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National Family Health Survey (NFHS-5), India, 2019-21: Manipur
International Institute for Population Sciences (IIPS) and ICF
Ministry of Health and Family Welfare
(2021)
CC
March 2021
This report presents the key findings of the NFHS-5 survey in Manipur, followed by detailed tables and an appendix on sampling errors. The 2019-21 National Family Health Survey (NFHS-5), the fifth in the NFHS series, provides information on population, health, and nutrition for India and
...
each state and union territory.
more
National Family Health Survey (NFHS-5), India, 2019-21: Kerala
International Institute for Population Sciences (IIPS) and ICF
Ministry of Health and Family Welfare
(2021)
CC
March 2021
This report presents the key findings of the NFHS-5 survey in Kerala, followed by detailed tables and an appendix on sampling errors. The 2019-21 National Family Health Survey (NFHS-5), the fifth in the NFHS series, provides information on population, health, and nutrition for India and
...
each state and union territory.
more
National Family Health Survey (NFHS-5), India, 2019-21: Jharkhand
International Institute for Population Sciences (IIPS) and ICF
Ministry of Health and Family Welfare
(2021)
CC
August 2021
This report presents the key findings of the NFHS-5 survey in Jharkhand, followed by detailed tables and an appendix on sampling errors. The 2019-21 National Family Health Survey (NFHS-5), the fifth in the NFHS series, provides information on population, health, and nutrition for India
...
and each state and union territory.
more
This report’s central premise is that diagnostics and therapeutics, and associated test to treat strategies, are fundamental components of the pandemic response, both for COVID-19 and for future health threats. Two years into the COVID-19 pandemic, this report reflects on the main challenges and k
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ey solutions on the road to equitable access to diagnostics and therapeutics.
This report draws from experience gained through the Access to COVID-19 Tools (ACT) Accelerator Diagnostics and Therapeutics pillars, and includes the perspectives of collaborating stakeholders (countries, civil society representatives and the private sector). Building on these findings, this report proposes sixteen recommended actions to address what have been identified as key structural challenges and specifies a potential owner for each action.
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These guidelines provide updated evidence-based recommendations on the priority HCV-related topics from the 2018 WHO Guidelines for the care and treatment of persons diagnosed with chronic hepatitis C infection and the 2017 WHO Guidelines on hepatitis B and C testing. These priority areas are:
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direct-acting antiviral (DAA) treatment of adolescents and children ages ≥3 years of age
simplified HCV service delivery (decentralization, integration and task sharing)
HCV diagnostics – use of point-of-care (POC) HCV ribonucleic acid (RNA) assays and reflex HCV RNA testing.
These guidelines also update existing chapters without new recommendations, such as the inclusion of new manufacturers’ protocols on the use of dried blood spot (DBS) for HCV RNA testing and new data to inform the limit of detection for HCV RNA assays as a test of cure, in addition to their use for diagnosis.
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L’ulcère de Buruli, une infection causée par Mycobacterium ulcerans, touche plus de 33 pays dans le monde, mais un peu moins de la moitié seulement de ces pays communiquent régulièrement des données sur la maladie à l’OMS.
The purpose of this book is to provide an overview of Buruli ulcer (Mycobacterium ulcerans infection) for the medical and scientific communities and the general public alike.
This policy brief aims to provide a review of the current progress on implementing the Kenya national action plan on AMR, identifies critical gaps, and highlights findings to accelerate further progress in the human health sector. The target audience includes all those concerned with implementing ac
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tions to combat antimicrobial resistance in Kenya.
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January 2020 to December 2021
Canadian Journal of Microbiology 25 June 2021 https://doi.org/10.1139/cjm-2020-0572
Since late August 2022, cases of severe acute watery diarrhoea have been increasingly reported across Syria, concentrated
particularly along the Euphrates river. These were later confirmed to be cholera cases.3 Cholera is a disease caused by
bacteria that can be found in faeces, and spreads throug
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h people consuming contaminated water or food. It causes severe
watery diarrhoea and vomiting which lead to dehydration. If treated immediately, less than 1% of cases result in patients
dying. However, if timely treatment is not available, cholera can lead to death within hours in 25 to 50% of cases. The
situation is critical in Syria as the local population is facing a severe water crisis due to drought, falling groundwater levels,
reduced flow in the Euphrates River, and reduced functionality of Alouk water station. REACH has been monitoring
developments in Northeast Syria through regular data collection cycles, remote sensing data, and rapid needs assessments
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This Mpox SPRP Global Monitoring & Evaluation (M&E) Framework, also referred to as the Framework, aims to monitor and report on global progress towards these objectives, including information about country-level response efforts and WHO support to Member States. Regular collection and analysis of da
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ta on these objectives, alongside the ongoing tracking of the epidemiological situation, are key to informing decision-making, operational adjustments, as well as ensuring transparency and accountability for achieving the goal to stop the Mpox outbreak. This document suggests reporting indicators for monitoring of the global response to the Mpox PHEIC as articulated in the Mpox SPRP and Operational Planning Guidelines for countries.
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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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Epidemiology
Chagas disease (American trypanosomiasis) is caused by the protozoan parasite Trypanosoma cruzi, and transmitted to humans by infected triatomine bugs, and less commonly by transfusion, organ transplant, from mother to infant, and in rare instances, by ingestion of contaminated food or
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drink.1-4 The hematophagous triatomine vectors defecate during or immediately after feeding on a person. The parasite is present in large numbers in the feces of infected bugs, and enters the human body through the bite wound, or through the intact conjunctiva or other mucous membrane.
Vector-borne transmission occurs only in the Americas, where an estimated 8 to 10 million people have Chagas disease.5 Historically, transmission occurred largely in rural areas in Latin America, where houses built of mud brick are vulnerable to colonization by the triatomine vectors.4 In such areas, Chagas disease usually is acquired in childhood. In the last several decades, successful vector control programs have substantially decreased transmission rates in much of Latin America, and large-scale migration has brought infected individuals to cities both within and outside of Latin America.
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This chapter discusses the antibacterial treatment of leprosy infections. Antibiotic treatment is
a key component of leprosy treatment, as it is vital to prevent the progression of the infection.
Treatment with rifampin and other antibiotics is highly effective and cures 98% of patients with
the
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leprosy infection. Furthermore, the relapse rate is very low, at about 1% over 5–10 years.
There is little M. leprae drug resistance in leprosy and few reports of multi-drug resistance (1, 2, 3,
4, 5, 6, 7, 8). An antibiotic treatment may take months or years to produce clinical improvement,
especially in patients with an initial high bacterial index (BI).
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Schistosomiasis, also known as bilharzia, is a disease caused by parasitic worms that require two hosts: humans and certain species of snails. There are two forms of the disease, namely, intestinal schistosomiasis, caused by Schistosoma mansoni and S. japonicum, and urogenital schistosomiasis, cause
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d by S. haematobium. There are less common schistosome species in some parts of the world, e.g. S. mekongi and S. intercalatum. Schistosomiasis ranks second only to malaria as the most common parasitic disease worldwide.
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Prevalence of Schistosoma Haematobium Measured by a Mobile Health System in an Unexplored Endemic Region in the Subprefecture of Torrock, Chad
Layaye, D.; E de Bruijn, M.; de Jong, T.;
JMIR Publication Advancing Digital Health and Open Science
(2019)
CC
Schistosoma haematobium is a parasitic digenetic trematode responsible for schistosomiasis (also known as bilharzia). The disease is caused by penetration of the skin by the parasite, spread by intermediate host molluscs in stagnant waters, and can be treated by administration of praziquantel. Schis
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tosomiasis is considered to be an important but neglected tropical disease.
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Localized cutaneous leishmaniasis and its evolving forms (diffuse cutaneous leishmaniasis, mucosal leishmaniasis and cutaneous leishmaniasis recidivans), together with the sequela of visceral leishmaniasis (post-kala-azar dermal leishmaniasis), account for about one million cases of dermal leishmani
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ases per year worldwide. Although not lethal, the dermal leishmaniases cause chronic, disfiguring skin lesions which are an important cause of morbidity and stigma.
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The Ethiopia Multi-Sectorial Cholera Elimination Plan (2022-2028) outlines a national strategy to eliminate cholera in Ethiopia by 2028. The plan follows the Global Roadmap to End Cholera by 2030 and is based on six key pillars: Leadership & Coordination, Water, Sanitation & Hygiene (WASH), Surveill
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ance & Reporting, Use of Oral Cholera Vaccines (OCV), Healthcare System Strengthening, and Community Engagement.
Ethiopia has historically faced recurrent cholera outbreaks due to poor sanitation, unsafe water, and weak health infrastructure. The plan prioritizes high-risk areas (hotspot woredas) and aims to reduce cholera-related mortality by 90% by 2028. It includes efforts to improve WASH conditions, strengthen disease surveillance, enhance rapid response capabilities, expand vaccination campaigns, and integrate cholera control into broader health policies.
The government, in collaboration with international partners such as WHO, UNICEF, and the Global Task Force for Cholera Control (GTFCC), will implement and monitor the plan. The estimated budget for the initiative is $390 million over eight years. Ethiopia aims to achieve zero cholera transmission in hotspot regions, ensuring sustainable public health improvements.
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Surveillance, prevention and control of leishmaniases in the European Union and its neighbouring countries
European Centre for disease prevention and control (ECDC)
European Centre for disease prevention and control (ECDC)
(2022)
C_CDC
This technical report presents the epidemiology of human and animal leishmaniases in the EU and its neighbouring countries and concludes that the disease remains widespread and underreported in many countries of southern Europe, northern Africa, and the Middle East and that there is a need to improv
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e leishmaniasis prevention and control based on robust surveillance in humans, animals, and vectors, and to increase public awareness following a one health approach.
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