175 resultados para EBL resists
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The evolution of crystallographic texture in polycrystalline copper and nickel has been studied. The deformation texture evolution in these two materials over seven orders of magnitude of strain rate from 3 x 10(-4) to similar to 2.0 x 10(+3) s(-1) show little dependence on the stacking fault energy (SFE) and the amount of deformation. Higher strain rate deformation in nickel leads to weakerh < 101 > texture because of extensive microband formation and grain fragmentation. This behavior, in turn, causes less plastic spin and hence retards texture evolution. Copper maintains the stable end < 101 > component over large strain rates (from 3 x 10(-4) to 10(+2) s(-1)) because of its higher strain-hardening rate that resists formation of deformation heterogeneities. At higher strain rates of the order of 2 x 10(+3) s(-1), the adiabatic temperature rise assists in continuous dynamic recrystallization that leads to an increase in the volume fraction of the < 101 > component. Thus, strain-hardening behavior plays a significant role in the texture evolution of face-centered cubic materials. In addition, factors governing the onset of restoration mechanisms like purity and melting point govern texture evolution at high strain rates. SFE may play a secondary role by governing the propensity of cross slip that in turn helps in the activation of restoration processes.
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Long-term deterioration in the performance of PEFCs is attributed largely to reduction in active area of the platinum catalyst at cathode, usually caused by carbon-support corrosion. It is found that the use of graphitic carbon as cathode-catalyst support enhances its long-term stability in relation to non-graphitic carbon. This is because graphitic-carbon-supported- Pt (Pt/GrC) cathodes exhibit higher resistance to carbon corrosion in-relation to non-graphitic-carbon-supported- Pt (Pt/Non-GrC) cathodes in PEFCs during accelerated stress test (AST) as evidenced by chronoamperometry and carbon dioxide studies. The corresponding change in electrochemical surface area (ESA), cell performance and charge-transfer resistance are monitored through cyclic voltammetry (CV), cell polarisation and impedance measurements, respectively. The degradation in performance of PEFC with Pt/GrC cathode is found to be around 10% after 70 h of AST as against 77% for Pt/Non-GrC cathode. It is noteworthy that Pt/GrC cathodes can withstand even up to 100 h of AST with nominal effect on their performance. Xray diffraction (XRD), Raman spectroscopy, transmission electron microscopy and cross-sectional field-emission scanning electron microscopy (FE-SEM) studies before and after AST suggest lesser deformation in catalyst layer and catalyst particles for Pt/GrC cathodes in relation to Pt/Non-GrC cathodes, reflecting that graphitic carbon-support resists carbon corrosion and helps mitigating aggregation of Pt-particles.
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Innate immunity recognizes and resists various pathogens; however, the mechanisms regulating pathogen versus non-pathogen discrimination are still imprecisely understood. Here, we demonstrate that pathogen-specific activation of TLR2 upon infection with Mycobacterium bovis BCG, in comparison with other pathogenic microbes, including Salmonella typhimurium and Staphylococcus aureus, programs macrophages for robust up-regulation of signaling cohorts of Wnt-beta-catenin signaling. Signaling perturbations or genetic approaches suggest that infection-mediated stimulation of Wnt-beta-catenin is vital for activation of Notch1 signaling. Interestingly, inducible NOS (iNOS) activity is pivotal for TLR2-mediated activation of Wnt-beta-catenin signaling as iNOS(-/-) mice demonstrated compromised ability to trigger activation of Wnt-beta-catenin signaling as well as Notch1-mediated cellular responses. Intriguingly, TLR2-driven integration of iNOS/NO, Wnt-beta-catenin, and Notch1 signaling contributes to its capacity to regulate the battery of genes associated with T(Reg) cell lineage commitment. These findings reveal a role for differential stimulation of TLR2 in deciding the strength of Wnt-beta-catenin signaling, which together with signals from Notch1 contributes toward the modulation of a defined set of effector functions in macrophages and thus establishes a conceptual framework for the development of novel therapeutics.
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The high efficiency of fuel-cell-powered electric vehicles makes them a potentially viable option for future transportation. Polymer Electrolyte Fuel Cells (PEFCs) are most promising among various fuel cells for electric traction due to their quick start-up and low-temperature operation. In recent years, the performance of PEFCs has reached the acceptable level both for automotive and stationary applications and efforts are now being expended in increasing their durability, which remains a major concern in their commercialization. To make PEFCs meet automotive targets an understanding of the factors affecting the stability of carbon support and platinum catalyst is critical. Alloying platinum (Pt) with first-row transition metals such as cobalt (Co) is reported to facilitate both higher degree of crystallinity and enhanced activity in relation to pristine Pt. But a major challenge for the application of Pt-transition metal alloys in PEFCs is to improve the stability of these binary catalysts. Dissolution of the non-precious metal in the acidic environment could alleviate the activity of the catalysts and hence cell performance. The use of graphitic carbon as cathode-catalyst support enhances the long-term stability of Pt and its alloys in relation to non-graphitic carbon as the former exhibits higher resistance to carbon corrosion in relation to the latter in PEFC cathodes during accelerated-stress test (AST). Changes in electrochemical surface area (ESA), cell performance and charge-transfer resistance are monitored during AST through cyclic voltammetry, cell polarization and impedance measurements, respectively. Studies on catalytic electrodes with X-ray diffraction, Raman spectroscopy and transmission electron microscopy reflect that graphitic carbon-support resists carbon corrosion and helps mitigating aggregation of Pt and Pt3Co catalyst particles. (C) 2012 The Electrochemical Society. DOI: 10.1149/2.051301jes] All rights reserved.
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Long-term deterioration in the performance of PEFCs is attributed largely to reduction in active area of the platinum catalyst at cathode, usually caused by carbon-support corrosion. Multi-walled carbon-nanotubes (MWCNTs) as cathode-catalyst support are found to enhance long-term stability of platinum catalyst (Pt) in relation to non-graphitic carbon. In addition, highly graphitic MWCNTs (G-MWCNTs) are found to be electrochemically more stable than pristine MWCNTs. This is because graphitic-carbon-supported-Pt (Pt/MWCNTs) cathodes exhibit higher resistance to carbon corrosion in-relation to non-graphitic-carbon-supported-Pt (Pt/C) cathodes in PEFCs during accelerated stress-test (AST) as evidenced by chronoamperometry and carbon dioxide studies. The corresponding change in electrochemical surface area (ESA), cell performance, and charge-transfer resistance are monitored through cyclic voltammetry, cell polarization, and impedance measurements, respectively. The extent of crystallinity, namely amorphous or graphitic nature of the three supports, is examined by Raman spectroscopy. X-ray diffraction and transmission electron microscopy studies both prior and after AST suggest lesser deformation in catalyst layer and catalyst particles for Pt/G-MWCNTs and Pt/MWCNTs cathodes in relation to Pt/C cathodes, reflecting that graphitic carbon-support resists carbon corrosion and helps mitigating aggregation of Pt particles. It is also found that with increasing degree of graphitization, the electrochemical stability for MWCNTs increases due to the lesser surface defects.
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An analysis on crack creep propagation problem of power-law nonlinear viscoelastic materials is presented. The creep incompressilility assumption is used. To simulate fracture behavior of craze region, it is assumed that in the fracture process zone near the crack tip, the cohesive stress sigma(f) acts upon the crack surfaces and resists crack opening. Through a perturbation method, i. e., by superposing the Mode-I applied force onto a referential uniform stress state, which has a trivial solution and gives no effect on the solution of the original problem, the nonlinear viscoelastic problem is reduced to linear problem. For weak nonlinear materials, for which the power-law index n similar or equal to 1, the expressions of stress and crack surface displacement are derived. Then, the fracture process zone local energy criterion is proposed and based on which the formulas of cracking incubation time t
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383 p. ; P.315-383: "Erauso Kateriñe" antzezlanaren edizioa dago.
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170 p.
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Esta tese se propõe a explorar as relações entre arte, loucura e polis a partir da aposta de que a vida possa ser permanentemente criada como obra de arte aberta às variações e diferenciações inerentes ao viver. Tal procedimento estético demanda a constituição de espaços-tempo heterotópicos, capazes de simultaneamente engendrar e abrigar contraposicionamentos às políticas de sujeição e controle contemporâneos. Para tanto, problematizamos as instituições arte, loucura e polis, extraindo, dessas formas estratificadas, virtualidades que possibilitem a emergência de modos menores, fazendo-as variar. Partimos da polis, dimensão imaterial e coletiva das cidades, ao mesmo tempo máquina abstrata de engendramento das formas que a habitam, a deslocam, a produzem e forma que a vida assume nesses territórios, para visibilizar como se engendram loucuras e artes de viver. Partimos de fragmentos históricos, literários e biográficos para pensar outros modos de habitar e tecer trajetórias na cidade, instando a tessitura de relações de criação de si e do mundo, por meio da invenção de espaços outros entre a loucura e a arte. Da loucura pensada por Foucault como positividade domesticada pelo saber médico, instauramos séries da experiência trágica ao fora e, deste, ao fluxo esquizo, proposto por Deleuze e Guattari para finalmente chegar a uma loucura menor, loucura que é antes dissolução das formas identitárias e estabilizadas e que materializa o delírio como dispositivo estético de criação de mundos. Finalmente, chegamos à arte, deslocando-a da dimensão de criação de objetos estéticos, para pensá-la como dimensão imanente ao próprio viver. Neste ponto nos valemos de Nietzsche, Deleuze e Foucault para pensar a vida como experimentação que resiste às armadilhas que a aprisionam em modelos préestabelecidos, vida que se cria a cada instante como obra de arte. Ativando, portanto, uma arte menor, arte de viver, damos corpo à proposição foucaultiana de uma estética da existência, procedimento por meio do qual se cria a si mesmo ao criar-se outro nas relações com o mundo. Procedimento, portanto, estético, ético e político. Instabilizadas e problematizadas as formas iniciais polis, loucura e arte , tomamos os casos Bispo do Rosário e Moacir para investigar, em suas trajetórias, como é possível do entrelaçamento entre elas, se constituírem estilizações da existência, de forma a fazer derivar o real e ficcionar modos de viver. Por fim, recorremos à poesia, delírio das palavras para ensaiar possibilidades de criação de espaços-tempo singulares, heterotopias menores, espécies de utopias efetivamente realizadas, como afirma Foucault, que nos permitam fazer da vida obra de arte.
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环境胁迫诱导的脯氨酸积累是植物一种非常显著的代谢适应机制。和其他胁迫应答反应一样,脯氨酸积累也受到各种植物激素和信号分子的调控,如脱落酸、钙离子等。本论文的研究目的在于了解植物激素油菜素内酯(BR)在拟南芥脯氨酸积累中的作用。 首先,我们发现拟南芥经不同浓度的24-表油菜素内酯(EBL)预处理后,200mM NaCl诱导的脯氨酸积累受到不同程度的抑制。同时脯氨酸合成途径的关键基因P5CS1以及OAT的诱导表达减弱,降解途径的关键酶基因PDH1的转录水平有所上调,说明脯氨酸积累程度的降低是相关基因表达的调控的结果。BR缺陷型突变体det2-1和不敏感突变体bin2-1在盐胁迫下的脯氨酸积累均高于野生型,而且det2-1的P5CS1受到的诱导增加,PDH1的表达有所下调。说明BR在脯氨酸积累中起负调控的作用。 经不同浓度的24-EBL处理后,50µM ABA诱导的脯氨酸积累受到明显抑制。det2-1和bin2-1在ABA处理下脯氨酸积累均高于野生型,但是ABA不敏感突变体abi1-1在盐胁迫下的脯氨酸积累并没有受到BR的抑制。说明BR可以特异地抑制由ABA介导的脯氨酸积累,而对不依赖ABA途径介导的脯氨酸积累没有明显影响。但是,BR处理后并没有改变ABA诱导的P5CS1的转录水平。 上述BR对脯氨酸的抑制作用是在短日照(8小时光照)条件下得到的,而在长日照(16小时光照)条件下生长和处理材料时,24-EBL对盐胁迫或ABA诱导的脯氨酸积累都略有促进作用。det2-1和bin2-1中的脯氨酸积累仍比野生型高。由以上的结果推测光照增加可以抑制BR对脯氨酸积累的抑制作用。 我们还对det2-1和bin2-1在生长发育各个时期的盐敏感性进行了初步鉴定。det2-1在种子萌发阶段对盐胁迫和ABA超敏感;在幼苗生长阶段det2-1和bin2-1在长势、存活率、根长以及鲜重方面对盐胁迫都比野生型更敏感,外加24-EBL可以部分恢复det2-1的盐敏感性;成株阶段bin2-1则表现出比野生型明显的抗盐性。这些结果表明BR可能对拟南芥盐响应有重要调节作用。
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In the current study, the effects of polar solvents on tissue volume and mechanical properties are considered. Area shrinkage measurements are conducted for mineralized bone tissue samples soaked in polar solvents. Area shrinkage is used to calculate approximate linear and volume shrinkage. Results are compared with viscoelastic mechanical parameters for bone in the same solvents (as measured previously) and with both shrinkage measurements and mechanical data for nonmineralized tissues, as taken from the existing literature. As expected, the shrinkage of mineralized tissues is minimal when compared with shrinkage of nonmineralized tissues immersed in the same polar solvents. The mechanical changes in bone are also substantially less than in nonmineralized tissues. The largest stiffness values are found in shrunken bone samples (immersed in acetone and ethanol). The mineral phase in bone thus resists tissue shrinkage that would otherwise occur in the pure soft tissue phase. © 2007 Materials Research Society.
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BACKGROUND: When fresh morselized graft is compacted, as in impaction bone-grafting for revision hip surgery, fat and marrow fluid is either exuded or trapped in the voids between particles. We hypothesized that the presence of incompressible fluid damps and resists compressive forces during impaction and prevents the graft particles from moving into a closer formation, thus reducing the graft strength. In addition, viscous fluid such as fat may act as an interparticle lubricant, thus reducing the interlocking of the particles. METHODS: We performed mechanical shear testing in the laboratory with use of fresh-frozen human femoral-head allografts that had been passed through different orthopaedic bone mills to produce graft of differing particle-size distributions (grading). RESULTS: After compaction of fresh graft, fat and marrow fluid continued to escape on application of normal loads. Washed graft, however, had little lubricating fluid and better contact between the particles, increasing the shear resistance. On mechanical testing, washed graft was significantly (p < 0.001) more resistant to shearing forces than fresh graft was. This feature was consistent for different bone mills that produced graft of different particle-size distributions and shear strengths. CONCLUSIONS: Removal of fat and marrow fluid from milled human allograft by washing the graft allows the production of stronger compacted graft that is more resistant to shear, which is the usual mode of failure. Further research into the optimum grading of particle sizes from bone mills is required.
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Background: When fresh morselized graft is compacted, as in impaction bone-grafting for revision hip surgery, fat and marrow fluid is either exuded or trapped in the voids between particles. We hypothesized that the presence of incompressible fluid damps and resists compressive forces during impaction and prevents the graft particles from moving into a closer formation, thus reducing the graft strength. In addition, viscous fluid such as fat may act as an interparticle lubricant, thus reducing the interlocking of the particles. Methods: We performed mechanical shear testing in the laboratory with use of fresh-frozen human femoral-head allografts that had been passed through different orthopaedic bone mills to produce graft of differing particle-size distributions (grading). Results: After compaction of fresh graft, fat and marrow fluid continued to escape on application of normal loads. Washed graft, however, had little lubricating fluid and better contact between the particles, increasing the shear resistance. On mechanical testing, washed graft was significantly (p < 0.001) more resistant to shearing forces than fresh graft was. This feature was consistent for different bone mills that produced graft of different particle-size distributions and shear strengths. Conclusions: Removal of fat and marrow fluid from milled human allograft by washing the graft allows the production of stronger compacted graft that is more resistant to shear, which is the usual mode of failure. Further research into the optimum grading of particle sizes from bone mills is required. Clinical Relevance: Understanding the mechanical properties of milled human allograft is important when impaction grafting is used for mechanical support. A simple means of improving the mechanical strength of graft produced by currently available bone mills, including an intraoperative washing technique, is described.
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In an earthquake, underground structures located in liquefiable soil deposits are susceptible to floatation following an earthquake event due to their lower unit weight relative to the surrounding saturated soil. Such uplift response of the buoyant structure is influenced by the soil it is buried in. In the case of a liquefiable soil deposit, the soil can lose its shear strength significantly in the event of an earthquake. If the soil liquefies fully, the buoyant structure can float towards the soil surface. However, a partly liquefied soil deposit retains some of its initial shear strength and resists the uplift. This paper discusses the different soil conditions and their influence on the uplift response of buoyant structures. © 2012 World Scientific Publishing Company.