1,247 research outputs found

    Facing up to inequality and exclusion to end poverty and hunger in Latin America:

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    Poverty reduction, Hunger, Inequality, Extreme poverty, Poverty reduction programs, Growth and targeted poverty reduction,

    Development under conditions of inequality and distrust: Social cohesion in Latin America

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    "This paper analyzes the role of social cohesion in economic and institutional development and, broadly, the creation of welfare in Latin America. The paper defines the concept of social cohesion with reference to the notions of social capital and inequality. Using data and literature on Latin America, the paper argues that low interpersonal trust and entrenched inequality interfere with cohesion. The paper develops and introduces an exploratory index of cohesion structured around the definition proposed. Relying on correlations, and with appropriate caveats, the paper uses this index to explore tentative linkages between levels of cohesion and development outcomes. The paper presents evidence of positive linkages among social cohesion and economic growth, investment and innovation capacity, governmental effectiveness, the quality of public policies, and the predictability of the policy environment. Finally, the paper discusses the significance of these findings and some of the policy implications." from Author's AbstractSocial cohesion, Social capital, Trust, Inequality, Exclusion, Opportunities, Governance, Institutional development, economic growth, Development strategies,

    Erfahrungen mit der schweizerischen EntschuldungsfazilitÀt

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    Der Artikel von Kappel zeichnet sich durch seine Ausgewogenheit aus ; wir teilen die Analyse Kappels weitgehend. Der vorliegende Kommentar versteht sich als ErgĂ€nzung zum genannten Artikel und als vorlĂ€ufige Aufarbeitung gewisser Erfahrungen mit den bisher durchgefĂŒhrten Entschuldungsaktionen der Schweiz. Es sei In Erinnerung gerufen, dass der Bund im Rahmen seiner EntschuldungsfazilitĂ€t bisher verschiedene RĂŒckkaufaktionen von Schulden getĂ€tigt oder unterstĂŒtzt hat (auf bilateraler Ebene wur..

    Bottle-brush-shaped heterostructures of NiO-ZnO nanowires: growth study and sensing properties

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    We present here heterostructured ZnO-NiO nanowires, constituted by a core of single crystalline ZnO nanowires, covered by poly-crystalline NiO nanorods. The bottle-brush shape was investigated by SEM and TEM, confirming that a columnar growth of NiO occurred over the ZnO core, with a preferred orientation of NiO over ZnO nanowires. The heterostructured devices are proposed for gas sensing application. Bare ZnO nanowires and heterostructured sensors with two different thicknesses of NiO poly-crystalline nanorods were analysed for acetone, ethanol, NO2 and H2 detection. All sensors maintained n-type sensing mechanism, with improved sensing performance for lower thickness of NiO, due to high catalytic activity of NiO. The sensing dynamic is also strongly modified by the presence of heterojunction of NiO/ZnO, with a reduction of response and recovery times towards ethanol and acetone at 400°C.

    Advances in Focused Ion Beam Tomography for Three-Dimensional Characterization in Materials Science

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    Over the years, FIB-SEM tomography has become an extremely important technique for the three-dimensional reconstruction of microscopic structures with nanometric resolution. This paper describes in detail the steps required to perform this analysis, from the experimental setup to the data analysis and final reconstruction. To demonstrate the versatility of the technique, a comprehensive list of applications is also summarized, ranging from batteries to shale rocks and even some types of soft materials. Moreover, the continuous technological development, such as the introduction of the latest models of plasma and cryo-FIB, can open the way towards the analysis with this technique of a large class of soft materials, while the introduction of new machine learning and deep learning systems will not only improve the resolution and the quality of the final data, but also expand the degree of automation and efficiency in the dataset handling. These future developments, combined with a technique that is already reliable and widely used in various fields of research, are certain to become a routine tool in electron microscopy and material characterization

    Local and system mechanisms for action execution and observation in parietal and premotor cortices

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    The action observation network (AON) includes a system of brain areas largely shared with action execution in both human and nonhuman primates. Yet temporal and tuning specificities of distinct areas and of physiologically identified neuronal classes in the encoding of self and others’ action remain unknown. We recorded the activity of 355 single units from three crucial nodes of the AON, the anterior intraparietal area (AIP), and premotor areas F5 and F6, while monkeys performed a Go/No-Go grasping task and observed an experimenter performing it. At the system level, during task execution, F6 displays a prevalence of suppressed neurons and signals whether an action has to be performed, whereas AIP and F5 share a prevalence of facilitated neurons and remarkable target selectivity; during task observation, F5 stands out for its unique prevalence of facilitated neurons and its stronger and earlier modulation than AIP and F6. By applying unsupervised clustering of spike waveforms, we found distinct cell classes unevenly distributed across areas, with different firing properties and carrying specific visuomotor signals. Broadly spiking neurons exhibited a balanced amount of facilitated and suppressed activity during action execution and observation, whereas narrower spiking neurons showed more mutually facilitated responses during the execution of one’s own and others’ action, particularly in areas AIP and F5. Our findings elucidate the time course of activity and firing properties of neurons in the AON during one’s own and others’ action, from the system level of anatomically distinct areas to the local level of physiologically distinct cell classes

    Structural compatibility between the putative voltage sensor of voltage-gated K+ channels and the prokaryotic KcsA channel.

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    Sequence similarity among and electrophysiological studies of known potassium channels, along with the three-dimensional structure of the Streptomyces lividans K(+) channel (KcsA), support the tenet that voltage-gated K(+) channels (Kv channels) consist of two distinct modules: the "voltage sensor" module comprising the N-terminal portion of the channel up to and including the S4 transmembrane segment and the "pore" module encompassing the C-terminal portion from the S5 transmembrane segment onward. To substantiate this modular design, we investigated whether the pore module of Kv channels may be replaced with the pore module of the prokaryotic KcsA channel. Biochemical and immunocytochemical studies showed that chimeric channels were expressed on the cell surface of Xenopus oocytes, demonstrating that they were properly synthesized, glycosylated, folded, assembled, and delivered to the plasma membrane. Unexpectedly, surface-expressed homomeric chimeras did not exhibit detectable voltage-dependent channel activity upon both hyperpolarization and depolarization regardless of the expression system used. Chimeras were, however, strongly dominant-negative when coexpressed with wild-type Kv channels, as evidenced by the complete suppression of wild-type channel activity. Notably, the dominant-negative phenotype correlated well with the formation of stable, glycosylated, nonfunctional, heteromeric channels. Collectively, these findings imply a structural compatibility between the prokaryotic pore module and the eukaryotic voltage sensor domain that leads to the biogenesis of non-responsive channels. Our results lend support to the notion that voltage-dependent channel gating depends on the precise coupling between both protein domains, probably through a localized interaction surface
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