BMC Public Health (2019) 19:1608
https://doi.org/10.1186/s12889-019-7853-3
The aim of this guidance is to enhance the capacity of health care facilities to protect and improve the health of their target communities in an unstable and changing climate; and to empower health care facilities to be environmentally sustainable, by optimizing the use of resources and minimizing ...the release of waste into the environment. Climate resilient and environmentally sustainable health care facilities contribute to high quality of care and accessibility of services, and by helping reduce facility costs also ensure better affordability. They are, therefore, an important component of universal health coverage (UHC).
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Formularies are lists of antibiotics that are suggested for certain healthcare settings. In developing a recommended formulary, countries should consider the needs of patients and facilities where they receive care. For example, clinicians in rural or primary health centers may need wide access to f...irst-line antibiotics (e.g., penicillin, ampicillin, TMP-SMX), but last resort antibiotics such as carbapenems or colistin might be limited to tertiary care hospitals. Efforts to create antibiotic formularies may be linked to efforts within countries to create or update essential medicine lists (EML).
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An Action Framework and annexe to Immunization Agenda 2030 (Draft version)
27 January 2021
The “Wuppertal Call” – Contributions and Recommendations from an
International Conference on Eco-Theology and Ethics of Sustainability
Wuppertal, Germany, 16 – 19 June 2019
Globalization and Health (2021) 17:74 https://doi.org/10.1186/s12992-021-00722-3
Cryptococcal disease, particularly cryptococcal meningitis is a significant cause of morbidity and mortality among people living with HIV with advanced HIV disease. It is estimated that it is responsible for nearly 19% of AIDS-related mortality, second only to tuberculosis. Rapid screening, diagnosi...s and linking to appropriate treatment are critical actions national programs must take to reduce the burden of disease.
WHO in 2022 introduced updated guidelines for diagnosing, preventing, and managing cryptococcal disease among adults, adolescents and children living with HIV. This policy brief provides a summary of the key recommendations, clinical considerations, and also stresses the importance of ensuring access to life-saving antifungals. There is an urgent need for countries to scale-up management for not just cryptococcal meningitis, but address cryptococcal disease in the context of a package of care for advanced HIV disease as recommended by WHO.
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Available in English, French and Spanish
Revised and expanded version of the Guidelines
Sleeping sickness is controlled by case detection and treatment but this often only reaches less than 75% of the population. Vector control is capable of completely interrupting HAT transmission but is not used because of expense. We conducted a full scale field trial of a refined vector control tec...hnology. From preliminary trials we determined the number of insecticidal tiny targets required to control tsetse populations by more than 90%. We then carried out a full scale, 500 km2 field trial covering two HAT foci in Northern Uganda (overall target density 5.7/km2). In 12 months tsetse populations declined by more than 90%. A mathematical model suggested that a 72% reduction in tsetse population is required to stop transmission in those settings. The Ugandan census suggests population density in the HAT foci is approximately 500 per km2. The estimated cost for a single round of active case detection (excluding treatment), covering 80% of the population, is US$433,333 (WHO figures). One year of vector control organised within country, which can completely stop HAT transmission, would cost US$42,700. The case for adding this new method of vector control to case detection and treatment is strong. We outline how such a component could be organised.
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Guidance for health workers
Recherche rapide de l’analyse-pays de l’OSAR
This publication is based on the list of clinical interventions selected from clinical guidelines on prevention, screening, diagnosis, treatment, palliative care, monitoring and end of life care. This publication addresses medical devices for six types of cancer: breast, cervical, colorectal, leukem...ia, lung and prostate. The first section defines the global increase in cancer cases, the global goals to manage NCDs and the WHO activities related to these goals. The second section presents the methodology used for the selection of medical devices that support clinical interventions required to screen, diagnose, treat and monitor cancer stages, as well as the provision of palliative care, based on evidence-based information. The third section lists the priority medical devices required to manage cancer in seven different units of health care services: 1. Vaccination, clinical assessment and endoscopy, 2. Medical imaging and nuclear medicine, 3. Surgery, 4. Laboratory and pathology, 5. Radiotherapy, 6. Systemic therapy and 7. Palliative and end of life care
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