Murray Valley encephalitis virus
Live Chimeric and Inactivated Japanese Encephalitis Virus Vaccines Differ in Their Cross-Protective Values against Murray Valley Encephalitis Virus
10
Attenuation of Murray Valley Encephalitis Virus by Site-Directed Mutagenesis of the Hinge and Putative Receptor-Binding Regions of the Envelope Protein
11
Mechanism of Virulence Attenuation of Glycosaminoglycan-Binding Variants of Japanese Encephalitis Virus and Murray Valley Encephalitis Virus
11
T-helper cell and associated antibody response to synthetic peptides of the E glycoprotein of Murray Valley encephalitis virus.
8
Characterization of Defective Viral RNA Produced during Persistent Infection of Vero Cells with Murray Valley Encephalitis Virus
9
Location of antigenic determinants and expression of the envelope glycoprotein of Murray Valley encephalitis virus
225
Proteolytic cleavage analysis at the Murray Valley encephalitis virus NS1 2A junction
11
A synthetic peptide to the E glycoprotein of Murray Valley encephalitis virus defines multiple virus-reactive T- and B-cell epitopes.
8
A Bayesian Belief Network for Murray Valley encephalitis virus risk assessment in Western Australia
19
Role of antibodies and host cells in plaque enhancement of Murray Valley encephalitis virus.
11
Rainfall and sentinel chicken seroconversions predict human cases of Murray Valley encephalitis in the north of Western Australia
13
Theoretical study of the Usutu virus helicase 3D structure, by means of computer-aided homology modelling
9
Population health aspects of mosquito-borne disease in New South Wales
7
The Severity of Murray Valley Encephalitis in Mice Is Linked to Neutrophil Infiltration and Inducible Nitric Oxide Synthase Activity in the Central Nervous System
10
The insect specific Palm Creek virus modulates West Nile virus infection in and transmission by Australian mosquitoes
10
Searching for the proverbial needle in a haystack: advances in mosquito-borne arbovirus surveillance
12
The immunobiology of Japanese encephalitis virus
344
Eastern equine encephalitis virus in mice I: clinical course and outcome are dependent on route of exposure
14
Aerosolized Rift Valley Fever Virus Causes Fatal Encephalitis in African Green Monkeys and Common Marmosets
11
Field captured Aedes vexans (Meigen, 1830) is a competent vector for Rift Valley fever phlebovirus in Europe
8