927 resultados para Wier, R. W. (Robert W.)
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This study used event-related potentials to examine interactions between mood, sentence context, and semantic memory structure in schizophrenia. Seventeen male chronic schizophrenia and 15 healthy control subjects read sentence pairs after positive, negative, or neutral mood induction. Sentences ended with expected words (EW), within-category violations (WCV), or between-category violations (BCV). Across all moods, patients showed sensitivity to context indexed by reduced N400 to EW relative to both WCV and BCV. However, they did not show sensitivity to the semantic memory structure. N400 abnormalities were particularly enhanced under a negative mood in schizophrenia. These findings suggest abnormal interactions between mood, context processing, and connections within semantic memory in schizophrenia, and a specific role of negative mood in modulating semantic processes in this disease.
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FUNDAMENTO: Apesar de o limiar anaeróbio (LAn) ser utilizado na avaliação funcional de diferentes populações, estudos comparando métodos para sua identificação em diabéticos tipo-2 tem sido pouco realizados. OBJETIVO: Comparar protocolos de identificação do LAn em indivÃduos diabéticos tipo 2 e em não-diabéticos, e analisar respostas relacionadas ao equilÃbrio ácido-básico em intensidades relativas ao LAn. MÉTODOS: Diabéticos tipo 2 (n=10; 54,5±9,5 anos; 30,1±5,0 kg/m²) e jovens não-diabéticos (n=10; 36,6±12,8 anos; 23,9±5,0 kg/m²) realizaram teste incremental (TI) em ciclo ergômetro. O aumento desproporcional no equivalente ventilatório de oxigênio (VE/VO2) e lactatemia ([lac]) identificaram intensidades (Watts-W) correspondentes aos limiares ventilatório (LV) e de lactato (LL), respectivamente. A intensidade correspondente à menor glicemia ([glic]) foi considerada limiar glicêmico individual (LGI). O LAn também foi determinado por ajuste polinomial das razões VE/Watts (LV VE/W) e [lac]/Watts (LL[lac]/W), as quais identificaram intensidades acima das quais um aumento desproporcional na VE e [lac] ocorreram. RESULTADOS: Não foram observadas diferenças entre LL, LV, LG, LL[lac]/W e LV VE/W em diabéticos (85,0±32,1; 88,0±31,7; 86,0±33,8; 82,0±20,9 e 90,2±22,2W) e não-diabéticos (139,0±39,0; 133,0±42,7; 140,8±36,4; 122,7±44,3 e 133,0±39,1W). Contudo os valores de LAn diferiram significativamente entre grupos (p<0.001). A técnica de Bland-Altman confirmou concordância entre os protocolos. Reduções significativas no pH e pCO2 em paralelo a um aumento na [lac], pO2 e VE foram observadas em intensidades supra limiares. CONCLUSÃO: Os protocolos apresentaram, para ambos os grupos estudados, concordância na identificação do LAn, que se mostrou como uma intensidade de exercÃcio acima da qual ocorre perda de equilÃbrio ácido-básico.
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n.s. no.29(1992)
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Robert Wilhelm Ekman (1808-1873) oli Tukholmassa ja Pariisissakin opiskellut taidemaalari, joka kehitti Suomen taide-elämää ja erityisesti taidekoulutusta. Hänen monipuoliseen tuotantoonsa kuului kirkkotaidetta, kansankuvausta ja muinaissuomalaisia aiheita, joista tunnetuin on Ylioppilastaloon sijoitettu Väinämöisen soitto. Ekman tutustui myös Runebergiin ja kuvitti hänen aiheitaan, tässä pienessä kuvateoksessa Vänrikki Stålin tarinoita.
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The immense social and economic impact of bacterial pathogens, from drug-resistant infections in hospitals to the devastation of agricultural resources, has resulted in major investment to understand the causes and conse- quences of pathogen evolution. Recent genome se- quencing projects have provided insight into the evolution of bacterial genome structures; revealing the impact of mobile DNA on genome restructuring and pathogenicity. Sequencing of multiple genomes of relat- ed strains has enabled the delineation of pathogen evo- lution and facilitated the tracking of bacterial pathogens globally. Other recent theoretical and empirical studies have shown that pathogen evolution is significantly influenced by ecological factors, such as the distribution of hosts within the environment and the effects of co- infection. We suggest that the time is ripe for experi- mentalists to use genomics in conjunction with evolu- tionary ecology experiments to further understanding of how bacterial pathogens evolve.
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The development of novel intervention strategies for the control of zoonoses caused by bacteria such as Salmonella spp. in livestock requires appropriate experimental models to assess their suitability. Here, a novel porcine intestinal in vitro organ culture (IVOC) model utilizing cell crown (CC) technology (CCIVOC) (Scaffdex) was developed. The CCIVOC model was employed to investigate the characteristics of association of S. enterica serovar Typhimurium strain SL1344 with porcine intestinal tissue following exposure to a Lactobacillus plantarum strain. The association of bacteria to host cells was examined by light microscopy and electron microscopy (EM) after appropriate treatments and staining, while changes in the proteome of porcine jejunal tissues were investigated using quantitative label-free proteomics. Exposure of porcine intestinal mucosal tissues to L. plantarum JC1 did not reduce the numbers of S. Typhimurium bacteria associating to the tissues but was associated with significant (P < 0.005) reductions in the percentages of areas of intestinal IVOC tissues giving positive staining results for acidic mucins. Conversely, the quantity of neutrally charged mucins present within the goblet cells of the IVOC tissues increased significantly (P < 0.05). In addition, tubulin- was expressed at high levels following inoculation of jejunal IVOC tissues with L. plantarum. Although L. plantarum JC1 did not reduce the association of S. Typhimurium strain SL1344 to the jejunal IVOC tissues, detection of increased acidic mucin secretion, host cytoskeletal rearrangements, and proteins involved in the porcine immune response demonstrated that this strain of L. plantarum may contribute to protecting the pig from infections by S. Typhimurium or other pathogens.
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The co-evolution of bacterial plant pathogens and their hosts is a complex and dynamic process. Plant resistance can impose stress on invading pathogens that can lead to, and select for, beneficial changes in the bacterial genome. The Pseudomonas syringae pv. phaseolicola (Pph) genomic island PPHGI-1 carries an effector gene, avrPphB (hopAR1), which triggers the hypersensitive reaction in bean plants carrying the R3 resistance gene. Interaction between avrPphB and R3 generates an antimicrobial environment within the plant, resulting in the excision of PPHGI-1 and its loss from the genome. The loss of PPHGI-1 leads to the generation of a Pph strain able to cause disease in the plant. In this study, we observed that lower bacterial densities inoculated into resistant bean (Phaseolus vulgaris) plants resulted in quicker PPHGI-1 loss from the population, and that loss of the island was strongly influenced by the type of plant resistance encountered by the bacteria. In addition, we found that a number of changes occurred in the bacterial genome during growth in the plant, whether or not PPHGI-1 was lost. We also present evidence that the circular PPHGI-1 episome is able to replicate autonomously when excised from the genome. These results shed more light onto the plasticity of the bacterial genome as it is influenced by in planta conditions.
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Extracellular polysaccharide (EPS) is produced by diverse bacterial pathogens and fulfills assorted roles, including providing a structural matrix for biofilm formation and more specific functions in virulence, such as protection against immune defenses. We report here the first investigation of some of the genes important for biofilm formation in Photorhabdus luminescens and demonstrate the key role of the phosphomannose isomerase gene, manA, in the structure of functional EPS. Phenotypic analyses of a manA-deficient mutant showed the importance of EPS in motility, insect virulence, and biofilm formation on abiotic surfaces as well as the requirement of this gene for the use of mannose as the sole carbon source. Conversely, this defect had no apparent impact on symbiosis with the heterorhabditid nematode vector. A more detailed analysis of biofilm formation revealed that the manA mutant was able to attach to surfaces with the same efficiency as that of the wild-type strain but could not develop the more extended biofilm matrix structures. A compositional analysis of P. luminescens EPS reveals how the manA mutation has a major effect on the formation of a complete, branched EPS.