It's time to deliver differently.
Accessed: 13.11.2019
Interim Guidance. This document provides guidance for: screening and triage of pregnant women in the context of an Ebola outbreak; infection prevention and control (IPC) precautions for pregnant women at risk of EVD transmission during childbirth and complication management; management of pregnant... EVD cases, contacts and survivors; lactation and Ebola virus disease.
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July 2018
This fourth edition of the Unitaid/WHO market and technology landscape: HIV rapid diagnostic tests for self-testing report summarizes the current HIV testing gap; the challenges facing efforts to scale up; and the potential role HIV self-testing (HIVST) could play to achieve the United... Nation’s 90-90-90 targets. In particular, the report synthesises the existing and emerging market demand and supply of kits.
The information in this report is intended for manufacturers, donors, national programmes, researchers and other global health stakeholders who are exploring the potential role of HIVST.
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Conflict and Health 2015, 9:8 doi:10.1186/s13031-015-0035-8
DHS Working Papers No. 102
Working Document Nov. 2020
The COVAX Supply and Logistics workstream lead by UNICEF, Gavi and WHO have released a working copy of the COVID-19 Vaccination, Country Readiness & Delivery: Supply and Logistics Guidance. Countries might find this Guide useful when developing and strengthening their sup...ply chain strategies to receive, store, distribute and manage the COVID-19 vaccines and their ancillary products, in line with their national deployment and vaccination plan (NDVP). The document also provides links to the different tools and resources to aid countries in performing assessment, planning and capacity-building activities.
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PQDx 0197-045-00 WHO
PQDx PR
March /2016, version 2.0
This study aimed to understand the patterns of HIV drug resistance in pregnant women in Mozambique. This might help in tailoring optimal regimens for prevention of mother to child transmission of HIV (pMTCT) and antenatal care.
Diphtheria is caused by Corynebacterium species, mostly by toxin-producing Corynebacterium diphtheriae and rarely by toxin-producing strains of C. ulcerans and C. pseudotuberculosis. The most common type of diphtheria is classic respiratory diphtheria, whereby the exotoxin produced characteristicall...y causes the formation of a pseudomembrane in the upper respiratory tract and damages other organs, usually the myocardium and peripheral nerves. Acute respiratory obstruction, acute systemic toxicity, myocarditis and neurologic complications are the usual causes of death. The infection can also affect the skin (cutaneous diphtheria). More rarely, it can affect mucous membranes at other non-respiratory sites, such as genitalia and conjunctiva.
C. diphtheriae is transmitted from person to person by intimate respiratory and direct contact; in contrast, C. ulcerans and C. pseudotuberculosis are zoonotic infections, not transmitted person-to-person. The incubation period of C. diphtheriae is two to five days (range 1– 10 days). A person is infectious as long as virulent bacteria are present in respiratory secretions, usually two weeks without antibiotics, and seldom more than six weeks. In rare cases, chronic carriers may shed organisms for six months or more. Skin lesions are often chronic and infectious for longer periods. Effective antibiotic therapy (penicillin or erythromycin) promptly terminates shedding in about one or two days.
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As of 15 May 2020, more than 4 million confirmed cases of COVID-19, including more than 285,000 deaths have been reported to WHO. The risk of severe disease and death has been highest in older people and in persons with underlying noncommunicable diseases (NCDs), such as hypertension, cardiac diseas...e, chronic lung disease and cancer.
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