2016 data
The report was coordinated by Anastasia Pharris and Annemarie Stengaard.
Report review and production support were provided by Andrew J. Amato-Gauci, Mike Catchpole, Denis Coulombier, Masoud Dara, Nedret Emiroglu, Rachel Katterl, Shahin Khasiyev, Valentina Lazdina, Teymur Noori, Marc... Rondy, Chantal Quintin, Phillip Zucs.
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Trastornos externalizantes
Capítulo D.3
Edición: Matías Irarrázaval & Andres Martin
Traducción: Fernanda Prieto Tagle, Sofía Hacohen Domené
This guide is intended for people involved in the management and operation of small- to mediumsized organized water supply systems. The content has been developed with particular consideration for operational-level personnel with responsibility for chlorination (for example, water treatment plant op...erators and technicians). The material presented within this guide may also be relevant for engineers and representatives from public health, local government, non-governmental organizations, as well as any other individuals supporting water safety planning activities for the supply of safe drinking-water.
Part 1. Chlorination principles: Describes key chlorination concepts, providing a knowledge foundation for the implementation of effective chlorination practices.
Part 2. Chlorination practices: Describes the practical application of the concepts presented in Part 1, including calculations and procedures for safe and effective chlorination of drinking-water supplies.
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DHS Working Papers No. 120
Master of Science in Pharmaceutical Management Dissertation
Climate change is damaging human health now and is projected to have a greater impact in the future. Low- and middle-income countries are seeing the worst effects as they are most vulnerable to climate shifts and least able to adapt given weak health systems and poor infrastructure. Low-carbon appro...ach can provide effective, cheaper care while at the same time being climate smart. Low-carbon healthcare can advance institutional strategies toward low-carbon development and health-strengthening imperatives and inspire other development institutions and investors working in this space. Low-carbon healthcare provides an approach for designing, building, operating, and investing in health systems and facilities that generate minimal amounts of greenhouse gases. It puts health systems on a climate-smart development path, aligning health development and delivery with global climate goals. This approach saves money by reducing energy and resource costs. It can improve the quality of care in a diversity of settings. By prompting ministries of health to tackle climate change mitigation and foster low-carbon healthcare, the development community can help governments strengthen local capacity and support better community health.
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The two-year impact report for the Access to COVID-19 Tools (ACT) Accelerator details impact, case studies and timelines of key milestones for the Diagnostics, Therapeutics and Vaccines pillars, as well as the Health Systems and Response Connector.
An Action Framework and annexe to Immunization Agenda 2030 (Draft version)
27 January 2021
English Analysis on World and 3 other countries about Agriculture, Climate Change and Environment, Drought, Flood and more; published on 22 Oct 2021 by Action Against Hunger
WHO and UNITAID
in collaboration with IMPAACT (International Maternal Pediatric Adolescent AIDS Clinical Trials) network, PENTA (Paediatric European Network for Treatment of AIDS) foundation and experts from the Paediatric Antiretroviral Working Group
A role for nuclear techniques
Antimicrobials play a critical role in the treatment of human and animal (aquatic and terrestrial) diseases, which has led to their widespread application and use. Antimicrobial resistance (AMR) is the ability of microorganisms to stop an antibiotic, such as an antimic...robial, antiviral or antimalarial, from working against them. Globally, about 700 000 deaths per year arise from resistant infections as a result of the fact that antimicrobial drugs have become less effective at killing resistant pathogens. Antimicrobial chemicals that are present in environmental compartments can trigger the development of AMR. These chemicals can also cause antibiotic-resistant bacteria (ARB) to further spread antibiotic resistance genes (ARG) because they may have an evolutionary advantage over non-resistant bacteria.
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