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Many critical questions remain about the effectiveness of COVID-19 vaccines in real-world settings. These questions can only be answered in post-introduction vaccine effectiveness studies.This guidance document outlines an approach to leverage existing surveillance systems for Severe Acute Respirato
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ry Infection (SARI) to estimate COVID-19 vaccine effectiveness (VE) in preventing SARI associated with laboratory-confirmed SARS-CoV-2 using existing SARI surveillance systems. The approach uses the test-negative design to evaluate VE; cases are SARI patients who tested positive for SARS-CoV-2, and controls are SARI patients who tested negative for SARS-CoV-2.
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This protocol establishes the principles and definitions of a surveillance system devised by the WHO Health in Prisons Programme (HIPP) to monitor the evolution of COVID-19-related epidemiological data in prisons and other places of detention
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and to report the main measures adopted to prevent, control and manage the spread of the disease.
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Soil-transmitted helminths are a group of intestinal worms that include Ascaris lumbricoides (giant roundworm), Trichuris trichiura (whipworm), and Ancylostoma spp. (A. duodenale, A. ceylanicum) and Necator americanus (hookworms). Despite the clear biological differences among the different species,
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their transmission is characterized by the same sequence of events: (i) infected individuals excrete worm eggs through their stool in soil; (ii) under optimal conditions of moisture and temperature the excreted eggs develop into infectious stages; and (iii) finally, infection occurs through oral uptake (Ascaris, Ancylostoma and Trichuris) or skin penetration (Ancylostoma and Necator) of these infectious stages (embryonated eggs and third stage larvae) that reside in the soil and/or in the environment (referring to their common name).
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Since the launch of the 2012–2020 World Health Organization (WHO) road map for the control, elim-ination and eradication of neglected tropical diseases (NTDs) (1), considerable progress against NTDs has been made. Between 2010 and 2020, the number
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of people requiring interventions against NTDs globally fell by 600 million, and 42 countries, areas and territories eliminated at least one NTD (2). In January 2021, a new NTD road map for 2021–2030 (2) was launched, setting future targets and mile-stones for 20 diseases and disease groups. The road map also sets cross-cutting targets, including for strengthened capacity of national health systems to deliver interventions through existing infrastructure.
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Health ministries currently lack effective tools for monitoring and evaluation of schistosomiasis control programmes. Egg detection can be used, but the cost, challenges of obtaining samples, and the need for trained personnel and equipment limit th
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e frequency of monitoring. The purpose of this TPP is to guide the development of new diagnostic tools to reliably measure when prevalence is above or below a cut-off of 10% in school-aged children. Communities remaining above 10% require annual MDA, while communities below 10% can reduce MDA frequency as long as < 10% prevalence can be maintained. However, the lack of a reliable test has hindered the development of maintenance strategies. The test is also needed to track changes of prevalence > 10% to ensure that annual MDA is reducing overall prevalence.
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The internationally recognized criteria for diagnosis of neurocysticercosis include a requirement for neuroimaging techniques, such as computerized tomography (CT) and/or magnetic resonance imaging (MRI), ideally supported by serology. These facilities are not available in all settings, especially i
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n rural areas of low-income countries, making it difficult to identify and treat patients. Additionally, there is controversy about the role, type and duration of anthelmintic, antiinflammatory and antiepileptic drug (AED) treatments for different forms of neurocysticercosis.
These guidelines were developed to assist health-care providers in appropriate, evidence-based management of parenchymal neurocysticercosis. The guidelines do not address other forms of neurocysticercosis and do not include management of extraparenchymal disease (including cysticerci in the cerebral ventricles or subarachnoid space). The aim of the guidance is to improve decision-making to ensure appropriate patient care and to avoid misdiagnoses and inappropriate treatment of patients with neurocysticercosis.
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Orientations provisoires
9 août 2021
Le présent document vise à décrire un ensemble minimal d'activités de surveillance recommandées au niveau national pour détecter et surveiller la prévalence relative des variantes du SRAS-CoV-2 et à présenter un ensemble d'activités pour la caractér
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isation et l'évaluation du risque que présentent ces variantes. k posés par ces variants. Un ensemble d'indicateurs est également fourni pour normaliser la surveillance et la déclaration publique de la circulation des variants.
Ce document est principalement destiné aux autorités de santé publique nationales et infranationales et aux partenaires qui soutiennent la mise en œuvre de la surveillance des variantes du SRAS-CoV-2.
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The frequency of infectious disease epidemics is increasing, and the role of the health sector in the management of epidemics is crucial in terms of response. In the context of infectious disease epidemics, the use of climate-informed early warning
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systems (EWS) has the potential to increase the effectiveness of disease control by intervening before or at the beginning of the epidemic curve, instead of during the downward slope.
Currently, the initiation of interventions is heavily reliant on routine disease surveillance systems – data that often arrive too late for preventative response. However, forecasting of disease outbreaks using surveillance and weather information shows promising potential – there also remains further scope to examine seasonal climate forecasts. By combining these elements in new EWS based on computational models, it will be possible to improve both the timeliness and impact of disease control. The World Health Organization (WHO) is strengthening existing surveillance systems for infectious diseases to enable the development of more robust and timely EWS, which has resulted in the rapid development and innovation of EWS for disease outbreaks.
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Technology landscape
Severe bacterial infections are a leading cause of morbidity and mortality among people with advanced HIV disease, after tuberculosis and cryptococcal disease. For countries to reach the end-AIDS targets for 2030, there is a need to establish a roadmap for managing severe bacterial infections and re
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duce mortality. The purpose of the meeting was to
Review the current research and implementation data on the use of prophylactic antibiotics (specifically azithromycin/macrolides) as part of the AHD package of care; To review options for preventing SBIs that are in line with goals of reducing AMR; Present the current evidence on diagnostics for SBI; Discuss research gaps and implementation challenges.
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Updated 2 June 2022.#
This entry contains the Status Report of WHO Collaborating Centres in the Americas by Country and a new document with information of Collaborating Centres by Outcome of the Strategic Plan of the Pan American Health Organizatio
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n 2020‑2025.
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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
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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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The Pandemic Influenza Preparedness (PIP) Framework is a World Health Assembly resolution adopted unanimously by all Member States in 2011. It brings together Member States, industry, other stakeholders and WHO to implement a global approach to pand
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emic influenza preparedness and response. The Framework includes a benefit-sharing mechanism called the Partnership Contribution (PC). The PC is collected as an annual cash contribution from influenza vaccine, diagnostic, and pharmaceutical manufacturers that use the WHO Global Influenza Surveillance and Response System (GISRS). Funds are allocated for: (a) pandemic preparedness capacity building; (b) response activities during the time of an influenza pandemic; and (c) PIP Secretariat for the management and implementation of the Framework.
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This short document summarizes the key content of the WHO report Reducing the harm from alcohol by regulating cross-border alcohol marketing, advertising and promotion. It outlines the way that alcohol is being marketed across national borders – often by digital means – and often regardless of t
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he social, economic or cultural environment in receiving countries. It highlights how increasingly sophisticated advertising and promotion techniques, including linking alcohol brands to sports and cultural activities, sponsorships and use of e-mails, SMS and social media, are being used to increase customer loyalty and gain new customers. The summary also explains that young people and heavy drinkers are increasingly targeted by alcohol advertising, often to the detriment of their health, and highlights the need for more effective national regulations and better international collaboration.
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