1993, Wiener Vorlesungen im Rathaus, ISBN 3854523238, Volume Bd. 24, 66
Book
1993
Conference Proceeding
Lancet Infectious Diseases, The, ISSN 1473-3099, 2013, Volume 13, Issue 10, pp. 859 - 866
Summary Background A new betacoronavirus—Middle East respiratory syndrome coronavirus (MERS-CoV)—has been identified in patients with severe acute respiratory...
Infectious Disease | INFECTIOUS DISEASES | VIRUS | PROTEIN | BOVINE CORONAVIRUS | BAT CORONAVIRUS | SEQUENCE | RISK | INFECTION | Coronavirus - classification | Cattle - blood | Goats - blood | Immunoglobulin G - blood | Humans | Male | Camelus - blood | Camelids, New World - blood | Antibodies, Viral - blood | Coronavirus - immunology | Animals | Female | Sheep - blood | Antibodies, Neutralizing - blood | Viral antibodies | Bats | Medical research | Zoos | Goats | Medicine, Experimental | Antibodies | Reservoirs | Livestock | Comparative analysis | Public health | Zoonoses
Infectious Disease | INFECTIOUS DISEASES | VIRUS | PROTEIN | BOVINE CORONAVIRUS | BAT CORONAVIRUS | SEQUENCE | RISK | INFECTION | Coronavirus - classification | Cattle - blood | Goats - blood | Immunoglobulin G - blood | Humans | Male | Camelus - blood | Camelids, New World - blood | Antibodies, Viral - blood | Coronavirus - immunology | Animals | Female | Sheep - blood | Antibodies, Neutralizing - blood | Viral antibodies | Bats | Medical research | Zoos | Goats | Medicine, Experimental | Antibodies | Reservoirs | Livestock | Comparative analysis | Public health | Zoonoses
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 2013, Volume 19, Issue 2, pp. 274 - 277
Retrospective analysis of archived tissue samples from bird deaths in the Tuscany region of Italy in 1996 identified Usutu virus. Partial sequencing confirmed...
INFECTIOUS DISEASES | WILD | WEST-NILE-VIRUS | INFECTION | IMMUNOLOGY | ESTABLISHMENT | EMERGENCE | BIRDS | SEROLOGICAL EVIDENCE | AUSTRIA | SPAIN | Bird Diseases - virology | Songbirds - virology | Encephalitis Viruses, Japanese - metabolism | Encephalitis, Arbovirus - virology | Flavivirus Infections - epidemiology | Brain - virology | Bird Diseases - epidemiology | Phylogeny | Flavivirus Infections - veterinary | Molecular Typing | Animals | RNA, Viral - genetics | Brain - pathology | Encephalitis, Arbovirus - epidemiology | Flavivirus Infections - virology | Italy - epidemiology | Encephalitis Viruses, Japanese - genetics | Retrospective Studies | RNA, Viral - isolation & purification | Encephalitis, Arbovirus - veterinary | Real-Time Polymerase Chain Reaction | Usage | Nucleotide sequencing | Health aspects | Blackbirds | DNA sequencing | viruses | archived tissue samples | Usutu virus | bird deaths | Europe | Dispatch | Italy | birds | blackbirds | mortality
INFECTIOUS DISEASES | WILD | WEST-NILE-VIRUS | INFECTION | IMMUNOLOGY | ESTABLISHMENT | EMERGENCE | BIRDS | SEROLOGICAL EVIDENCE | AUSTRIA | SPAIN | Bird Diseases - virology | Songbirds - virology | Encephalitis Viruses, Japanese - metabolism | Encephalitis, Arbovirus - virology | Flavivirus Infections - epidemiology | Brain - virology | Bird Diseases - epidemiology | Phylogeny | Flavivirus Infections - veterinary | Molecular Typing | Animals | RNA, Viral - genetics | Brain - pathology | Encephalitis, Arbovirus - epidemiology | Flavivirus Infections - virology | Italy - epidemiology | Encephalitis Viruses, Japanese - genetics | Retrospective Studies | RNA, Viral - isolation & purification | Encephalitis, Arbovirus - veterinary | Real-Time Polymerase Chain Reaction | Usage | Nucleotide sequencing | Health aspects | Blackbirds | DNA sequencing | viruses | archived tissue samples | Usutu virus | bird deaths | Europe | Dispatch | Italy | birds | blackbirds | mortality
Journal Article
Journal of Virological Methods, ISSN 0166-0934, 10/2016, Volume 236, pp. 252 - 257
The development of reverse transcriptase loop-mediated isothermal amplification (RT-LAMP) assays are described herein for the detection of two...
RT-LAMP | Orthobunyavirus | Loop-mediated isothermal amplification | Bunyaviridae | Arbovirus | Mosquito | Orthobunyavirus - classification | Orthobunyavirus - genetics | Animals | RNA, Viral - genetics | Nucleic Acid Amplification Techniques - methods | Time Factors | Cost-Benefit Analysis | Europe | Sensitivity and Specificity | Orthobunyavirus - isolation & purification | Reverse Transcription | Medical colleges | Nucleic acids | Genetic transcription | Encephalitis | Anopheles
RT-LAMP | Orthobunyavirus | Loop-mediated isothermal amplification | Bunyaviridae | Arbovirus | Mosquito | Orthobunyavirus - classification | Orthobunyavirus - genetics | Animals | RNA, Viral - genetics | Nucleic Acid Amplification Techniques - methods | Time Factors | Cost-Benefit Analysis | Europe | Sensitivity and Specificity | Orthobunyavirus - isolation & purification | Reverse Transcription | Medical colleges | Nucleic acids | Genetic transcription | Encephalitis | Anopheles
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 2011, Volume 17, Issue 5, pp. 920 - 922
We conducted a complete genome analysis of a West Nile virus detected in Culex pipiens mosquitoes during a severe outbreak of human West Nile disease in Greece...
INFECTIOUS DISEASES | HUMANS | IMMUNOLOGY | VIRULENCE | CONFERS | AMINO-ACID SUBSTITUTION | SOUTHERN | West Nile Fever - virology | Humans | Molecular Sequence Data | Viral Nonstructural Proteins - genetics | Phylogeny | West Nile virus - classification | West Nile virus - pathogenicity | Greece | Culex - virology | Animals | RNA, Viral - genetics | West Nile virus - genetics | Amino Acid Substitution - genetics | West Nile virus - isolation & purification | Genetic Linkage - genetics | Infection | West Nile fever | Amino acids | Mosquitoes | Genetic aspects | Chemical properties | viruses | lineage 2 | West Nile virus | Dispatch | neuroinvasive | human | flavivirus | mosquito
INFECTIOUS DISEASES | HUMANS | IMMUNOLOGY | VIRULENCE | CONFERS | AMINO-ACID SUBSTITUTION | SOUTHERN | West Nile Fever - virology | Humans | Molecular Sequence Data | Viral Nonstructural Proteins - genetics | Phylogeny | West Nile virus - classification | West Nile virus - pathogenicity | Greece | Culex - virology | Animals | RNA, Viral - genetics | West Nile virus - genetics | Amino Acid Substitution - genetics | West Nile virus - isolation & purification | Genetic Linkage - genetics | Infection | West Nile fever | Amino acids | Mosquitoes | Genetic aspects | Chemical properties | viruses | lineage 2 | West Nile virus | Dispatch | neuroinvasive | human | flavivirus | mosquito
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 2008, Volume 14, Issue 3, pp. 461 - 464
We retrospectively demonstrated that an outbreak of severe respiratory disease in a pack of English foxhounds in the United Kingdom in September 2002 was...
H5N1 | INFECTIOUS DISEASES | IMMUNOLOGY | H3N8 | A VIRUSES | DISEASE | Dog Diseases - transmission | Orthomyxoviridae Infections - veterinary | Influenza A Virus, H3N8 Subtype | Male | United Kingdom | Horse Diseases - virology | Pneumonia, Viral - transmission | Horse Diseases - transmission | Animals | Orthomyxoviridae Infections - transmission | Disease Outbreaks | Dogs | Pneumonia, Viral - veterinary | Horses | Female | Retrospective Studies | Orthomyxoviridae Infections - virology | Pneumonia, Viral - virology | Dog Diseases - virology | Influenza viruses | Control | Distribution | Causes of | Respiratory tract diseases | Research | Health aspects | dogs | Dispatch | Interspecies transmission | equine influenza A H3N8 virus | dispatch
H5N1 | INFECTIOUS DISEASES | IMMUNOLOGY | H3N8 | A VIRUSES | DISEASE | Dog Diseases - transmission | Orthomyxoviridae Infections - veterinary | Influenza A Virus, H3N8 Subtype | Male | United Kingdom | Horse Diseases - virology | Pneumonia, Viral - transmission | Horse Diseases - transmission | Animals | Orthomyxoviridae Infections - transmission | Disease Outbreaks | Dogs | Pneumonia, Viral - veterinary | Horses | Female | Retrospective Studies | Orthomyxoviridae Infections - virology | Pneumonia, Viral - virology | Dog Diseases - virology | Influenza viruses | Control | Distribution | Causes of | Respiratory tract diseases | Research | Health aspects | dogs | Dispatch | Interspecies transmission | equine influenza A H3N8 virus | dispatch
Journal Article
Diabetes care, ISSN 0149-5992, 04/2015, Volume 38, Issue 4, pp. 551 - 560
OBJECTIVESubclinical depression is one of the most frequent mental comorbidities in patients with diabetes and is associated with a poorer long-term prognosis....
SELF-CARE | DISTRESS | INFLAMMATION | ENDOCRINOLOGY & METABOLISM | ADULTS | PEOPLE | ACCEPTANCE | SYMPTOMS | PREVALENCE | ASSOCIATION | Diabetes Mellitus, Type 2 - psychology | Cognitive Therapy - methods | Comorbidity | Humans | Middle Aged | Depressive Disorder, Major - therapy | Depressive Disorder, Major - complications | Male | Treatment Outcome | Asymptomatic Diseases | Depressive Disorder, Major - epidemiology | Diabetes Mellitus, Type 2 - epidemiology | Motivation - physiology | Diabetes Mellitus, Type 2 - therapy | Adult | Female | Self Care | Diabetes Mellitus, Type 2 - complications | Complications and side effects | Cognitive therapy | Usage | Care and treatment | Depression, Mental | Diabetes | Health aspects | Risk factors | Self-management (Psychology)
SELF-CARE | DISTRESS | INFLAMMATION | ENDOCRINOLOGY & METABOLISM | ADULTS | PEOPLE | ACCEPTANCE | SYMPTOMS | PREVALENCE | ASSOCIATION | Diabetes Mellitus, Type 2 - psychology | Cognitive Therapy - methods | Comorbidity | Humans | Middle Aged | Depressive Disorder, Major - therapy | Depressive Disorder, Major - complications | Male | Treatment Outcome | Asymptomatic Diseases | Depressive Disorder, Major - epidemiology | Diabetes Mellitus, Type 2 - epidemiology | Motivation - physiology | Diabetes Mellitus, Type 2 - therapy | Adult | Female | Self Care | Diabetes Mellitus, Type 2 - complications | Complications and side effects | Cognitive therapy | Usage | Care and treatment | Depression, Mental | Diabetes | Health aspects | Risk factors | Self-management (Psychology)
Journal Article
9.
Full Text
Putative new west nile virus lineage in Uranotaenia unguiculata mosquitoes, Austria, 2013
Emerging Infectious Diseases, ISSN 1080-6040, 12/2014, Volume 20, Issue 12, pp. 2119 - 2122
West Nile virus (WNV) is becoming more widespread and markedly effecting public health. We sequenced the complete polyprotein gene of a divergent WNV strain...
INFECTIOUS DISEASES | PROTEIN | NEUROINVASIVENESS | GENE | DIPTERA-CULICIDAE | FLAVIVIRUSES | GLYCOSYLATION | IMMUNOLOGY | NS1 | Culicidae - virology | Austria | Animals | West Nile Fever - transmission | RNA, Viral | Genes, Viral | Molecular Sequence Data | Female | Phylogeny | West Nile virus - classification | West Nile fever | Mosquitoes | Health aspects | Analysis | Uranotaenia unguiculata | mosquitoes | Putative New West Nile Virus Lineage in | viruses | Dispatch | lineage 9 | Mosquitoes, Austria, 2013 | phylogenetic analysis | West Nile virus | lineage 4 | WNV | flavivirus
INFECTIOUS DISEASES | PROTEIN | NEUROINVASIVENESS | GENE | DIPTERA-CULICIDAE | FLAVIVIRUSES | GLYCOSYLATION | IMMUNOLOGY | NS1 | Culicidae - virology | Austria | Animals | West Nile Fever - transmission | RNA, Viral | Genes, Viral | Molecular Sequence Data | Female | Phylogeny | West Nile virus - classification | West Nile fever | Mosquitoes | Health aspects | Analysis | Uranotaenia unguiculata | mosquitoes | Putative New West Nile Virus Lineage in | viruses | Dispatch | lineage 9 | Mosquitoes, Austria, 2013 | phylogenetic analysis | West Nile virus | lineage 4 | WNV | flavivirus
Journal Article
Archives of Virology, ISSN 0304-8608, 2016, Volume 161, Issue 8, pp. 2351 - 2360
In 2016, the order Mononegavirales was emended through the addition of two new families (Mymonaviridae and Sunviridae), the elevation of the paramyxoviral...
Resource Ecology | Bioint Entomology & Disease Management | Leerstoelgroep Resource Ecology | PRI Bioint Entomology & Disease Management | Medical Microbiology | Infectious Diseases | Biomedicine | Virology | INTERNATIONAL COMMITTEE | FELINE MORBILLIVIRUS | PROPOSALS | COMPLETE GENOME SEQUENCE | VIRUS | VIROLOGY | RATIFICATION VOTE | DOMESTIC CATS | IDENTIFICATION | PARROT BORNAVIRUS 5 | AVIAN PARAMYXOVIRUS | Genome, Viral | Mononegavirales - genetics | Phylogeny | Mononegavirales - classification | 60 APPLIED LIFE SCIENCES | Nyamiviridae | Crustavirus | Mymonaviridae | International Committee on Taxonomy of Viruses | Sunviridae | mononegavirus | Arlivirus | virus taxonomy | mononegavirad | Bornaviridae | Paramyxoviridae | Mononegavirales | Filoviridae | Pneumoviridae | Rhabdoviridae | virus nomenclature | virus classification | Chengtivirus | ICTV | Anphevirus
Resource Ecology | Bioint Entomology & Disease Management | Leerstoelgroep Resource Ecology | PRI Bioint Entomology & Disease Management | Medical Microbiology | Infectious Diseases | Biomedicine | Virology | INTERNATIONAL COMMITTEE | FELINE MORBILLIVIRUS | PROPOSALS | COMPLETE GENOME SEQUENCE | VIRUS | VIROLOGY | RATIFICATION VOTE | DOMESTIC CATS | IDENTIFICATION | PARROT BORNAVIRUS 5 | AVIAN PARAMYXOVIRUS | Genome, Viral | Mononegavirales - genetics | Phylogeny | Mononegavirales - classification | 60 APPLIED LIFE SCIENCES | Nyamiviridae | Crustavirus | Mymonaviridae | International Committee on Taxonomy of Viruses | Sunviridae | mononegavirus | Arlivirus | virus taxonomy | mononegavirad | Bornaviridae | Paramyxoviridae | Mononegavirales | Filoviridae | Pneumoviridae | Rhabdoviridae | virus nomenclature | virus classification | Chengtivirus | ICTV | Anphevirus
Journal Article
Parasites and Vectors, ISSN 1756-3305, 01/2019, Volume 12, Issue 1, pp. 46 - 5
Background: The emergence of Usutu virus (USUV) in Europe was first reported in Austria, 2001, and the virus has since spread to many European countries....
Culex pipiens | Flavivirus | Vector competence | Invasive mosquito | Aedes japonicus japonicus | DIPTERA | WEST-NILE-VIRUS | EMERGENCE | TROPICAL MEDICINE | AUSTRIA | AEDES-JAPONICUS-JAPONICUS | HOST-FEEDING PATTERNS | CULEX-PIPIENS | INTRODUCED MOSQUITO | 1ST RECORD | PARASITOLOGY | Virus diseases | Birds | Mosquitoes | Health aspects | RNA | Blood & organ donations | Transmission | Viruses | Outbreaks | Infections | Vectors | Nucleic acids | Pools | Ribonucleic acid--RNA | Aquatic insects | Vectors (Biology) | Zoonoses | Invasive species | Surveillance | West Nile virus | Fatalities | Indigenous species | Species
Culex pipiens | Flavivirus | Vector competence | Invasive mosquito | Aedes japonicus japonicus | DIPTERA | WEST-NILE-VIRUS | EMERGENCE | TROPICAL MEDICINE | AUSTRIA | AEDES-JAPONICUS-JAPONICUS | HOST-FEEDING PATTERNS | CULEX-PIPIENS | INTRODUCED MOSQUITO | 1ST RECORD | PARASITOLOGY | Virus diseases | Birds | Mosquitoes | Health aspects | RNA | Blood & organ donations | Transmission | Viruses | Outbreaks | Infections | Vectors | Nucleic acids | Pools | Ribonucleic acid--RNA | Aquatic insects | Vectors (Biology) | Zoonoses | Invasive species | Surveillance | West Nile virus | Fatalities | Indigenous species | Species
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 2015, Volume 21, Issue 2, pp. 352 - 355
We sequenced West Nile viruses (WNVs) from Turkey and found close relationships to WNV lineage 1 strain ArB310/67 from the Central African Republic, distinct...
UNITED-STATES | SURVEILLANCE | INFECTIOUS DISEASES | IMMUNOLOGY | CIRCULATION | MOSQUITOS | Genome, Viral | Molecular Sequence Data | Phylogeny | Horse Diseases - virology | Sequence Analysis, DNA | West Nile virus - classification | Horse Diseases - epidemiology | Animals | West Nile virus - genetics | Turkey - epidemiology | RNA, Viral | Horses | West Nile Fever - veterinary | Central African Republic - epidemiology | West Nile virus | Genotype | Genetic aspects | Nucleotide sequencing | Identification and classification | Methods | DNA sequencing | viruses | Suggested citation for this article: Ergunay K | sequence identity | Dispatch | eid2102.141135 | dx.doi.org | strains | Bakonyi T | Ozkul A. Close relationship between West Nile virus from Turkey and lineage 1 strain from Central African Republic. Emerg Infect Dis [Internet]. 2015 Feb [date cited]. http | Turkey | lineage 1 | 10.3201 | Nowotny N | Close Relationship between West Nile Virus from Turkey and Lineage 1 Strain from Central African Republic | Central African Republic | complete genome | WNV | flavivirus
UNITED-STATES | SURVEILLANCE | INFECTIOUS DISEASES | IMMUNOLOGY | CIRCULATION | MOSQUITOS | Genome, Viral | Molecular Sequence Data | Phylogeny | Horse Diseases - virology | Sequence Analysis, DNA | West Nile virus - classification | Horse Diseases - epidemiology | Animals | West Nile virus - genetics | Turkey - epidemiology | RNA, Viral | Horses | West Nile Fever - veterinary | Central African Republic - epidemiology | West Nile virus | Genotype | Genetic aspects | Nucleotide sequencing | Identification and classification | Methods | DNA sequencing | viruses | Suggested citation for this article: Ergunay K | sequence identity | Dispatch | eid2102.141135 | dx.doi.org | strains | Bakonyi T | Ozkul A. Close relationship between West Nile virus from Turkey and lineage 1 strain from Central African Republic. Emerg Infect Dis [Internet]. 2015 Feb [date cited]. http | Turkey | lineage 1 | 10.3201 | Nowotny N | Close Relationship between West Nile Virus from Turkey and Lineage 1 Strain from Central African Republic | Central African Republic | complete genome | WNV | flavivirus
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2014, Volume 9, Issue 4, p. e93659
Borna disease (BD) is a sporadic neurologic disease of horses and sheep caused by mammalian Borna disease virus (BDV). Its unique epidemiological features...
ANTIBODIES | SYSTEM | ORGANIZATION | TRANSMISSION | RESERVOIR | CONSERVATION | RUSSULA | MULTIDISCIPLINARY SCIENCES | RATS | INFECTION | BIRDS | Animals | Borna disease virus - isolation & purification | Base Sequence | Polymerase Chain Reaction | Molecular Sequence Data | Shrews - virology | Disease Vectors | Phylogeny | DNA Primers | Borna disease virus - classification | Disease | Mesenchyme | Epithelial cells | Viruses | Nervous system | Infections | Tissues | Veterinary medicine | Epidemiology | Gene sequencing | Seasonal variations | Borna disease | Species | Immunoglobulins | Keratinocytes | Birds | Mammals | Disease control | Vectors (Biology) | Zoonoses | Virology | Oral cavity | Annual variations | Horses | Sheep | Skin
ANTIBODIES | SYSTEM | ORGANIZATION | TRANSMISSION | RESERVOIR | CONSERVATION | RUSSULA | MULTIDISCIPLINARY SCIENCES | RATS | INFECTION | BIRDS | Animals | Borna disease virus - isolation & purification | Base Sequence | Polymerase Chain Reaction | Molecular Sequence Data | Shrews - virology | Disease Vectors | Phylogeny | DNA Primers | Borna disease virus - classification | Disease | Mesenchyme | Epithelial cells | Viruses | Nervous system | Infections | Tissues | Veterinary medicine | Epidemiology | Gene sequencing | Seasonal variations | Borna disease | Species | Immunoglobulins | Keratinocytes | Birds | Mammals | Disease control | Vectors (Biology) | Zoonoses | Virology | Oral cavity | Annual variations | Horses | Sheep | Skin
Journal Article
Emerging Infectious Diseases, ISSN 1080-6040, 2006, Volume 12, Issue 4, pp. 618 - 623
Two different West Nile virus (WNV) strains caused lethal encephalitis in a flock of geese and a goshawk in southeastern Hungary in 2003 and 2004,...
UNITED-STATES | INFECTIOUS DISEASES | FLAVIVIRUS | INFECTION | HORSES | IMMUNOLOGY | USUTU-VIRUS | OUTBREAK | WORLD | MIDDLE-EAST | NORTH-AMERICA | AUSTRIA | Bird Diseases - virology | West Nile Fever - virology | Humans | Hungary - epidemiology | Birds - virology | Bird Diseases - epidemiology | Phylogeny | West Nile virus - classification | West Nile Fever - epidemiology | Animals | West Nile virus - genetics | Disease Outbreaks - veterinary | West Nile virus - isolation & purification | Reports | Viruses | Research | Virus research | Encephalitis | West Nile virus | goose | emerging infection | West Nile Fever | Japanese encephalitis virus serogroup | goshawk | Arbovirus
UNITED-STATES | INFECTIOUS DISEASES | FLAVIVIRUS | INFECTION | HORSES | IMMUNOLOGY | USUTU-VIRUS | OUTBREAK | WORLD | MIDDLE-EAST | NORTH-AMERICA | AUSTRIA | Bird Diseases - virology | West Nile Fever - virology | Humans | Hungary - epidemiology | Birds - virology | Bird Diseases - epidemiology | Phylogeny | West Nile virus - classification | West Nile Fever - epidemiology | Animals | West Nile virus - genetics | Disease Outbreaks - veterinary | West Nile virus - isolation & purification | Reports | Viruses | Research | Virus research | Encephalitis | West Nile virus | goose | emerging infection | West Nile Fever | Japanese encephalitis virus serogroup | goshawk | Arbovirus
Journal Article
Archives of Virology, ISSN 0304-8608, 8/2017, Volume 162, Issue 8, pp. 2493 - 2504
In 2017, the order Mononegavirales was expanded by the inclusion of a total of 69 novel species. Five new rhabdovirus genera and one new nyamivirus genus were...
Medical Microbiology | Infectious Diseases | Biomedicine | Virology | AUSTRALIA | GENOME SEQUENCE | VESICULOVIRUS | VIROLOGY | PARAMYXOVIRUSES | BAT EIDOLON-HELVUM | GENUS | RHABDOVIRUSES | TROPICAL REGIONS | VIRUSES 2 | FRUIT BATS | Genome, Viral | Mononegavirales - genetics | Phylogeny | Species Specificity | Gene Order | Mononegavirales - classification | Taxonomy | New species | Genera | Nyamiviridae | Crustavirus | Mymonaviridae | International Committee on Taxonomy of Viruses | Sunviridae | mononegavirus | Arlivirus | virus taxonomy | mononegavirad | Bornaviridae | Paramyxoviridae | Mononegavirales | Filoviridae | Pneumoviridae | Rhabdoviridae | virus nomenclature | virus classification | Chengtivirus | ICTV | Anphevirus
Medical Microbiology | Infectious Diseases | Biomedicine | Virology | AUSTRALIA | GENOME SEQUENCE | VESICULOVIRUS | VIROLOGY | PARAMYXOVIRUSES | BAT EIDOLON-HELVUM | GENUS | RHABDOVIRUSES | TROPICAL REGIONS | VIRUSES 2 | FRUIT BATS | Genome, Viral | Mononegavirales - genetics | Phylogeny | Species Specificity | Gene Order | Mononegavirales - classification | Taxonomy | New species | Genera | Nyamiviridae | Crustavirus | Mymonaviridae | International Committee on Taxonomy of Viruses | Sunviridae | mononegavirus | Arlivirus | virus taxonomy | mononegavirad | Bornaviridae | Paramyxoviridae | Mononegavirales | Filoviridae | Pneumoviridae | Rhabdoviridae | virus nomenclature | virus classification | Chengtivirus | ICTV | Anphevirus
Journal Article