The BeatChagas platform is a tool developed by the Technical Group of Information, Education, and Communication (IEC) for Chagas Disease (TG6-IEC Chagas), part of the Chagas Disease Control Program by the World Health Organization (WHO). The purpose of this platform is to share information about the
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TG6-IEC group’s activities.
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Rapport technique final du Projet de recherche-action-Formation.
Le projet «Développement d’une plateforme eS@nté Communautaire au Sénégal, avec application dans la santé maternelle et infantile pour l’atteinte des OMD Santé » est une initiative de la FMPOS, de l’Institut de Santé D
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éveloppement (ISED), de l’École Supérieure Polytechnique (ESP) de l’Université Cheikh Anta Diop de Dakar, en collaboration avec le Service National de l’Information Sanitaire (SNIS) et la Division de la Santé et de la Reproduction (DSR) du Ministère de la Santé du Sénégal, et le Projet des Villages du Millénaire à Louga.
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To support its R&D activities on Chagas disease, DNDi launched the Chagas Clinical Research Platform (CCRP). The platform brings together partners, experts, and stakeholders to provide support for evaluation and development of new treatments for Chagas disease. The patient-centred platform aims to f
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acilitate clinical research, provide a forum for technical discussions, develop a critical mass of expertise, and strengthen institutional research capacities. In addition, it identifies and reviews priority needs, works towards standardization of methodology to assess drug efficacy and reviews alternatives for using current approved drugs (new schemes, doses, combination) and special scenarios (resistance).
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Privind implementarea proiectului „sporirea rolului pacientului și a comunității în controlul Tuberculozei în moldova” anul 2014.
Raport elaborat de Centrul pentru Politici și Analize în Sănătate.
To guide One Health capacity building efforts in the Republic of Guinea in the wake of the 2014–2016 Ebola virus disease (EVD) outbreak, we sought to identify and assess the existing systems and structures for zoonotic disease detection and control. We partnered with the government ministries resp
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onsible for human, animal, and environmental health to identify a list of zoonotic diseases – rabies, anthrax, brucellosis, viral hemorrhagic fevers, trypanosomiasis and highly pathogenic avian influenza – as the country's top priorities. We used each priority disease as a case study to identify existing processes for prevention, surveillance, diagnosis, laboratory confirmation, reporting and response across the three ministries. Results were used to produce disease-specific systems “maps” emphasizing linkages across the systems, as well as opportunities for improvement. We identified brucellosis as a particularly neglected condition. Past efforts to build avian influenza capabilities, which had degraded substantially in less than a decade, highlighted the challenge of sustainability. We observed a keen interest across sectors to reinvigorate national rabies control, and given the regional and global support for One Health approaches to rabies elimination, rabies could serve as an ideal disease to test incipient One Health coordination mechanisms and procedures. Overall, we identified five major categories of gaps and challenges: (1) Coordination; (2) Training; (3) Infrastructure; (4) Public Awareness; and (5) Research. We developed and prioritized recommendations to address the gaps, estimated the level of resource investment needed, and estimated a timeline for implementation. These prioritized recommendations can be used by the Government of Guinea to plan strategically for future One Health efforts, ideally under the auspices of the national One Health Platform. This work demonstrates an effective methodology for mapping systems and structures for zoonotic diseases, and the benefit of conducting a baseline review of systemic capabilities prior to embarking on capacity building efforts.
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Nature | Vol 600 | 2 December 2021 |