Journal of General Virology · 2015 · 40 citations · 26 references
BiologyVector-borne PathogenVirus SurvivalHendra Virus SurvivalEmergent VirusVirologyDirect Transmission RoutesHendra VirusDisease EcologyDisease TransmissionInterspecies TransmissionSpillover PatternsVirus TransmissionWildlife BiologyAnimal VirusWeibull Distribution
Hendra virus (HeV) is lethal to humans and horses, and little is known about its epidemiology. Biosecurity restrictions impede advances, particularly on understanding pathways of transmission. Quantifying the environmental survival of HeV can be used for making decisions and to infer transmission pathways. We estimated HeV survival with a Weibull distribution and calculated parameters from data generated in laboratory experiments. HeV survival rates based on air temperatures 24 h after excretion ranged from 2 to 10 % in summer and from 12 to 33 % in winter. Simulated survival across the distribution of the black flying fox (Pteropus alecto), a key reservoir host, did not predict spillover events. Based on our analyses we concluded that the most likely pathways of transmission did not require long periods of virus survival and were likely to involve relatively direct contact with flying fox excreta shortly after excretion.
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Microclimate in Forest Ecosystem and Landscape Ecology
Jiquan Chen, Sari C. Saunders, Thomas R. Crow et al. · BioScience · 1999 · 942 citations
A Morbillivirus that Caused Fatal Fisease in Horses and Humans
Keith E. Murray, Paul Selleck, Peter Hooper et al. · Science · 1995 · 751 citations
Fatal Respiratory Disease, Viral Pathogenesis, Immunology +16
Isolation of Hendra virus from pteropid bats: a natural reservoir of Hendra virus
Kim Halpin, P. L. Young, Hume Field et al. · Journal of General Virology · 2000 · 670 citations
Immunology, Pathology, Pteropid Bats +16