The development of this target product profile (TPP) was led by the WHO Department of Control of Ne-
glected Tropical Diseases (NTD) following standard WHO guidance for TPP development. In order to
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identify and prioritize diagnostic needs, a WHO NTD Diagnostics Technical Advisory Group (DTAG)
was formed, and different subgroups were created to advise on specific NTDs, including a subgroup
working on the human African trypanosomiasis (HAT) diagnostic innovation needs. This group of in-
dependent experts included leading scientists, public health officials and endemic-country end-user rep-
resentatives. Standard WHO Declaration of Interest procedures were followed. A landscape analysis of
the available products and of the development pipeline was conducted, and the salient areas with unmet
needs were identified
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Global Development: Where Are We Now?
Today, we are facing a vital opportunity to change the profile of cardiovascular disease around the world.
The Millennium Development Goals (MDGs) are due to expire at the end of 2015, placing the cardiovascular health community in a unique position to shape t
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he priorities for the next development agenda, and save millions of lives.
Despite its devastating impact on people of all ages, genders and ethnicities, cardiovascular disease was excluded from the Millennium Development Goals (MDGs), which were announced by the United Nations in 2000. That oversight was far-reaching;
for well over a decade, non-communicable diseases were omitted from the global funding agenda and deprioritized by other mechanisms. During that period of muted government action, the prevalence and burden of non-communicable diseases increased in every region of the world.
Fifteen years later, as the successors to the MDGs are being negotiated, we are in a position to call for the prioritization of cardiovascular disease on the forthcoming global development agenda. Once we have ensured that CVD is recognised at the global policy level, our efforts will turn to encouraging governments to honour their commitments on
the prevention and control of CVD.
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The school and a community teaching modules are aimed at preventing vector-borne diseases through community participation. Meanwhile, the interactive toolkit is meant to be help raise awareness on health, sanitation and vector
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control. These materials will help volunteers and practitioners foster dialogue with communities and ensure that prevention is seen as the primary way of combatting vector-borne diseases
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In 2012, the World Health Organisation (WHO) set out a roadmap for the control, elimination, or eradication of 17 neglected tropical diseases by 2020. Many were skeptical about the achievability of
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such goals. Now, still two years away from that end point, good news is emerging for gambiense human African trypanosomiasis (HAT), or sleeping sickness, caused by the tsetse-fly−transmitted protozoan parasite Trypanosoma brucei gambiense in West and Central Africa. The Rhodesiense form of the disease is being pursued under a separate programme.
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The current SEARVAP (South-East Asia regional vaccine action plan) describes a set of regional goals and objectives for immunization and control of vaccine-preventable diseases for 2016 – 2020 and
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highlights priority actions, targets and indicators that address the specific needs and challenges of countries in the Region.
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The report explores strategies for sustaining the country’s responses to the three diseases and eventually transitioning away from external funding and programmatic support. It takes stock of Kenya’s health financing landscape and identifies opp
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ortunities and challenges for sustaining effective coverage of HIV, TB, and malaria services in the long run, mindful of macro-fiscal and institutional constraints. The report informs ongoing dialogue within government, including among the Ministry of Health, National Treasury, Council of Governors, and National AIDS Control Council, as well as between government and development partners.
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Progress in reducing tobacco use is a key indicator for measuring countries’ efforts to implement the WHO Framework Convention on Tobacco Control – target 3.a under the Sustainable Development Goals agenda. Countries have adopted this indicator
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to report progress also towards the tobacco reduction target under the Global Action Plan for the Prevention and Control of Noncommunicable Diseases 2013–2020 and the WHO’s Global Programme of Work triple billions target.
Fourth edition.
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Временные рекомендации
17 марта 2020 г.
Данный документ представляет собой адаптированную версию временных рекомендаций, разработанных для ближневосточного респ
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ираторного синдрома, вызванного коронавирусом (БВРС-КоВ), которые были опубликованы в июне 2018 г.1, и был составлен на основе опубликованных ВОЗ научно обоснованных рекомендаций, включая руководство «Infection prevention and control of epidemic- and pandemic-prone acute respiratory diseases in health care» (Профилактика инфекций и борьба с острыми респираторными инфекциями, способными вызывать эпидемии и пандемии, при оказании медико-санитарной помощи)2, а также имеющейся на сегодняшний день информации о COVID-19.
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To eliminate lymphatic filariasis (LF) by 2020, the World Health Organization (WHO) has launched a campaign against the disease. Since the launch in 2000, significant progress has been made to achieve this ambitious goal. In this article we review the progress and status of the LF programme in Afric
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a through the WHO neglected
tropical diseases preventive chemotherapy databank, the Expanded Special Project for Elimination of Neglected Tropical Diseases (ESPEN) portal and other publications. In the African Region there are 35 countries endemic for LF. The Gambia was reclassified as not requiring preventive chemotherapy in 2015, while Togo and Malawi eliminated LF as a public health problem in 2017 and 2020, respectively. Cameroon discontinued mass drug administration (MDA) and transitioned to post-MDA surveillance to validate elimination. The trajectory of coverage continues to accelerate; treatment coverage increased from 0.1% in 2000 to 62.1% in 2018. Geographical coverage has also significantly increased, from 62.7% in 2015 to 78.5% in 2018. In 2019, 23 of 31 countries requiring MDA achieved 100% geographic coverage. Although much remains to be done, morbidity management and disability prevention services have steadily increased in recent years. Vector control interventions conducted by other programmes, particularly malaria vector control, have had a profound effect in stopping transmission in some endemic countries in the region. In conclusion, significant progress has been made in the LF programme
in the region while we identify the key remaining challenges in achieving an Africa free of LF.
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Spirometry is required as part of the comprehensive evaluation of both adult and paediatric individuals with suspected or confirmed respiratory diseases and occupational assessments. It is used in the categorisation of impairment, grading of severit
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y, assessment of potential progression and response to interventions. Guidelines for spirometry in South Africa are required to improve the quality, standardisation and usefulness in local respiratory practice. The broad principles of spirometry have remained largely unchanged from previous versions of the South African Spirometry Guidelines; however, minor adjustments have been incorporated from more comprehensive international guidelines, including adoption of the Global Lung Function Initiative 2012 (GLI 2012) spirometry reference equations for the South African population.
All equipment should have proof of validation regarding resolution and consistency of the system. Daily calibration must be performed, and equipment quality control processes adhered to. It is important to have standard operating procedures to ensure consistency and quality and, additionally, strict infection control as highlighted during the COVID-19 pandemic.
Adequate spirometry relies on a competent, trained operator, accurate equipment, standardised operating procedures, quality control and patient co-operation. All manoeuvres must be performed strictly according to guidelines, and strict quality assurance methods should be in place, including acceptability criteria (for any given effort) and repeatability (between efforts).
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Cities are uniquely positioned to understand local needs and respond rapidly to changing conditions to safeguard health. These changes require strong city leadership to implement multisectoral, health-relevant policies and public services that engage communities. The response to malaria must be an i
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ntegral part of such policies and processes.
This framework supports the control and elimination of malaria in urban environments. It provides guidance for city leaders, health programmes and urban planners as they respond to the challenges of rapid urbanization in a targeted way. For each urban context, the strategic use of data can inform effective, tailored responses and help build resilience against the threat of malaria and other vector-borne diseases.
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A guide to increasing coverage and equity in all communities in the African Region
Expanded Programs on Immunization (EPI) is responsible for vaccines and vaccination to control, eliminate and eradicate vaccine preventable
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diseases (VPDs). Having strong immunization systems to deliver vaccines to those who need them most will play a significant role in achieving the health, equity and economic objectives of several global development goals.
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Downloaded from https://aidsinfo.nih.gov/guidelines on 10/19/2019
Recommendations from the National Institutes of Health, Centers for Disease Control and Prevention, the HIV Medicine Association of the Infectious
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Diseases Society of America and the Pediatric Infectious Diseases Society
(This guideline was simultaneously published in The Pediatric Infectious Disease Journal on November 6, 2013.)
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Antimicrobial resistance represents a big threat to public health. The Centers for Disease Control and Prevention (CDC) estimate that every year two million Americans are infected with a (multi-)drug resistant bacterium, resulting in 23,000 deaths.
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The WHO has repeatedly drawn attention to this major health issue. In the worst-case scenario, we will shortly run out of effective antibiotics. Surgery and cancer therapy will then become very dangerous due to the risk of infection associated with such treatments. (Organ) transplantation will become close to impossible as the immunosuppression necessary for transplant patients makes them highly vulnerable to infections. Some infections we can easily treat today could turn deadly. It is therefore conceivable that infectious diseases once again become the leading cause of death as in early 20th century.
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International commitment to eliminate trachoma as a public health problem worldwide is supported by resolution WHA51.11 of the World Health Assembly .1 Important progress towards this goal has been made by harnessing the mostly informal relationships that exist between partners including Member Stat
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es, the World Health Organization (WHO), academic institutions, donors and nongovernmental organizations. Recognizing that work remains to be done and that the 2020 target2 for elimination is rapidly approaching, in February 2015 the WHO Department of Control of Neglected Tropical Diseases convened a group of academic institutions that had for many years helped WHO to implement its mandate on trachoma and to work towards establishing a Network of WHO collaborating centres (WHOCCs) for Trachoma. The report of that meeting has been published.
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Since 2000, concerted efforts by national programmes, supported by public–private partnerships, nongovernmental organizations, donors and academia under the auspices and coordination of the World Health Organization (WHO), have produced important achievements in the
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control of human African trypanosomiasis (HAT). As a consequence, the disease was targeted for elimination as a public health problem by 2020. The Sixty-sixth World Health Assembly endorsed this goal in resolution WHA66.12 on neglected tropical diseases, adopted in 2013.
National sleeping sickness control programmes (NSSCPs) are core to progressing control of the disease and in adapting to the different epidemiological situations. The involvement of different partners, as well as the support and trust of long-term donors, has been crucial for the achievements.
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Long-term exposure of humans to air pollution enhances the risk of cardiovascular and respiratory diseases. A novel Global Exposure Mortality Model (GEMM) has been derived from many cohort studies, providing much-improved coverage of the exposure to
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fine particulate matter (PM2.5). We applied the GEMM to assess excess mortality attributable to ambient air pollution on a global scale and compare to other risk factors.
Methods and results
We used a data-informed atmospheric model to calculate worldwide exposure to PM2.5 and ozone pollution, which was combined with the GEMM to estimate disease-specific excess mortality and loss of life expectancy (LLE) in 2015. Using this model, we investigated the effects of different pollution sources, distinguishing between natural (wildfires, aeolian dust) and anthropogenic emissions, including fossil fuel use. Global excess mortality from all ambient air pollution is estimated at 8.8 (7.11–10.41) million/year, with an LLE of 2.9 (2.3–3.5) years, being a factor of two higher than earlier estimates, and exceeding that of tobacco smoking. The global mean mortality rate of about 120 per 100 000 people/year is much exceeded in East Asia (196 per 100 000/year) and Europe (133 per 100 000/year). Without fossil fuel emissions, the global mean life expectancy would increase by 1.1 (0.9–1.2) years and 1.7 (1.4–2.0) years by removing all potentially controllable anthropogenic emissions. Because aeolian dust and wildfire emission control is impracticable, significant LLE is unavoidable.
Conclusion
Ambient air pollution is one of the main global health risks, causing significant excess mortality and LLE, especially through cardiovascular diseases. It causes an LLE that rivals that of tobacco smoking. The global mean LLE from air pollution strongly exceeds that by violence (all forms together), i.e. by an order of magnitude (LLE being 2.9 and 0.3 years, respectively).
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The strategic plan reflects shared commitments to enhance collaboration between environmental, animal (wildlife and domestic) and human health, and building new One Health workforce capacity through higher institutions of learning. The strategy also outlines interventions to be undertaken by governm
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ent institutions and other partners to enhance existing structures and pool together additional resources to prevent and control zoonotic diseases and other events of public health importance. Successful implementation of the strategy will contribute to the realization of vision 2020 by improving public health, food safety and security, and hence significantly improve the socioeconomic status of the people of Rwanda. It is in this regard that we call upon implementing institutions, bilateral and multilateral partners, civil society and the private sector to join us in implementing the One Health strategy in Rwanda.
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Lancet Glob Health 2019 Published Online January 24, 2019 http://dx.doi.org/10.1016/S2214-109X(18)30479-0
The health-care system collapse underway in Venezuela is a cause of utmost concern for its people and, increasingly, for the wider region. Declines in provision of basic services, such as
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childhood immunisation, malaria control, water, sanitation, and nutritional support, have led to increasing morbidity and mortality rates from an array of preventable diseases, including malaria, measles, and diphtheria. Secondary and tertiary care have also been greatly affected, due to declining investment, out-migration of providers, and spiralling hyperinflation that has driven the country and its people into poverty.1 As is so often, and so tragically, the case, the most affected populations have been the most vulnerable: infants and children, their mothers, the poor (now the great majority of the populations), and indigenous people
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Version 1.1. The WHO protocol has been adapted to resource-limited settings and builds on existing methodologies from the European Centre for Disease Prevention and Control (ECDC), the Global PPS project from University of Antwerp, the US Centers fo
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r Disease Control and Prevention (CDC), and the Medicines Utilisation Research in Africa (MURIA).
Point Prevalence Surveys collects information on prescribing practices of antibiotics and other information relevant to treatment and management of infectious diseases in hospitalized patients, and complements surveillance of antimicrobial consumption.
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