Profile of Health Crisis Response within District with High Disaster Risk: District of Kapuas, Indonesia
Profile of Health Crisis Response within District with High Risk of Disaster : District of North Bengkulu, Indonesia
Profile of Health Crisis Response within District with High Risk of Natural Disaster : District of Morotai Island, Indonesia
Profile of health crisis response within district, city or area in Indonesia with high risk of natural disaster : District of Bombana, Indonesia
Profile of health crisis response of district, city or area in Indonesia with high risk of natural disaster : District of Ketapang
Profile of health crisis response of area, city or district within Indonesia with high risk of natural disaster : District of Polewali Mandar, Indonesia
Profile of health crisis response of city, area or district in Indonesia with high risk of natural disaster : District of Ende, Indonesia
Profile of health crisis response of district, area or cities in Indonesia with high risk of natural disaster : Kutai City, Indonesia
Profile of Crisis Response of District Health / Disaster Risk: District of South Central Timor, Indonesia
Profile of Health Crisis Response of District with High Risk of Natural Disaster : District of North Kolaka, Indonesia
Profile of Health Crisis Response within District with High Risk of Natural Disaster : District of North Halmahera, Indonesia
Profile of Crisis Response of District Health / Disaster Risk: Bontang City, Indonesia
Profile of Crisis Response of District Health / Disaster Risk: Regency of East Flores, Indonesia
Fact Sheet, May 2018.
Nipah virus (NiV) is a zoonotic virus (it is transmitted from animals to humans) and can also be transmitted through contaminated food or directly between people. In infected people, it causes a range of illnesses from asymptomatic (subclinical) infection to acute respiratory ...illness and fatal encephalitis. The virus can also cause severe disease in animals such as pigs, resulting in significant economic losses for farmers
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A rapid review of evidence on the managing the risk of disease emergence in the wildlife trade - World Animal Health Organization (OIE)
Infectious diseases continue to impose unpredictable burdens on global health and economies, a subject that requires constant research and updates. In this sense, the objective of the present article was to review studies on the role of wild animals as reservoirs and/or dispersers of etiological age...nts of human infectious diseases in order to compile data on the main wild animals and etiological agents involved in zoonotic outbreaks.
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Hendra virus (HeV) continues to pose a serious public health concern as spillover events occur sporadically. Terminally ill horses can exhibit a range of clinical signs including frothy nasal discharge, ataxia or forebrain signs. Early signs, if detected, can include depression, inappetence, colic o...r mild respiratory signs. All unvaccinated ill horses in areas where flying foxes exist, may potentially be infected with HeV, posing a significant risk to the veterinary community. Equivac® HeV vaccine has been fully registered in Australia since 2015 (and under an Australian Pesticides and Veterinary Medicines Authority special permit since 2012) for immunization of horses against HeV and is the most effective and direct solution to prevent disease transmission to horses and protect humans. No HeV vaccinated horse has tested positive for HeV infection. There is no registered vaccine to prevent, or therapeutics to treat, HeV infection in humans. Previous equine HeV outbreaks tended to cluster in winter overlapping with the foaling season (August to December), when veterinarians and horse owners have frequent close contact with horses and their bodily fluids, increasing the chance of zoonotic disease transmission. The most southerly case was detected in 2019 in the Upper Hunter region in New South Wales, which is Australia's Thoroughbred horse breeding capital. Future spillover events are predicted to move further south and inland in Queensland and New South Wales, aligning with the moving distribution of the main reservoir hosts. Here we (1) review HeV epidemiology and climate change predicted infection dynamics, (2) present a biosecurity protocol for veterinary clinics and hospitals to adopt, and (3) describe diagnostic tests currently available and those under development. Major knowledge and research gaps have been identified, including evaluation of vaccine efficacy in foals to assess current vaccination protocol recommendations.
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Int. J. Environ. Res. Public Health 2021, 18(24), 13339; https://doi.org/10.3390/ijerph182413339
The climate crisis threatens to exacerbate numerous climate-sensitive health risks, including heatwave mortality, malnutrition from reduced crop yields, water- and vector-borne infectious diseases, and... respiratory illness from smog, ozone, allergenic pollen, and wildfires. Recent reports from the Intergovernmental Panel on Climate Change stress the urgent need for action to mitigate climate change, underscoring the need for more scientific assessment of the benefits of climate action for health and wellbeing.
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CEPI is seeking to raise $3.5 billion to implement CEPI’s next 5-year plan. To mitigate the immediate threat of COVID-19 variants, it is activating key elements of this plan now—and seeking to mobilise a portion of this $3.5 billion in 2021. We have already launched R&D programmes to initiate de...velopment of next-generation vaccines against COVID-19 variants and we are planning studies to answer critical scientific questions related to the durability of immunity, effectiveness of mixed-vaccine regimens, and vaccine effectiveness in vulnerable populations such as pregnant women. We are also bringing forward our plans to develop vaccines that could protect against multiple COVID-19 variants and other coronavirus specie
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