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1
The WHO Global strategy on human resources for health: workforce 2030 encourages development partners and global health initiatives to leverage their support to health systems in countries to sustainably strengthen the health workforce. To assess the impact of these investments, a methodology was de
...
veloped and pilot tested by WHO.
The impact assessment tool (consisting of an MS Excel calculator with two subsets) supports users to:
• assess and quantify the health impact of HRH investments made in the context of HIV, tuberculosis (TB) and malaria programmes through their modelled effect on health service coverage of these three diseases; and
• provide aggregate indicative estimates of the range of health workers required to attain high coverage of selected health services.
more
The Strategy provides a high-level unifying framework to leverage existing capacities, address barriers and strengthen the use of genomic surveillance in the detection, monitoring and response to public health threats. Genomic surveillance is part of the broader surveillance and laboratory system, a
...
nd its implementation should reinforce end-to-end capacities including sample collection, diagnostics, data sharing and analysis. The strategy aims to facilitate the connectivity between different disease control programs and surveillance networks. This interoperability will strengthen the cross-cutting essential public health laboratory functions underpinning genomics holistically. The strategy articulates the overarching goal, objectives and strategic actions needed. These are dependent on commitments from countries, partners and WHO for their implementation.
more
Providing improved water supply to low-income urban communities is a difficult challenge faced by water utilities throughout Africa and Asia.
This guide provides an introduction to available options for serving these communities.
The guide draws on sector experience in general, and more particular
...
ly on WSUP’s extensive experience of implementing urban WASH programmes in sub-Saharan Africa and elsewhere.
more
The current global crises, including climate, COVID-19, and environmental change, requires global collective action at all scales. These broad socio-ecological challenges require the engagement of diverse perspectives and ways of knowing and the meaningful engagement of all generations and stages of
...
personal and professional development. The combination of systems thinking, change management, quality improvement approaches and models, appreciative/strength-based approaches, narratives, storytelling and the strengths of Indigenous knowledges, offer synergies and potential that can set the stage for transformative, strengths-based education for sustainable healthcare (ESH).
more
This open access book not only describes the challenges of climate disruption, but also presents solutions. The challenges described include air pollution, climate change, extreme weather, and related health impacts that range from heat stress, vector-borne diseases, food and water insecurity and ch
...
ronic diseases to malnutrition and mental well-being.
more
The Lancet Published Online September 13, 2016 http://dx.doi.org/10.1016/S0140-6736(16)31404-0
his publication addresses surveillance and outbreak management of WRID associated with drinking-water supply systems, building on existing guidelines for infectious disease surveillance and outbreak response. It aims to help countries to build on and strengthen their systems by providing technical i
...
nformation on the specific features, activities and methodologies related to WRID surveillance and outbreak management.
more
India: health system review
Srivastava, Swati, Karan, Anup K., Bhan, Nandita, Mukhopadhya, Indranil. et al.
.World Health Organization (WHO), Regional Office for South-East Asia
(2022)
C_WHO
CoPEH-Canada has generated a series of teaching and training resources over more than a decade. These resources began with the production of the CoPEH-Canada Teaching Manual (2012), which is dedicated to Bruce Hunter. Our training resources have expanded to include a range of resources including: Mo
...
dules (in pdf and online format), videos, Webalogue recordings, and other resources.
more
Together for One Health. Building on the momentum of increased collaboration, the WHO, FAO, OIE and UNEP have developed a Strategic Framework for collaboration on antimicrobial resistance (AMR). This Framework reflects the joint work of the four organizations to advance a One Health response to AMR
...
at the global, regional and country level. It broadly supports the implementation of the five pillars of the Global Action Plan on AMR, as well as strengthening global AMR governance.
more
Identifying and quantifying planetary boundaries that must not be transgressed could help prevent human
activities from causing unacceptable environmental changes.
nature Vol 461|24 September 2009
Dengue is a mosquito-borne viral disease that occurs mainly in the tropics and subtropics but has a high potential to spread to new areas. Dengue infections are climate sensitive, so it is important to better understand how changing climate factors affect the potential for geographic spread and futu
...
re dengue epidemics. Vectorial capacity (VC) describes a vector's propensity to transmit dengue taking into account human, virus, and vector interactions. VC is highly temperature dependent, but most dengue models only take mean temperature values into account. Recent evidence shows that diurnal temperature range (DTR) plays an important role in influencing the behavior of the primary dengue vector Aedes aegypti. In this study, we used relative VC to estimate dengue epidemic potential (DEP) based on the temperature and DTR dependence of the parameters of A. aegypti. We found a strong temperature dependence of DEP; it peaked at a mean temperature of 29.3°C when DTR was 0°C and at 20°C when DTR was 20°C. Increasing average temperatures up to 29°C led to an increased DEP, but temperatures above 29°C reduced DEP. In tropical areas where the mean temperatures are close to 29°C, a small DTR increased DEP while a large DTR reduced it. In cold to temperate or extremely hot climates where the mean temperatures are far from 29°C, increasing DTR was associated with increasing DEP. Incorporating these findings using historical and predicted temperature and DTR over a two hundred year period (1901-2099), we found an increasing trend of global DEP in temperate regions. Small increases in DEP were observed over the last 100 years and large increases are expected by the end of this century in temperate Northern Hemisphere regions using climate change projections. These findings illustrate the importance of including DTR when mapping DEP based on VC.
more
Int. J. Environ. Res. Public Health 2020, 17(23), 8849; https://doi.org/10.3390/ijerph17238849
The aim of building climate resilient and environmentally sustainable health care facilities is: (a) to enhance their capacity to protect and improve the health of their target communities in an unstable
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and changing climate; and (b) to empower them to optimize the use of resources and minimize the release of pollutants and waste into the environment. Such 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 an important component of universal health coverage.
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Int. J. Environ. Res. Public Health 2018, 15(12), 2626; https://doi.org/10.3390/ijerph15122626
Climate change is increasing risks to human health and to the health systems that seek to protect the safety and well-being of populations. Health authorities require information about current associatio
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ns between health outcomes and weather or climate, vulnerable populations, projections of future risks and adaptation opportunities in order to reduce exposures, empower individuals to take needed protective actions and build climate-resilient health systems. An increasing number of health authorities from local to national levels seek this information by conducting climate change and health vulnerability and adaptation assessments. While assessments can provide valuable information to plan for climate change impacts, the results of many studies are not helping to build the global evidence-base of knowledge in this area. They are also often not integrated into adaptation decision making, sometimes because the health sector is not involved in climate change policy making processes at the national level. Significant barriers related to data accessibility, a limited number of climate and health models, uncertainty in climate projections, and a lack of funding and expertise, particularly in developing countries, challenge health authority efforts to conduct rigorous assessments and apply the findings. This paper examines the evolution of climate change and health vulnerability and adaptation assessments, including guidance developed for such projects, the number of assessments that have been conducted globally and implementation of the findings to support health adaptation action. Greater capacity building that facilitates assessments from local to national scales will support collaborative efforts to protect health from current climate hazards and future climate change. Health sector officials will benefit from additional resources and partnership opportunities to ensure that evidence about climate change impacts on health is effectively translated into needed actions to build health resilience.
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Environment International Volume 146, January 2021, 106245.
We use soils to provide 98.8% of our food, but we must ensure that the pressure we place on soils to provide this food in the short-term does not inadvertently push the Earth into a less hospitable state in the long-term. Using the planeta
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ry boundaries framework, we show that soils are a master variable for regulating critical Earth-system processes. Indeed, of the seven Earth-systems that have been quantified, soils play a critical and substantial role in changing the Earth-systems in at least two, either directly or indirectly, as well as smaller contributions for a further three.
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This chapter addresses the biogeochemical cycles of carbon dioxide. (CO2), methane (CH4) and nitrous oxide (N2O)