967 research outputs found

    Bilan hydrique simulé du maïs au Togo méridional

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    Le rendement du maïs dans des conditions de bonne alimentation minérale est fortement lié à deux paramètres du bilan hydrique : l'évapotranspiration totale, qui caractérise un potentiel de rendement, et le manque d'eau à la floraison, qui constitue un facteur de risque. La simulation de ces paramètres permet de proposer une stratégie optimale de semis pour deux variétés de maïs et met en évidence l'effet de l'épuisement des sols sur la valorisation de l'eau. Des rendements potentiels sont ensuite définis à l'échelle régionale, en simulant le bilan hydrique sur l'ensemble des postes climatiques du Togo méridional. Ceci permet un zonage agropédoclimatique des potentialités du maïs, qui met en évidence une importante variabilité du Nord au Sud au cours de la deuxième saison de culture. (Résumé d'auteur

    Health Services Management Education On-Site At A Military Medical Center

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    A cooperative educational program with the U.S. military is described to illustrate a unique opportunity that confronted a graduate healthcare management program. The resulting degree program supported the military’s operational medical mission but also presented interesting and unexpected challenges resulting from the wars in Iraq and Afghanistan. Pressure to provide cost-effective services has been mounting for many years. Civilian and military cooperative ventures can be highly successful. The program addressed the need for enhanced managerial skills. Program content focused on traditional business and healthcare content with applications tailored to military settings. While instruction was provided primarily by civilian faculty, active duty military instructors were also incorporated into specific course content areas. Program pricing and marketing were critical to success. Technical course delivery issues raised additional challenges due to work obligations and deployments. Academic institutions need to assist military commands in achieving their training objectives and can benefit from the experience. The views expressed in this article are those of the authors and do not reflect the official policy or position of the Department of the Navy, Department of Defense, or the United States Government

    PhOTO Zebrafish: A Transgenic Resource for In Vivo Lineage Tracing during Development and Regeneration

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    Background: Elucidating the complex cell dynamics (divisions, movement, morphological changes, etc.) underlying embryonic development and adult tissue regeneration requires an efficient means to track cells with high fidelity in space and time. To satisfy this criterion, we developed a transgenic zebrafish line, called PhOTO, that allows photoconvertible optical tracking of nuclear and membrane dynamics in vivo. Methodology: PhOTO zebrafish ubiquitously express targeted blue fluorescent protein (FP) Cerulean and photoconvertible FP Dendra2 fusions, allowing for instantaneous, precise targeting and tracking of any number of cells using Dendra2 photoconversion while simultaneously monitoring global cell behavior and morphology. Expression persists through adulthood, making the PhOTO zebrafish an excellent tool for studying tissue regeneration: after tail fin amputation and photoconversion of a ~100µm stripe along the cut area, marked differences seen in how cells contribute to the new tissue give detailed insight into the dynamic process of regeneration. Photoconverted cells that contributed to the regenerate were separated into three distinct populations corresponding to the extent of cell division 7 days after amputation, and a subset of cells that divided the least were organized into an evenly spaced, linear orientation along the length of the newly regenerating fin. Conclusions/Significance: PhOTO zebrafish have wide applicability for lineage tracing at the systems-level in the early embryo as well as in the adult, making them ideal candidate tools for future research in development, traumatic injury and regeneration, cancer progression, and stem cell behavior

    Gene Expression Analysis of Zebrafish Heart Regeneration

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    Mammalian hearts cannot regenerate. In contrast, zebrafish hearts regenerate even when up to 20% of the ventricle is amputated. The mechanism of zebrafish heart regeneration is not understood. To systematically characterize this process at the molecular level, we generated transcriptional profiles of zebrafish cardiac regeneration by microarray analyses. Distinct gene clusters were identified based on temporal expression patterns. Genes coding for wound response/inflammatory factors, secreted molecules, and matrix metalloproteinases are expressed in regenerating heart in sequential patterns. Comparisons of gene expression profiles between heart and fin regeneration revealed a set of regeneration core molecules as well as tissue-specific factors. The expression patterns of several secreted molecules around the wound suggest that they play important roles in heart regeneration. We found that both platelet-derived growth factor-a and -b (pdgf-a and pdgf-b) are upregulated in regenerating zebrafish hearts. PDGF-B homodimers induce DNA synthesis in adult zebrafish cardiomyocytes. In addition, we demonstrate that a chemical inhibitor of PDGF receptor decreases DNA synthesis of cardiomyocytes both in vitro and in vivo during regeneration. Our data indicate that zebrafish heart regeneration is associated with sequentially upregulated wound healing genes and growth factors and suggest that PDGF signaling is required

    Anticipating the prevalence of avian influenza subtypes H9 and H5 in live-bird markets.

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    An ability to forecast the prevalence of specific subtypes of avian influenza viruses (AIV) in live-bird markets would facilitate greatly the implementation of preventative measures designed to minimize poultry losses and human exposure. The minimum requirement for developing predictive quantitative tools is surveillance data of AIV prevalence sampled frequently over several years. Recently, a 4-year time series of monthly sampling of hemagglutinin subtypes 1–13 in ducks, chickens and quail in live-bird markets in southern China has become available. We used these data to investigate whether a simple statistical model, based solely on historical data (variables such as the number of positive samples in host X of subtype Y time t months ago), could accurately predict prevalence of H5 and H9 subtypes in chickens. We also examined the role of ducks and quail in predicting prevalence in chickens within the market setting because between-species transmission is thought to occur within markets but has not been measured. Our best statistical models performed remarkably well at predicting future prevalence (pseudo-R2 = 0.57 for H9 and 0.49 for H5), especially considering the multi-host, multi-subtype nature of AIVs. We did not find prevalence of H5/H9 in ducks or quail to be predictors of prevalence in chickens within the Chinese markets. Our results suggest surveillance protocols that could enable more accurate and timely predictive statistical models. We also discuss which data should be collected to allow the development of mechanistic models.published_or_final_versio
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