scholarly journals First World Rabies Day, 8 September 2007

2007 ◽  
Vol 12 (36) ◽  
Author(s):  
S De Martin

World Rabies Day will be inaugurated on 8 September 2007. This initiative involves human and animal health partners from local to international level with the goal of supporting human rabies prevention and animal rabies control through awareness and resources.

2018 ◽  
pp. 175-192
Author(s):  
Peter Costa ◽  
Deborah J. Briggs

Rabies is the deadliest infectious disease known to humans and animals and yet is almost always preventable even after an exposure has occurred. The lack of educational awareness is a major reason why over 55,000 people die of the disease every year. The Global Alliance for Rabies Control, in association with international partners in the field of public health, initiated new educational initiatives aimed at increasing global awareness for those living at daily risk of exposure to rabies. Three of the open source educational initiatives are described in this chapter, including: World Rabies Day; the establishment of a freely accessible scientifically accurate education bank; and hosting global webinars that connect public health experts interested in reducing the burden of rabies in their regions.


Author(s):  
Peter Costa ◽  
Deborah J. Briggs

Rabies is the deadliest infectious disease known to humans and animals and yet is almost always preventable even after an exposure has occurred. The lack of educational awareness is a major reason why over 55,000 people die of the disease every year. The Global Alliance for Rabies Control, in association with international partners in the field of public health, initiated new educational initiatives aimed at increasing global awareness for those living at daily risk of exposure to rabies. Three of the open source educational initiatives are described in this chapter, including: World Rabies Day; the establishment of a freely accessible scientifically accurate education bank; and hosting global webinars that connect public health experts interested in reducing the burden of rabies in their regions.


2020 ◽  
Author(s):  
Peter Nyasulu ◽  
Jacqueline Weyer ◽  
Rea Tschopp ◽  
Adane Mihret ◽  
Abraham Aseffa ◽  
...  

Background: Rabies a neglected tropical disease, mostly affecting poor and vulnerable populations living in remote rural areas in developing countries. The disease continues to pose a significant public health a threat with an estimated 59,000 dog-transmitted human deaths, of which an estimated 21,476 human deaths occur in Africa each year. The global strategy has been set by the quartite World Health Organization (WHO), the World Organization for Animal Health (OIE), the Food and Agriculture Organization of the United Nations (FAO) and the Global Alliance for Rabies Control (GARC), aiming for "zero human deaths associated with dog transmitted rabies by 2030". African countries, however, face several challenges and there are still gaps in controlling rabies. The aim of this study review is to determine rabies prevalence, mortality and associated risk factors in both human population and animal population and to evaluate the presence or absence of integrated one health surveillance response in African nations. Methods and analysis: We will conduct an electronic literature searches on PubMed, CINAHL, (Cumulative Index of Nursing and Allied Health Literature), Scopus, and Web of Science and other relevant databases. Reference lists from identified published articles or reviews and conference abstracts will also be searched for relevant articles. Published and unpublished literatures (grey) will be included in the search. The findings will be presented graphically in terms of mortality, morbidity, interventions for rabies control in Africa, research gaps identified, available research evidence, rabies surveillance, prevention and control and adverse events. Conclusion: This review will contribute to the coordination of interventions for surveillance, prevention, and control with African countries as country-based gaps and challenges and opportunities will be highlighted. In addition, the scaling up of post-exposure prophylaxis (PEP rabies will be evaluated in African countries and the projection to achieve the target of "zero deaths of human rabies by 2030" in Africa.


Viruses ◽  
2021 ◽  
Vol 14 (1) ◽  
pp. 75
Author(s):  
Srđan Stankov ◽  
Dušan Lalošević ◽  
Anthony R. Fooks

Urban (principally canine-mediated) rabies has been a public health risk for people living in Serbia for centuries. The first legal act in urban rabies prevention in Serbia was established in 1834 by introducing high taxes for pet dog owners. Five years later in 1839, the first set of literature describing rabies prevention was issued by the health department from The Serbian Ministry of Interior. An overview of cauterization of rabies wounds was presented as the principal method of rabies post exposure prophylaxis. In 1890, a human rabies vaccination was introduced in Serbia with the royal government directive which ordered patients to be treated at the Pasteur Institute in Budapest in receipt of rabies vaccination. Urban (canine) rabies was eliminated during the 1980s, but sylvatic (principally fox-mediated) rabies still prevailed. The last human rabies case was recorded in the Province of Kosovo and Metohija in 1980. Sylvatic rabies in Serbia is in the final stages of elimination by orally vaccinating foxes (Vulpes vulpes). The only published finding of a lyssavirus among Serbian bats was made in 1954 by Dr Milan Nikolić in the vicinity of Novi Sad. In 2006, a comprehensive two-year active surveillance program of lyssaviruses in bats in Serbia was undertaken. In this single study, all of the bats from Serbia tested negative for a lyssavirus.


2011 ◽  
Vol 2011 ◽  
pp. 1-18 ◽  
Author(s):  
Tiziana Lembo ◽  
Michaël Attlan ◽  
Hervé Bourhy ◽  
Sarah Cleaveland ◽  
Peter Costa ◽  
...  

Canine rabies, responsible for most human rabies deaths, is a serious global public health concern. This zoonosis is entirely preventable, but by focusing solely upon rabies prevention in humans, this “incurable wound” persists at high costs. Although preventing human deaths through canine rabies elimination is feasible, dog rabies control is often neglected, because dogs are not considered typical economic commodities by the animal health sector. Here, we demonstrate that the responsibility of managing rabies falls upon multiple sectors, that a truly integrated approach is the key to rabies elimination, and that considerable progress has been made to this effect. Achievements include the construction of global rabies networks and organizational partnerships; development of road maps, operational toolkits, and a blueprint for rabies prevention and control; and opportunities for scaling up and replication of successful programs. Progress must continue towards overcoming the remaining challenges preventing the ultimate goal of rabies elimination.


2019 ◽  
Vol 2 ◽  
pp. 5
Author(s):  
Emmah N. Kwoba ◽  
Philip Kitala ◽  
Linus Ochieng ◽  
Elkanah Otiang ◽  
Robert Ndung’u ◽  
...  

Background: Domestic dogs transmit 99% of the estimated 59,000 human rabies deaths occurring globally annually. To achieve the global target of zero human deaths from rabies by 2030, effective mass dog vaccination campaigns that break rabies transmission cycles in dog populations are required. This study describes the design of a dog health and demographic surveillance study established within a human health and demographic surveillance study in Western Kenya. Using baseline data from the dog cohort study, we quantify demographic parameters and describe management practices relevant for rabies transmission. Methods: All dogs in 1213 households participating in a linked human and animal health syndromic surveillance study were recruited. Data on household demographics, dog ownership, dog age and sex ratios, reproductive indices, rabies vaccination, management practices, dog movement and health status were collected at least monthly. Results: 460 of 1213 (38%) of the study households owned dogs (mean 2 dogs/household), and 526 (70%) of those without dogs had owned dogs previously. 802 dogs were recruited into the study, more than half (52%) of those with known ages were ≤ 1 year old. The dog:human ratio in the study population was 1:7, the dog density 54 dogs/km2, and the female: male dog sex ratio was 1:1.3. Rabies vaccination was low (5% coverage), and only 48 (12%) male dogs and 13 (5%) female dogs were castrated and spayed, respectively. Dogs were predominantly local breed (99%), mainly kept for security purposes, almost always (97%) left to scavenge for leftovers and 61% roamed freely. Conclusion: Low vaccination coverage, unrestricted dog movement, and high dog population turnover with a large proportion of dogs below one-year-old support endemic rabies circulation in this population. These gaps present opportunities for the design of effective dog rabies control plans to break rabies transmission cycles in this part of Kenya.


2019 ◽  
Vol 11 (1) ◽  
Author(s):  
Joyce Adebayo ◽  
Victor Ojo ◽  
Gabriel Ogundipe ◽  
Patrick Mboya Nguku

ObjectiveThe objectives of this study are to evaluate the current animal rabies surveillance system in the state and suggest recommendations.IntroductionRabies is a zoonotic, neglected viral disease. Every 10 minutes, the world loses a life, especially children, to dog-mediated rabies. Yet it is 100% preventable. Africa, including Nigeria, has major share of the disease. Eradication of human rabies relies majorly on control of rabies in animals and this cannot be achieved without good surveillance system of the disease in animal, especially dogs. There is little or no information as to whether the surveillance system in Nigeria is effective.MethodsWe reviewed the medical records of all rabies cases reported in the 10 government and 5 registered private veterinary health facilities in the 16 LGAs of the state. We extracted 44 cases of rabies in all, between review period of 2012-2017. We also interviewed 25 key stakeholders in the system using Key Informant Interview (KII) and questionnaires. We followed the steps stated in CDC guideline for evaluation of public health surveillance system to assess the key attributes and components of the system, and analysed the data using Microsoft Excel.ResultsTwo (20%) of the government and only one in five private veterinary health facilities had records on rabies cases. All reported cases of suspected rabies involved dog bites. The confirmatory status of 32 (72.7%) of the suspected cases were unknown. Six (37.5%) LGAs did not have access to any veterinary health facility. Average of 1 technical staff per veterinary facility was seen. Overall, the system was useful and flexible. It was fairly simple, acceptable and representative. Both sensitivity and predictive Value Positive (PVP) were less than 1% while the timeliness, data quality and stability were poorConclusionsThe surveillance system was performing below optimal level. There is need for improvement in the animal rabies surveillance system to achieve elimination of human rabies in Nigeria.ReferencesAdedeji, A. O., Okonko, I. O., Eyarefe, O. D., Adedeji, O. B., Babalola, E. T., and Ojezele, M. O. (2010). An overview of rabies - History , epidemiology , control and possible elimination. African Journal of Microbiology Research, 4(22), 2327–2338.Aliyu, T. (2010). Prevalence of Rabies Virus Antigens in Apparently Healthy Dogs in Yola , Nigeria. Researcher, 2(2), 1–14.Ameh, V. O., Dzikwi, A. A., and Umoh, J. U. (2014). Assessment of Knowledge , Attitude and Practice of Dog Owners to Canine Rabies in Wukari Metropolis , Taraba State Nigeria. Global Journal of Health Science, 6(5), 226–240.Burgos-Cáceres, S., and Sigfrido. (2011). Canine Rabies: A Looming Threat to Public Health. Animals, 1(4), 326–342.Dutta, J. K., and Dutta, T. K. (1994). Rabies in endemic countries. BMJ (Clinical Research Ed.), 308(6927), 488–9.Ehimiyein, A. M., and Ehimiyein, I. O. (2014). Rabies– Its Previous and Current Trend as an Endemic Disease of Humans and Mammals in Nigeria. Journal of Experimental Biology and Agricultural Science, 2(2320), 137–149.El-moamly, A. (2014). Immunochromatographic Techniques : Benefits for the Diagnosis of Parasitic Infections. Austin Chromatography, 1(4), 1–8.Fekadu, M. (1993). Canine rabies. Journal of Veterinary Research, 60, 421–427.Kasempimolporn, S., Saengseesom, W., Huadsakul, S., Boonchang, S., and Sitprija, V. (2011). Evaluation of a rapid immunochromatographic test strip for detection of Rabies virus in dog saliva samples. Journal of Veterinary Diagnostic Investigation, 23(6), 1197-1201.Muriuki J, Thaiyah A, Mbugua S, Kitaa J and Kirui. G. (2016). Knowledge,Attitude and Practices on Rabies and Socio-economic Value of Dog Keeping in isumu and Siaya countries, Kenya. International Jornal of Veterinary Science, 5(1), 29–33.National Population Commission. (2009). 2006 population and housing census of the Federal Republic of Nigeria. Official Gazette of the Federal Republic of Nigeria, 96(2), 1.Ogunkoya, A. ., Aina, O. ., Adebayo, O. ., Oluwagbenga, A. ., Tirmidhi, A. ., Audu, S. and Garba, A. (2012). Rabies Antigen Spread Amongst Apparently Healthy Dogs in Nigeria : A Review. Rita Brazil, 8(October), 74.OIE: World Organization for Animal Health. (2012). OIE Global Conference on Rabies Control: OIE - World Organisation for Animal Health. on-rabies-control/OIE: World Organization for Animal Health. (2014). Dog vaccination: the key to end dog-transmitted human rabies : OIE - World Organisation for Animal Health.Otolorin, G. R., Umoh, J. U., Dzikwi, A. A., and Anglais, A. E. (2014). Prevalence of Rabies Antigen in Brain Tissue of Dogs Slaughtered for Human Consumption and Evaluation of Vaccination of Dogs Against Rabies in Aba , Abia State Nigeria. World J Public Health Sciences, 3(1), 5–10.Panda, S., Mitra, J., Chowdhury, S., and Sarkar, S. N. (2016). Detection Of Rabies Viral Antigen In Cattle By Rapid Immunochromtographic Diagnostic Test. Explor Anim Medical Res, 6(1), 119–122.Sharma, P., Singh, C. K., and Narang, D. (2015). Comparison of immunochromatographic diagnostic test with heminested r everse transcriptase polymerase chain reaction for detection of rabies virus from brain samples of various species. Veterinary World, 8(2), 135–138.Singh, C K; Kaw, A; Bansal, K; Dandale, M and Pranoti, S. (2012). Approaches for antemortem diagnosis of rabies 1. CIBTech Journal of Biotechnology, 1(1), 1–16.Takayama, N. (2008). Rabies: A preventable but incurable disease. Journal of Infection and Chemotherapy, 14(1), 8–14.Wang, H., Feng, N., Yang, S., Wang, C., Wang, T., Gao, Y. and Xia, X. (2010). A rapid immunochromatographic test strip for detecting rabies virus antibody. Journal of Virological Methods, 170(1–2), 80–5.WHO. (2016). WHO | Rabies. WHO.Wu, X., Hu, R., Zhang, Y., Dong, G. and Rupprecht, C. E. (2009). Reemerging rabies and lack of systemic surveillance in People’s Republic of China. Emerging Infectious Diseases, 15(8), 1159–64. 


2020 ◽  
Author(s):  
Peter Nyasulu ◽  
Jacqueline Weyer ◽  
Rea Tschopp ◽  
Adane Mihret ◽  
Samuel Victor Nuvor ◽  
...  

Abstract Background: Rabies a neglected tropical disease, mostly affecting poor and vulnerable populations living in remote rural areas in developing countries. The disease continues to pose a significant public health a threat with an estimated 59,000 dog-transmitted human deaths, of which an estimated 21,476 human deaths occur in Africa each year. The global strategy has been set by the quartite World Health Organization (WHO), the World Organization for Animal Health (OIE), the Food and Agriculture Organization of the United Nations (FAO) and the Global Alliance for Rabies Control (GARC), aiming for "zero human deaths associated with dog transmitted rabies by 2030". African countries, however, face several challenges and there are still gaps in controlling rabies. The aim of this study review is to determine rabies prevalence, mortality and associated risk factors in both human population and animal population and to evaluate the presence or absence of integrated one health surveillance response in African nations.Methods and analysis: We will conduct an electronic literature searches on PubMed, CINAHL, (Cumulative Index of Nursing and Allied Health Literature), Scopus, and Web of Science and other relevant databases. Reference lists from identified published articles or reviews and conference abstracts will also be searched for relevant articles. Published and unpublished literatures (grey) will be included in the search. The findings will be presented graphically in terms of mortality, morbidity, interventions for rabies control in Africa, research gaps identified, available research evidence, rabies surveillance, prevention and control and adverse events.Conclusion: This review will contribute to the coordination of interventions for surveillance, prevention, and control with African countries as country-based gaps and challenges and opportunities will be highlighted. In addition, the scaling up of post-exposure prophylaxis (PEP rabies will be evaluated in African countries and the projection to achieve the target of "zero deaths of human rabies by 2030" in Africa.


2019 ◽  
Vol 2019 ◽  
pp. 1-8
Author(s):  
Pushpakumara Don Bamunusinghage Nihal ◽  
Ashoka Dangolla ◽  
Ranjani Hettiarachchi ◽  
Preeni Abeynayake ◽  
Craig Stephen

Sri Lanka is progressing towards its goal of eliminating human rabies. This goal rests on programs designed to limit canine rabies, which in turn requires a combination of targeted dog rabies control and a better understanding of the movement of the virus between domestic animals, people, and wildlife. Coordinated and integrated surveillance of the disease between human and animal health sectors underpins successful rabies elimination. Our objective was to review surveillance data from 2005 to 2014 to assemble the first multispecies synthesis of rabies information in Sri Lanka and, in doing so, assess needs and opportunities for a One Health approach to rabies surveillance in the country. Our descriptive epidemiological findings were consistent with other studies showing a decline in human cases, endemic and unchanging numbers of dog cases, a relationship between human density and the occurrence of human and animal cases, and significant gaps in understanding trends in rabies incidences in livestock and wildlife. Assessing the trends in the data from the three government organizations responsible for rabies surveillance was difficult due to lack of information on animal population sizes, unquantified sampling biases due to inequities in access to diagnostic capacities, regulatory and administrative barriers, and a continued reliance on clinical means to establish a diagnosis. The information required for a comprehensive rabies control programme was not standardized or consistent, was not in one place, showed significant gaps in completeness, and was not amenable to routine and rapid analysis. Achieving rabies elimination in Sri Lanka would benefit from harmonization of diagnostic and information management standards across animal and human health sectors as well as equitable access to diagnostic capacity for all regions and species.


1999 ◽  
Vol 75 (7) ◽  
pp. 135-48
Author(s):  
Wagner A. da Costa

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