This Joint Emergency Management Plan of the International Organizations (Joint Plan) describes the
interagency framework of preparedness for and response to an actual, potential or perceived nuclear or
radiological emergency independent of whether it arises from an acci...dent, natural disaster, negligence, nuclear
security event or any other cause.
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The aim of this publication is to provide practical guidance for public information officers on the preparation for and response to a nuclear or radiological emergency, and to fulfil in part functions assigned to the IAEA in the Convention on Assistance in the Case of a... Nuclear
Accident or Radiological Emergency (Assistance Convention), as well as meeting requirements stated in IAEA Safety Standards Series No. SF-1, Fundamental Safety Principles, and in IAEA Safety Standards No. GS-R-2, Preparedness and Response for a Nuclear or Radiological Emergency.
Also available in Arabic, Chinese, French, Russian and Spanish: https://www-pub.iaea.org/books/IAEABooks/8889/Communication-with-the-Public-in-a-Nuclear-or-Radiological-Emergency
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The aim of this publication is to provide practical guidance for the first responders who will respond during the first few hours to a radiological emergency and for the national officials who would support this early response. This publication provides guidance in the form of action guides, instruc...tions and data that can be easily applied by a State to build a basic capability to respond to a radiological emergency.
Also available in Arabic, French, Russian and Spanish: https://www-pub.iaea.org/books/IAEABooks/7606/Manual-for-First-Responders-to-a-Radiological-Emergency
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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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This guide is intended for shelter operators, planners, and staff, as well as emergency managers, public health professionals, and radiation protection professionals who participate in shelter planning and could be called upon to support shelter operations. This guide provides information on the inc...ident-specific considerations that shelter operators will
need to take into account in a radiation emergency. Shelter operations include other mass care and emergency assistance activities that are required to support a sheltered population, such as feeding, providing essential supplies, and assisting with reunification of family and friends. Guidance to support such activities can be found in other planning resources. The information in this guide is intended to complement, not supplant, existing shelter protocols and responsibilities.
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This course describes the health effects of war, weapons and strategies of violent conflict. Beginning with weapons of mass destruction it then moves on to other weapons and strategies of war such as the use of landmines and mass rape. The course concludes with a number of lessons which give an hist...orical and practical analysis of the response of health professional groups to war and militarisation.
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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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The risks of the use of nuclear, radiological, biological or chemical (NRBC) weapons are heterogeneous. Each risk has its own implications for developing and deploying any capacity to assist victims of an NRBC event and, in parallel, for the health and security of the people bringing this assistance.... At an international level, there are no plans for assisting the victims of an NRBC event which are both adequate and safe. Recognizing
the realities of the contexts associated with each risk throws up numerous challenges; such recognition is also a prerequisite for addressing these challenges. The realities that have to be considered relate to:
1. developing, acquiring, training for and planning an NRBC response capacity;
2. deploying a response capacity in an NRBC event;
3. the mandates and policies of international organizations pertaining to NRBC events. The challenges that will pose the greatest difficulty for a humanitarian organization are those for which the solutions are ‘non-buyable’ and which involve making extremely difficult decisions. Attempting to assist victims of an NRBC event without a reality-based approach might generate ineffective and unacceptably dangerous situations for those involved.
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Report of the Joint World Health Organization–Brien Holden Vision Institute Global Scientific Meeting on Myopia | University of New South Wales, Sydney, Australia 16–18 March 2015
"The Emergency Response Guidelines for Anhydrous Hydrogen Fluoride (Guidelines) were prepared
by the American Chemistry Council’s (ACC) Hydrogen Fluoride Panel (Panel). This document is
intended to provide general information to persons addressing an emergency response in the course
of handling... and transporting anhydrous hydrogen fluoride (AHF)."
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A fact sheet from the National Academies and the U.S. Department of Homeland Security on human pathogens, biotoxins and agricultural threats
The purpose of this guidance is to provide emergency planners with nuclear detonationspecific
response recommendations to maximize the preservation of life in the event of
an urban nuclear detonation. This guidance addresses the unique effects and impacts of a
nuclear detonation such as scale of ...destruction, shelter and evacuation strategies,
unparalleled medical demands, management of nuclear casualties, and radiation dose
management concepts.
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A guidebook intended for use by first responders
during the initial phase of a transportation incident
involving dangerous goods/hazardous materials
Save the Children in Albania is establishing and strengthening structures and mechanisms which monitor and advocate for children’s rights, promote ways to protect children from all forms of exploitation and violence and also empower and support children and their representatives to meaningfully ad...vocate for implementation of their rights and influence decisions that bring about changes in their future lives.
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A manual for people working in environments contaminated by landmines and other explosive hazards including improvised explosive devices.
The purpose of this interim guidance is to provide information and insight to assist public policy and
health system leaders in preparing for and responding to an MCE caused by terrorist use of explosives
(TUE). This document provides practical information to promote comprehensive mass casualty ca...re
in the event of a TUE event and focuses on two areas:
1. leadership in preparing for and responding to a TUE event, and
2. effective care of patients in the prehospital and hospital environments during a TUE event.
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Reducing the humanitarian impact of the use of explosive weapons in populated areas is a key priority for the United
Nations, the International Committee of the Red Cross (ICRC), civil society and an increasing number of Member States.
The United Nations Secretary-General has expressly called on... parties to conflict to avoid the use in populated areas of
explosive weapons with wide-area effects.
While the use of explosive weapons in populated areas may in some circumstances be lawful under international
humanitarian law (IHL), empirical evidence reveals a foreseeable and often widespread pattern of harm to civilians,
particularly from explosive weapons with wide-area effects.
Many types of explosive weapons exist and are currently in use. These include air-delivered bombs, artillery projectiles,
missiles and rockets, mortar bombs, and improvised explosive devices (IEDs). Some are launched from the air and
others are surface launched. Whilst different technical features dictate their accuracy of delivery and explosive effect,
these weapons generally create a zone of blast and fragmentation with the potential to kill, injure or damage anyone
or anything within that zone. This makes their use in populated areas – such as towns, cities, markets and camps for
refugees and displaced persons or other concentrations of civilians – particularly problematic. The problems increase
further if the effects of the weapon extend across a wide-area either because of the scale of blast that they produce; their
inaccuracy; the use of multiple munitions across an area; or a combination thereof.
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The roundtable provided a forum that allowed communicators across a number of Federal agencies to share information, strategies, and challenges in developing and providing communication messages and materials to the public in preparation for, and in response to, a radiation... emergency. Throughout the discussion , several “big picture” qestions were brought up that may be addressed in future interagency efforts.
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