising from the current approach to optimization and continuous performance improvement in manufacturing processes, production of large products and development of new materials. The 12th edition of the conference has earmarked the objective to offer a common platform for professionals, researchers and educators from industry, research centers and academia to present and discuss recent advances in the field of Manufacturing Engineering.

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Context: Identifying susceptibility genes for schizophrenia may be complicated by phenotypic heterogeneity, with some evidence suggesting that phenotypic heterogeneity reflects genetic heterogeneity. Objective: To evaluate the heritability and conduct genetic linkage analyses of empirically derived, clinically homogeneous schizophrenia subtypes. Design: Latent class and linkage analysis. Setting: Taiwanese field research centers. Participants: The latent class analysis included 1236 Han Chinese individuals with DSM-IV schizophrenia. These individuals were members of a large affected-sibling-pair sample of schizophrenia (606 ascertained families), original linkage analyses of which detected a maximum logarithm of odds (LOD) of 1.8 (z = 2.88) on chromosome 10q22.3. Main Outcome Measures: Multipoint exponential LOD scores by latent class assignment and parametric heterogeneity LOD scores. Results: Latent class analyses identified 4 classes, with 2 demonstrating familial aggregation. The first (LC2) described a group with severe negative symptoms, disorganization, and pronounced functional impairment, resembling “deficit schizophrenia.” The second (LC3) described a group with minimal functional impairment, mild or absent negative symptoms, and low disorganization. Using the negative/deficit subtype, we detected genome-wide significant linkage to 1q23-25 (LOD = 3.78, empiric genome-wide P = .01). This region was not detected using the DSM-IV schizophrenia diagnosis, but has been strongly implicated in schizophrenia pathogenesis by previous linkage and association studies.Variants in the 1q region may specifically increase risk for a negative/deficit schizophrenia subtype. Alternatively, these results may reflect increased familiality/heritability of the negative class, the presence of multiple 1q schizophrenia risk genes, or a pleiotropic 1q risk locus or loci, with stronger genotype-phenotype correlation with negative/deficit symptoms. Using the second familial latent class, we identified nominally significant linkage to the original 10q peak region. Conclusion: Genetic analyses of heritable, homogeneous phenotypes may improve the power of linkage and association studies of schizophrenia and thus have relevance to the design and analysis of genome-wide association studies.

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Nanotechnology is a new technology which is generating a lot of interest among academicians, practitioners and scientists. Critical research is being carried out in this area all over the world.Governments are creating policy initiatives to promote developments it the nanoscale science and technology developments. Private investment is also seeing a rising trend. Large number of academic institutions and national laboratories has set up research centers that are workingon the multiple applications of nanotechnology. Wide ranges of applications are claimed for nanotechnology. This consists of materials, chemicals, textiles, semiconductors, to wonder drug delivery systems and diagnostics. Nanotechnology is considered to be a next big wave of technology after information technology and biotechnology. In fact, nanotechnology holds the promise of advances that exceed those achieved in recent decades in computers and biotechnology. Much interest in nanotechnology also could be because of the fact that enormous monetary benefits are expected from nanotechnology based products. According to NSF, revenues from nanotechnology could touch $ 1 trillion by 2015. However much of the benefits are projected ones. Realizing claimed benefits require successful development of nanoscience andv nanotechnology research efforts. That is the journey of invention to innovation has to be completed. For this to happen the technology has to flow from laboratory to market. Nanoscience and nanotechnology research efforts have to come out in the form of new products, new processes, and new platforms.India has also started its Nanoscience and Nanotechnology development program in under its 10(th) Five Year Plan and funds worth Rs. One billion have been allocated for Nanoscience and Nanotechnology Research and Development. The aim of the paper is to assess Nanoscience and Nanotechnology initiatives in India. We propose a conceptual model derived from theresource based view of the innovation. We have developed a structured questionnaire to measure the constructs in the conceptual model. Responses have been collected from 115 scientists and engineers working in the field of Nanoscience and Nanotechnology. The responses have been analyzed further by using Principal Component Analysis, Cluster Analysis and Regression Analysis.

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[ES] Cada vez más el deporte-espectáculo se está abriendo paso como objeto de estudio en los centros de investigación avanzada, como consecuencia de la necesidad de gestionar los altos presupuestos de las entidades deportivas.

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[EN] This paper is an outcome of the ERASMUS IP program called TOPCART, there are more information about this project that can be accessed from the following item:

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Neste trabalho abordamos a teoria de Ginzburg-Landau da supercondutividade (teoria GL). Apresentamos suas origens, características e resultados mais importantes. A idéia fundamental desta teoria e descrever a transição de fase que sofrem alguns metais de uma fase normal para uma fase supercondutora. Durante uma transição de fase em supercondutores do tipo II é característico o surgimento de linhas de fluxo magnético em determinadas regiões de tamanho finito chamadas comumente de vórtices. A dinâmica destas estruturas topológicas é de grande interesse na comunidade científica atual e impulsiona incontáveis núcleos de pesquisa na área da supercondutividade. Baseado nisto estudamos como essas estruturas topológicas influenciam em uma transição de fase em um modelo bidimensional conhecido como modelo XY. No modelo XY vemos que os principais responsáveis pela transição de fase são os vórtices (na verdade pares de vórtice-antivórtice). Villain, observando este fato, percebeu que poderia tornar explícita a contribuição desses defeitos topológicos na função de partição do modelo XY realizando uma transformação de dualidade. Este modelo serve como inspiração para a proposta deste trabalho. Apresentamos aqui um modelo baseado em considerações físicas sobre sistemas de matéria condensada e ao mesmo tempo utilizamos um formalismo desenvolvido recentemente na referência [29] que possibilita tornar explícita a contribuição dos defeitos topológicos na ação original proposta em nossa teoria. Após isso analisamos alguns limites clássicos e finalmente realizamos as flutuações quânticas visando obter a expressão completa da função correlação dos vórtices o que pode ser muito útil em teorias de vórtices interagentes (dinâmica de vórtices).

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A presente dissertação focaliza a produção intelectual no tema do trabalho, realizada sob a forma de dissertações de mestrado e teses de dutorado defendidas entre 1990 e 2008. Na pesquisa, deu-se prioridade à produção em Saúde Coletiva, sendo investigados 25 centros de pesquisa filiados à ABRASCO (Associação Brasileira de Saúde Coletiva). Foi possível identificar, entre 1990 e 2008, um total de 564 produções acadêmicas distribuídas entre dissertações de mestrado e teses de doutorado. Desta produção, 75% são dissertações e 25%, teses. A produção total apresentou-se concentrada nos Estados de São Paulo (221 publicações) e Rio de Janeiro (208 publicações), compondo juntos 76% de toda a produção no país. As cinco universidades que mais se destacam na produção da área são: FIOCRUZ (Fundação Oswaldo Cruz), com 26,06% da produção nacional; USP (Universidade de São Paulo), com 18,79%; UNICAMP (Universidade de Campinas), com 14,54%; UFBA (Universidade Federal da Bahia), com 7,98% e UERJ (Universidade do Estado do Rio de Janeiro), com 6,56%. Além da produção espacial, as dissertações e teses foram classificadas por áreas temáticas, sendo classificadas em 13 descritores. Os resultados revelam uma concentração nas áreas de saúde do trabalhador, higiene e segurança no trabalho e recursos humanos. Temas referentes a trabalho e desenvolvimento tecnológico; emprego e renda; mudanças nas relações de trabalho; qualidade de vida e trabalho, gênero e saúde foram identificados como os de mais baixa densidade. Esses segmentos constituem lacunas a serem superadas por centros não-hegemônicos. Uma sugestão é a consolidação de linhas de pesquisa, por meio de alianças institucionais em torno de temas com baixa produção. As instituições com índices menores de publicação podem concentrar seus esforços em uma expansão da produção no tema do trabalho, garantindo um crescimento e a desconcentração da produção intelectual do Brasil.

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O objeto desta pesquisa é a estrutura perversão e seus desdobramentos na relação com o gozo, abarcando o fetichismo e o masoquismo como os dois paradigmas dessa estrutura. Seu objetivo central é investigar como a Verleugnung e o gozo se conjugam para manter as duas modalidades de gozo perverso acima descritas. Seus objetivos complementares procuram estabelecer a genealogia do pai em Freud e a intrínseca relação que o Urvater possui com a fantasia perversa. A primeira parte da dissertação versa sobre a perversão como estrutura clínica, elaboração proposta por Jacques Lacan. Nela é discutida a questão do simbólico, onde uma lei opera para que o discurso seja o veículo através do qual um diagnóstico em psicanálise seja proposto. Do simbólico, a dissertação concentra-se no gozo, no capítulo seguinte, a fim de elaborar de uma diferença estrutural mais fidedigna entre neurose, psicose e perversão. Em seguida, a pesquisa entra na questão da Verleugung do gozo como uma possível aproximação entre o fetichismo e o masoquismo como paradigmas da estrutura perversa.

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Em todo o mundo se multiplicam centros de pesquisa, conferências, cursos, projetos de extensão, livros e revistas focados na interseção entre Neurociências e Educação. Em comum, estas iniciativas compartilham da crença de que os achados neurocientíficos podem contribuir para o aperfeiçoamento do processo educacional. Isto ocorreria de duas maneiras:fornecendo uma melhor compreensão da maneira como as pessoas aprendem e com isso,colaborando com a criação de políticas e práticas educacionais mais eficazes e; contribuindo com o entendimento das dificuldades ou transtornos de aprendizagem, de forma a fornecer subsídios para o desenvolvimento de abordagens e tratamentos mais efetivos para tais problemas. A neuroeducação, disciplina de interface entre os campos neurocientifico e educacional, compartilha dessa crença. Criada entre o final do século XX e o início do Século XXI, esta disciplina, por vezes chamada de Mente, Cérebro e Educação ou Ciência do Aprendizado, pretende simultaneamente construir um conhecimento sobre o aprendizado e desenvolver práticas pedagógicas. No presente trabalho pretendemos compreender especificamente como ocorre esta aproximação entre os campos neurocientífico e educacional no Brasil. Para tanto realizamos uma análise de diversos materiais (artigos, livros,revistas, vídeos) produzidos sobre o tema por neurocientistas, educadores e também por neuroeducadores, nova categoria profissional proposta pelo Instituto de Pesquisas em Neuroeducação. Constatamos que a neuroeducação vem se constituindo no país enquanto um campo extremamente multifacetado permeado por diversos discursos e práticas assim como por múltiplas versões do cérebro humano.

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Este trabalho tem o objetivo de discutir o surgimento e desenvolvimento da noção de qualidade de vida como uma estratégia de avaliação em saúde, a partir da trajetória do instrumento de qualidade de vida da Organização Mundial de Saúde, WHOQOL. Através de uma perspectiva construcionista foi realizada uma pesquisa bibliográfica e documental identificando os usos da noção de qualidade de vida nas políticas de saúde internacionais e na literatura médica. A discussão proposta pelo trabalho aponta para as relações entre os processos de globalização e o campo da saúde como a matriz política e cognitiva para o surgimento dos instrumentos de avaliação de qualidade de vida, principalmente a partir de sua perspectiva transcultural. A criação e uso do WHOQOL em seus diversos centros de pesquisa distribuídos em 40 países visam produzir consensos técnicos e políticos para a construção de sistemas de informação em saúde baseada em critérios universais, possibilitando às agências internacionais, como a OMS, influir globalmente sobre as políticas nacionais de saúde.

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This paper presents a simple design and the testing of a blackbody prototype. The physical properties and geometry of the cavity produce a radiator or blackbody with an emissivity greater than 0.99. The prototype has the advantages of having a traditional spherical cavity made of alumina refractory cement and a radiative emission very close to that of an ideal blackbody. The prototype can be used as a calibration standard for other radiation measuring instruments or sensors. Experimental measurements of radiant flux of the prototype measured with a calibrated infrared radiometer and a wide spectrum radiometer are also presented. The prototype is easy to construct and the material required are available to most research centers, laboratories, industries, and universities. © 2010 American Institute of Physics.