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Emerging infectious diseases.

Periodical
Communicable Diseases
Communicable Disease Control
Publisher:
National Center for Infectious Diseases, Centers for Disease Control and Prevention (CDC),
Frequency: Bimonthly, 1999-
Country: United States
Language: English
Author(s):
National Center for Infectious Diseases (U.S.)
Start Year:1995 -
ISSN:
1080-6040 (Print)
1080-6059 (Electronic)
1080-6040 (Linking)
Impact Factor
11.8
2022
NLM ID:9508155
(OCoLC):31848353
(DNLM):SR0083700(s)
Coden:EIDIFA
LCCN:sn 95007041
Classification:W1 EM664LH
Serologic assessment of possibility for MERS-CoV infection in equids.
Emerging infectious diseases    December 23, 2014   Volume 21, Issue 1 181-182 doi: 10.3201/eid2101.141342
Meyer B, García-Bocanegra I, Wernery U, Wernery R, Sieberg A, Müller MA, Drexler JF, Drosten C, Eckerle I.No abstract available
Hepacivirus infection in domestic horses, Brazil, 2011-2013.
Emerging infectious diseases    November 25, 2014   Volume 20, Issue 12 2180-2182 doi: 10.3201/eid2012.140603
Gemaque BS, Junior Souza de Souza A, do Carmo Pereira Soares M, Malheiros AP, Silva AL, Alves MM, Gomes-Gouvêa MS, Pinho JR....No abstract available
Hendra virus vaccine, a one health approach to protecting horse, human, and environmental health.
Emerging infectious diseases    February 28, 2014   Volume 20, Issue 3 372-379 doi: 10.3201/eid2003.131159
Middleton D, Pallister J, Klein R, Feng YR, Haining J, Arkinstall R, Frazer L, Huang JA, Edwards N, Wareing M, Elhay M, Hashmi Z, Bingham J, Yamada M....In recent years, the emergence of several highly pathogenic zoonotic diseases in humans has led to a renewed emphasis on the interconnectedness of human, animal, and environmental health, otherwise known as One Health. For example, Hendra virus (HeV), a zoonotic paramyxovirus, was discovered in 1994, and since then, infections have occurred in 7 humans, each of whom had a strong epidemiologic link to similarly affected horses. As a consequence of these outbreaks, eradication of bat populations was discussed, despite their crucial environmental roles in pollination and reduction of the insect p...
Staphylococcus delphini and methicillin-resistant S. pseudintermedius in horses, Canada.
Emerging infectious diseases    February 26, 2014   Volume 20, Issue 3 485-487 doi: 10.3201/eid2003.130139
Stull JW, Slavić D, Rousseau J, Weese JS.No abstract available
Transmission of Streptococcus equi subspecies zooepidemicus infection from horses to humans.
Emerging infectious diseases    June 20, 2013   Volume 19, Issue 7 1041-1048 doi: 10.3201/eid1907.121365
Pelkonen S, Lindahl SB, Suomala P, Karhukorpi J, Vuorinen S, Koivula I, Väisänen T, Pentikäinen J, Autio T, Tuuminen T.Streptococcus equi subspecies zooepidemicus (S. zooepidemicus) is a zoonotic pathogen for persons in contact with horses. In horses, S. zooepidemicus is an opportunistic pathogen, but human infections associated with S. zooepidemicus are often severe. Within 6 months in 2011, 3 unrelated cases of severe, disseminated S. zooepidemicus infection occurred in men working with horses in eastern Finland. To clarify the pathogen's epidemiology, we describe the clinical features of the infection in 3 patients and compare the S. zooepidemicus isolates from the human cases with S. zooepidemicus isolates...
Tick-borne encephalitis virus in horses, Austria, 2011.
Emerging infectious diseases    May 2, 2013   Volume 19, Issue 4 635-637 doi: 10.3201/eid1904.121450
Rushton JO, Lecollinet S, Hubálek Z, Svobodová P, Lussy H, Nowotny N.An unexpectedly high infection rate (26.1%) of tick-borne encephalitis virus (TBEV) was identified in a herd of 257 horses of the same breed distributed among 3 federal states in Austria. Young age (p<0.001) and male sex (p=0.001) were positively associated with infection.
Macrolide- and rifampin-resistant Rhodococcus equi on a horse breeding farm, Kentucky, USA.
Emerging infectious diseases    January 26, 2013   Volume 19, Issue 2 282-285 doi: 10.3201/eid1902.121210
Burton AJ, Giguère S, Sturgill TL, Berghaus LJ, Slovis NM, Whitman JL, Levering C, Kuskie KR, Cohen ND.Macrolide and rifampin resistance developed on a horse breeding farm after widespread use was instituted for treatment of subclinical pulmonary lesions in foals. Resistance occurred in 6 (24%) of 25 pretreatment and 8 (62%) of 13 (62%) posttreatment isolates from affected foals. Drug-resistant isolates formed 2 distinct genotypic clusters.
Nonprimate hepaciviruses in domestic horses, United kingdom.
Emerging infectious diseases    November 23, 2012   Volume 18, Issue 12 1976-1982 doi: 10.3201/eid1812.120498
Lyons S, Kapoor A, Sharp C, Schneider BS, Wolfe ND, Culshaw G, Corcoran B, McGorum BC, Simmonds P.Although the origin of hepatitis C virus infections in humans remains undetermined, a close homolog of this virus, termed canine hepacivirus (CHV) and found in respiratory secretions of dogs, provides evidence for a wider distribution of hepaciviruses in mammals. We determined frequencies of active infection among dogs and other mammals in the United Kingdom. Samples from dogs (46 respiratory, 99 plasma, 45 autopsy samples) were CHV negative by PCR. Screening of 362 samples from cats, horses, donkeys, rodents, and pigs identified 3 (2%) positive samples from 142 horses. These samples were gene...
Autochthonous Leishmania siamensis in horse, Florida, USA.
Emerging infectious diseases    August 31, 2012   Volume 18, Issue 9 1545-1547 doi: 10.3201/eid1809.120184
Reuss SM, Dunbar MD, Calderwood Mays MB, Owen JL, Mallicote MF, Archer LL, Wellehan JF.No abstract available
Characterization of virulent West Nile virus Kunjin strain, Australia, 2011.
Emerging infectious diseases    April 21, 2012   Volume 18, Issue 5 792-800 doi: 10.3201/eid1805.111720
Frost MJ, Zhang J, Edmonds JH, Prow NA, Gu X, Davis R, Hornitzky C, Arzey KE, Finlaison D, Hick P, Read A, Hobson-Peters J, May FJ, Doggett SL....To determine the cause of an unprecedented outbreak of encephalitis among horses in New South Wales, Australia, in 2011, we performed genomic sequencing of viruses isolated from affected horses and mosquitoes. Results showed that most of the cases were caused by a variant West Nile virus (WNV) strain, WNV(NSW2011), that is most closely related to WNV Kunjin (WNV(KUN)), the indigenous WNV strain in Australia. Studies in mouse models for WNV pathogenesis showed that WNV(NSW2011) is substantially more neuroinvasive than the prototype WNV(KUN) strain. In WNV(NSW2011), this apparent increase in vir...
Shuni virus as cause of neurologic disease in horses.
Emerging infectious diseases    February 7, 2012   Volume 18, Issue 2 318-321 doi: 10.3201/eid1802.111403
van Eeden C, Williams JH, Gerdes TG, van Wilpe E, Viljoen A, Swanepoel R, Venter M.To determine which agents cause neurologic disease in horses, we conducted reverse transcription PCR on isolates from of a horse with encephalitis and 111 other horses with acute disease. Shuni virus was found in 7 horses, 5 of which had neurologic signs. Testing for lesser known viruses should be considered for horses with unexplained illness.
West Nile fever outbreak in horses and humans, Spain, 2010.
Emerging infectious diseases    December 17, 2011   Volume 17, Issue 12 2397-2399 doi: 10.3201/eid1712.110651
García-Bocanegra I, Jaén-Téllez JA, Napp S, Arenas-Montes A, Fernández-Morente M, Fernández-Molera V, Arenas A.TO THE EDITOR: West Nile virus (WNV) is a member of the genus Flavivirus within the Japanese encephalitis antigenic complex. The enzootic virus cycle involves transmission between avian hosts and ornithophilic mosquitoes, whereas humans and horses are considered dead-end hosts. Given the recent increase of WNV infection in humans and horses in Europe, concern has been raised regarding public and animal health.
Animal diseases caused by orbiviruses, Algeria.
Emerging infectious diseases    December 17, 2011   Volume 17, Issue 12 2325-2327 doi: 10.3201/eid1712.110928
Madani H, Casal J, Alba A, Allepuz A, Cêtre-Sossah C, Hafsi L, Kount-Chareb H, Bouayed-Chaouach N, Saadaoui H, Napp S.Antibodies against bluetongue virus were detected in cattle, sheep, goats, and camels in Algeria in 2008. Antibodies against epizootic hemorrhagic disease virus were detected in cattle, but antibodies against African horse sickness virus were not detected in horses and mules. Epizootic hemorrhagic disease in northern Africa poses a major risk for the European Union.
Experimental infection of horses with Hendra virus/Australia/horse/2008/Redlands.
Emerging infectious diseases    December 17, 2011   Volume 17, Issue 12 2232-2238 doi: 10.3201/eid1712.111162
Marsh GA, Haining J, Hancock TJ, Robinson R, Foord AJ, Barr JA, Riddell S, Heine HG, White JR, Crameri G, Field HE, Wang LF, Middleton D.Hendra virus (HeV) is a highly pathogenic zoonotic paramyxovirus harbored by Australian flying foxes with sporadic spillovers directly to horses. Although the mode and critical control points of HeV spillover to horses from flying foxes, and the risk for transmission from infected horses to other horses and humans, are poorly understood, we successfully established systemic HeV disease in 3 horses exposed to Hendra virus/Australia/Horse/2008/Redlands by the oronasal route, a plausible route for natural infection. In 2 of the 3 animals, HeV RNA was detected continually in nasal swabs from as ea...
Isolation and phylogenetic grouping of equine encephalosis virus in Israel.
Emerging infectious diseases    October 18, 2011   Volume 17, Issue 10 1883-1886 doi: 10.3201/eid1710.110350
Aharonson-Raz K, Steinman A, Bumbarov V, Maan S, Maan NS, Nomikou K, Batten C, Potgieter C, Gottlieb Y, Mertens P, Klement E.During 2008-2009 in Israel, equine encephalosis virus (EEV) caused febrile outbreaks in horses. Phylogenetic analysis of segment 10 of the virus strains showed that they form a new cluster; analysis of segment 2 showed ≈92% sequence identity to EEV-3, the reference isolate. Thus, the source of this emerging EEV remains uncertain.
Equine piroplasmosis associated with Amblyomma cajennense Ticks, Texas, USA.
Emerging infectious diseases    October 18, 2011   Volume 17, Issue 10 1903-1905 doi: 10.3201/eid1710.101182
Scoles GA, Hutcheson HJ, Schlater JL, Hennager SG, Pelzel AM, Knowles DP.We report an outbreak of equine piroplasmosis in southern Texas, USA, in 2009. Infection prevalence reached 100% in some areas (292 infected horses). Amblyomma cajennense was the predominant tick and experimentally transmitted Theileria equi to an uninfected horse. We suggest that transmission by this tick species played a role in this outbreak.
Fatal neurologic disease and abortion in mare infected with lineage 1 West Nile virus, South Africa.
Emerging infectious diseases    August 2, 2011   Volume 17, Issue 8 1534-1536 doi: 10.3201/eid1708.101794
Venter M, Human S, van Niekerk S, Williams J, van Eeden C, Freeman F.In 2010, lineage 1 West Nile virus was detected in South Africa in the brain of a pregnant mare that succumbed to neurologic disease and in her aborted fetus, suggesting an association with abortion in horses. All West Nile virus strains previously detected in horses and humans in South Africa were lineage 2.
Natural Burkholderia mallei infection in Dromedary, Bahrain.
Emerging infectious diseases    July 19, 2011   Volume 17, Issue 7 1277-1279 doi: 10.3201/eid1707.110222
Wernery U, Wernery R, Joseph M, Al-Salloom F, Johnson B, Kinne J, Jose S, Jose S, Tappendorf B, Hornstra H, Scholz HC.We confirm a natural infection of dromedaries with glanders. Multilocus variable number tandem repeat analysis of a Burkholderia mallei strain isolated from a diseased dromedary in Bahrain revealed close genetic proximity to strain Dubai 7, which caused an outbreak of glanders in horses in the United Arab Emirates in 2004.
Suspected horse-to-human transmission of MRSA ST398.
Emerging infectious diseases    July 14, 2011   Volume 17, Issue 6 1137-1139 doi: 10.3201/eid/1706.101330
van Duijkeren E, Ten Horn L, Wagenaar JA, de Bruijn M, Laarhoven L, Verstappen K, de Weerd W, Meessen N, Duim B.No abstract available
Fatal human case of Western equine encephalitis, Uruguay.
Emerging infectious diseases    May 3, 2011   Volume 17, Issue 5 952-954 doi: 10.3201/eid1705.101068
Delfraro A, Burgueño A, Morel N, González G, García A, Morelli J, Pérez W, Chiparelli H, Arbiza J.No abstract available
Reemergence of rabies in Chhukha district, Bhutan, 2008.
Emerging infectious diseases    December 3, 2010   Volume 16, Issue 12 1925-1930 doi: 10.3201/eid1612.100958
Tenzin , Sharma B, Dhand NK, Timsina N, Ward MP.From January through July 2008, rabies reemerged in the Chhukha district of southwestern Bhutan. To clarify the distribution and direction of spread of this outbreak, we mapped reported cases and conducted directional tests (mean center and standard deviational ellipse). The outbreak resulted in the death of 97 animals (42 cattle, 52 dogs, and 3 horses). Antirabies vaccine was given free of charge to ≈674 persons suspected to have been exposed. The outbreak spread south to north and appeared to follow road networks, towns, and areas of high human density associated with a large, free-roaming...
Genome sequence conservation of Hendra virus isolates during spillover to horses, Australia.
Emerging infectious diseases    October 30, 2010   Volume 16, Issue 11 1767-1769 doi: 10.3201/eid1611.100501
Marsh GA, Todd S, Foord A, Hansson E, Davies K, Wright L, Morrissy C, Halpin K, Middleton D, Field HE, Daniels P, Wang LF.Bat-to-horse transmission of Hendra virus has occurred at least 14 times. Although clinical signs in horses have differed, genome sequencing has demonstrated little variation among the isolates. Our sequencing of 5 isolates from recent Hendra virus outbreaks in horses found no correlation between sequences and time or geographic location of outbreaks.
Cotton rats and house sparrows as hosts for North and South American strains of eastern equine encephalitis virus.
Emerging infectious diseases    August 26, 2010   Volume 16, Issue 9 1373-1380 doi: 10.3201/eid1609.100459
Arrigo NC, Adams AP, Watts DM, Newman PC, Weaver SC.Eastern equine encephalitis virus (EEEV; family Togaviridae, genus Alphavirus) is an arbovirus that causes severe disease in humans in North America and in equids throughout the Americas. The enzootic transmission cycle of EEEV in North America involves passerine birds and the ornithophilic mosquito vector, Culiseta melanura, in freshwater swamp habitats. However, the ecology of EEEV in South America is not well understood. Culex (Melanoconion) spp. mosquitoes are considered the principal vectors in Central and South America; however, a primary vertebrate host for EEEV in South America has not...
Mycobacterium avium subsp. hominissuis infection in horses.
Emerging infectious diseases    August 4, 2010   Volume 16, Issue 8 1328-1329 doi: 10.3201/eid1608.100097
Kriz P, Jahn P, Bezdekova B, Blahutkova M, Mrlik V, Slana I, Pavlik I.No abstract available
West Nile virus range expansion into British Columbia.
Emerging infectious diseases    August 4, 2010   Volume 16, Issue 8 1251-1258 doi: 10.3201/eid1608.100483
Roth D, Henry B, Mak S, Fraser M, Taylor M, Li M, Cooper K, Furnell A, Wong Q, Morshed M.In 2009, an expansion of West Nile virus (WNV) into the Canadian province of British Columbia was detected. Two locally acquired cases of infection in humans and 3 cases of infection in horses were detected by ELISA and plaque-reduction neutralization tests. Ten positive mosquito pools were detected by reverse transcription PCR. Most WNV activity in British Columbia in 2009 occurred in the hot and dry southern Okanagan Valley. Virus establishment and amplification in this region was likely facilitated by above average nightly temperatures and a rapid accumulation of degree-days in late summer....
Influenza virus transmission from horses to dogs, Australia.
Emerging infectious diseases    March 31, 2010   Volume 16, Issue 4 699-702 doi: 10.3201/eid1604.091489
Kirkland PD, Finlaison DS, Crispe E, Hurt AC.During the 2007 equine influenza outbreak in Australia, respiratory disease in dogs in close contact with infected horses was noted; influenza (H3N8) virus infection was confirmed. Nucleotide sequence of the virus from dogs was identical to that from horses. No evidence of dog-to-dog transmission or virus persistence in dogs was found.
Transmission of West Nile virus during horse autopsy.
Emerging infectious diseases    March 6, 2010   Volume 16, Issue 3 573-575 doi: 10.3201/eid1603.091042
Venter M, Steyl J, Human S, Weyer J, Zaayman D, Blumberg L, Leman PA, Paweska J, Swanepoel R.No abstract available
Hendra virus outbreak with novel clinical features, Australia.
Emerging infectious diseases    February 2, 2010   Volume 16, Issue 2 338-340 doi: 10.3201/eid1602.090780
Field H, Schaaf K, Kung N, Simon C, Waltisbuhl D, Hobert H, Moore F, Middleton D, Crook A, Smith G, Daniels P, Glanville R, Lovell D.To determine the epidemiologic and clinical features of a 2008 outbreak of Hendra virus infection in a veterinary clinic in Australia, we investigated the equine case-series. Four of 5 infected horses died, as did 1 of 2 infected staff members. Clinical manifestation in horses was predominantly neurologic. Preclinical transmission appears likely.
Molecular epidemiology of glanders, Pakistan.
Emerging infectious diseases    December 8, 2009   Volume 15, Issue 12 2036-2039 doi: 10.3201/eid1512.090738
Hornstra H, Pearson T, Georgia S, Liguori A, Dale J, Price E, O'Neill M, Deshazer D, Muhammad G, Saqib M, Naureen A, Keim P.We collected epidemiologic and molecular data from Burkholderia mallei isolates from equines in Punjab, Pakistan from 1999 through 2007. We show that recent outbreaks are genetically distinct from available whole genome sequences and that these genotypes are persistent and ubiquitous in Punjab, probably due to human-mediated movement of equines.
Lineage 2 west nile virus as cause of fatal neurologic disease in horses, South Africa.
Emerging infectious diseases    June 16, 2009   Volume 15, Issue 6 877-884 doi: 10.3201/eid1506.081515
Venter M, Human S, Zaayman D, Gerdes GH, Williams J, Steyl J, Leman PA, Paweska JT, Setzkorn H, Rous G, Murray S, Parker R, Donnellan C, Swanepoel R.Serologic evidence suggests that West Nile virus (WNV) is widely distributed in horses in southern Africa. However, because few neurologic cases have been reported, endemic lineage 2 strains were postulated to be nonpathogenic in horses. Recent evidence suggests that highly neuroinvasive lineage 2 strains exist in humans and mice. To determine whether neurologic cases are being missed in South Africa, we tested 80 serum or brain specimens from horses with unexplained fever (n = 48) and/or neurologic signs (n = 32) for WNV. From March 2007 through June 2008, using reverse transcription-PCR (RT-...