This study examines over 20 years of CBR implementation in Nepal. It includes an overview of CBR interventions, provides analysis of approaches and activities in terms of impact and sustainability and makes recommendations for future developments in CBR. This resource is useful for people interested... in CBR in Nepal
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An update of Yellow Fever outbreak in Nigeria, regularly updates
The Agency for Toxic Substances and Disease Registry (ATSDR) has produced a three-volume series entitled Managing Hazardous Material Incidents. The series is designed to help emergency response and health care professionals plan for and respond to hazardous material emergencies.
- Volume I Emergenc...y Medical Services: A Planning Guide for the Management of Contaminated Patients
- Volume II Hospital Emergency Departments: A Planning Guide for the Management of Contaminated Patients
- Volume III Medical Management Guidelines for Acute Chemical Exposures
Volumes I and II are planning guides to assist first responders and hospital emergency department personnel in planning for incidents that involve hazardous materials.
Volume III is a guide for health care professionals who treat persons who have been exposed to hazardous materials.
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A tutorial for trainers in healthcare settings
Version 2: 2 Dec 2014
"The document focuses on an extended set of PPE components, which includes goggles, respirators, gloves,
coveralls and footwear. Used properly, these PPE components can provide effective protection even from airborne
transmissi...on. The presented PPE components can be used in a variety of settings and also in different
combinations. At the same time, the tutorial shall encourage trainers and users to understand the rationales behind
the different approaches. "
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Open Access Maced J Med Sci. 2017 Mar 15; 5(1):37-41.
October 2009 | Volume 6 | Issue 10 | e1000162
www.jogh.org • doi: 10.7189/jogh.02.020405 ~ December 2012 • Vol. 2 No. 2 • 020405
Bulletin of the World Health Organization, 2001, 79 (4)
02 - Series on Disability-Inclusive Development
Acute Radiation Syndrome (ARS) (sometimes known as radiation toxicity or radiation sickness) is an acute illness caused by irradiation of the entire body (or most of the body) by a high dose of penetrating radiation in a very short period of time (usually a matter of minutes). The major cause of thi...s syndrome is depletion of immature parenchymal stem cells in specific tissues. Examples of people who suffered from ARS are the survivors of the Hiroshima and Nagasaki atomic bombs, the firefighters that first responded after the Chernobyl Nuclear Power Plant event in 1986, and some unintentional exposures to sterilization irradiators.
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Injury to the skin and underlying tissues from acute exposure to
a large external dose of radiation is referred to as cutaneous
radiation injury (CRI). Acute radiation syndrome (ARS) 1 will
usually be accompanied by some skin damage; however, CRI
can ...occur without symptoms of ARS. This is especially true with
acute exposures to beta radiation or low-energy x-rays, because
beta radiation and low-energy x-rays are less penetrating and less
likely to damage internal organs than gamma radiation is. CRI can
occur with radiation doses as low as 2 Gray (Gy) or 200 rads 2 and
the severity of CRI symptoms will increase with increasing doses.
Most cases of CRI have occurred when people inadvertently came
in contact with unsecured radiation sources from food irradiators,
radiotherapy equipment, or well depth gauges. In addition, cases of
CRI have occurred in people who were overexposed to x-radiation
from fluoroscopy units.
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Successful detonation of an improvised nuclear device (IND) would be a catastrophic event, causing an unprecedented number of injuries and lives lost, as well as economic, political, and social disruption. However, an effective medical response and an infrastructure prepared to protect itself from f...allout could save tens of thousands of lives. Since 2001, all levels of government, academic institutions, and professional organizations have done significant work to enhance our ability to prepare for and respond to a nuclear detonation. The following manual is intended to simplify and translate the necessary protective actions and medical response modalities in order to make them more accessible and easier to translate into practice. The approach of this manual is to provide a common baseline application for various allied response disciplines (to include senior operational responders, emergency managers, public health advisors, and municipal, State, and Federal executives and elected officials). This manual will enhance mutual understanding of the basics of nuclear response.
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Acute Radiation Syndrome (ARS) (sometimes known as radiation
toxicity or radiation sickness) is an acute illness caused by
irradiation of the entire body (or most of the body) by a high dose
of penetrating radiation in a very short period of time (usually ... a
matter of minutes). The major cause of this syndrome is depletion
of immature parenchymal stem cells in specific tissues. Examples of
people who suffered from ARS are the survivors of the Hiroshima
and Nagasaki atomic bombs, the firefighters that first responded
after the Chernobyl Nuclear Power Plant event in 1986, and some
unintentional exposures to sterilization irradiators.
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Detonation of a nuclear weapon or activation of a radiological dispersal device could cause radioactively contaminated decedents. These guidelines are designed to address both of these scenarios. They could also be applicable in other instances where decedents’ bodies are contaminated with radioa...ctive material (e.g. reactor accidents, transportation accidents involving radioactive material, or
the discharge of a decedent from a hospital after injection or implantation of a radiopharmaceutical). These guidelines suggest ways for medical examiners, coroners, and morticians to deal with loose surface contamination, internal contamination, or shrapnel on or in decedents’ bodies.
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N Engl J Med 2018; 378:577-579; DOI: 10.1056/NEJMc1711583
A dose of oral vaccine provides effective short-term protection against cholera during an outbreak, a study in Zambia shows.
According to researchers, a shortage in the global stockpile of cholera vaccines meant that single-dose oral vacc...ination was necessary to tackle an outbreak in Lusaka, Zambia, in February 2016. The emergency vaccination campaign was implemented in April 2016, targeting more than 500,000 people in Lusaka’s overcrowded township areas.
The 2016 outbreak happened when Zambia had not reported a case of cholera in four years.
To determine the effectiveness of the single-dose cholera vaccine, the researchers enrolled 66 patients with confirmed cholera and 330 people without the disease who were neighbours of the patients.
According to the study the effectiveness of the single dose vaccination was about 90 per cent.
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