1,728,853 research outputs found

    Órgano Pleno especial dedicado a Antonio Vivaldi: Programa No. 45

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    Sin ninguna obra para órgano solo que se conozca, la flama mediterránea de Antonio Vivaldi (1678-1741) hace vibrar a este instrumento con transcripciones de su época, y de la nuestra también: Concerto del Signor Vivaldi, LV 133 - Transcripción de Johann Gottfried Walther (1684-1748) del RV 275 de Vivaldi - Craig Cramer - St. Giles Presbyterian Church, Sarnia, Ontario - Dominant Music. Concierto para órgano, BWV 594 - Tarnscripción de Johann-Sebastian Bach (1685-1750) del RV 208 de Vivaldi - Simon Preston - Catedral de Lübeck - Deutsche Grammophon. Larghetto, del Concierto en re mayor (no identificado), de Vivaldi - Transcripción e interpretación de Jean Guillou (n.1930) - Tonhalle de Zürich - Dorian. Concierto en re menor (no identificado), de Vivaldi - Transcripción e interpretación de Jean Guillou (n.1930) - Tonhalle de Zürich - Dorian.Concerto del Signor Vivaldi, LV 133, canción de Transcripción de Johann Gottfried Walther (1684-1748) del RV 275 de Vivaldi - Craig CramerDominant Music. Concierto para órgano, BWV 594 , canción de transcripción de Johann-Sebastian Bach (1685-1750) del RV 208 de Vivaldi - Simon PrestonLarghetto, del Concierto en re mayor (no identificado), canción de Vivaldi, transcripción e interpretación de Jean Guillou (n.1930)Concierto en re menor (no identificado), canción de Vivaldi - Transcripción e interpretación de Jean Guillou (n.1930

    Key outcomes from VIVALDI on preventing and mitigating bivalve diseases

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    Since 2016, VIVALDI project, supported by the European Union H2020 programme, has aimed to improve the sustainability and competitiveness of the European shellfish industry, which has been hit by a growing number of mortality cases over the recent years. To this end, tools and strategies to better prevent and mitigate the impact of bivalve diseases have been developed through 6 work packages: - In the 1st work package, the diversity and lifecycles of some bivalve pathogens have been investigated. Environmental-based approaches such as passive sensors or the use of magnetic beads and electrochemical biosensors could be useful for pathogen surveillance and the development of early warning systems. - In the 2nd work package, some key mechanisms involved in the response of bivalves during a pathogen infection have been identified. Several modulated genes were also found, which may help to identify potential markers related with resistance against diseases. VIVALDI has also demonstrated that stimulating bivalve immunity is possible. - In the 3rd work package, oyster and clam families have been produced and challenged regarding their susceptibility to pathogens. Panels of well-selected SNP markers are now available for oysters and clams and have allowed us to identify markers associated with resistance to some pathogens and will optimise breeding programmes. - In the 4th work package, the impact of environmental parameters on the development of bivalve diseases has been studied: for example biodiversity for infection with OsHV-1 and plankton for bacterial diseases. The characterisation of bivalve microbiota under different scenarios, including disease development or environmental perturbations, should contribute to the identification of bivalve health markers. - In the 5th work package, a literature review and field studies have been carried out to identify the best husbandry practices to reduce mortality. The efficiency of UV treatment to remove pathogens, oyster gametes and larvae from the wastewater has been confirmed. Finally, our risk ranking shellfish farm model could be used by competent authorities to implement risk-based surveillance of shellfish diseases. - In the 6th work package, aRecommendations to prevent mitigate and control bivalve diseases have been identified from the results of VIVALDI and will feed, together with existing guidelines, a manual for disease management and biosecurity, which is being co-constructed with a group of stakeholders. Many studies have been carried out in VIVALDI and lay the foundations for future works notably on the impact of global change on bivalve diseases and also perspectives in the field of restoration of local bivalve species. Finally, VIVALDI has contributed to develop solutions, recommendations for a better implementation of the legislation. These outcomes will also bring helpful information for the evolution of this legislation.  

    Documenti inediti su Vivaldi a Roma

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    Presenta due lettere di Alessandro Marcello e di Antonio Vivaldi, indirizzate alla principessa Maria Livia Spinola Borghese, relative ai soggiorni romani di Vivaldi per la messa in scena di sue opere

    VIVALDI, Preventing and mitigating farmed bivalve diseases, HORIZON2020

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    The overarching goal of VIVALDI is to increase the sustainability and competitiveness of the European shellfish industry by improving the understanding of bivalve diseases and by developing innovative solutions and tools for the prevention, control and mitigation of the major pathogens affecting the main European farmed shellfish species: Pacific oyster (Crassostrea gigas), mussels (Mytilus edulis and M. galloprovincialis), European flat oyster (Ostrea edulis), clams (Venerupis philipinarum) and scallops (Pecten maximus ). The project addresses the most harmful pathogens affecting either one or more of these shellfish species: the virus OsHV-1, Vibrio species including V. aestuarianus, V. splendidus, V. harveyi and V. tapetis, as well as the parasite Bonamia ostreae. The project is committed to provide practical solutions based on the most advanced knowledge. VIVALDI will dissect the disease mechanisms associated with pathogen virulence and pathogenesis and host immune responses, develop in vivo and in vitro models, and apply "omic" approaches that will help the development of diagnostic tools and drugs against pathogen targets, and breeding programmes in a collaborative effort with industrial partners. The proposal will include a global shellfish health approach, recognising that cultured bivalves are often exposed to several pathogens simultaneously, and that disease outbreaks can be due to the combined effect of two or more pathogens. The proposal will also investigate advantages and risks of the used of disease-resistant selected animals in order to improve consumer confidence and safety

    Fundamental issues in antenna design for microwave medical imaging applications

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    This paper surveys the development of microwave medical imaging and the fundamental challenges associated with microwave antennas design for medical imaging applications. Different microwave antennas used in medical imaging applications such as monopoles, bow-tie, vivaldi and pyramidal horn antennas are discussed. The challenges faced when the latter used in medical imaging environment are detailed. The paper provides the possible solutions for the challenges at hand and also provides insight into the modelling work which will help the microwave engineering community to understand the behaviour of the microwave antennas in coupling media

    Minisimposio dal Titolo Degeneracies, Singularities and Fractals

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    Minisymposium: Degenerate Structures and Fractals Maria Agostina Vivaldi, organizer Aims and scope. It is our intention to concentrate on the recent analysis on fractals and on quasi-metric spaces, especially in connection with the corresponding theory of function spaces. Stochastical aspects should be included. In particular we address elliptic and parabolic boundary value problems in which fractal and euclidean interactions are relevant
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