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Christopher L Netherton

Showing results (11-20 of 50) with videos related to

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Virus Research|November 13, 2012
African swine fever virus replication and genomicsLinda K Dixon, David A G Chapman, Christopher L Netherton, et al.
Pathogens (Basel, Switzerland)|February 26, 2022
Adaptive Cellular Immunity against African Swine Fever Virus InfectionsAlexander Schäfer, Giulia Franzoni, Christopher L Netherton, et al.
The Journal of General Virology|August 18, 2021
Autophagy impairment by African swine fever virusGareth L Shimmon, Joshua Y K Hui, Thomas E Wileman, et al.
Sub-Cellular Biochemistry|December 30, 2023
African Swine Fever Virus Host-Pathogen InteractionsChristopher L Netherton, Gareth L Shimmon, Joshua Y K Hui, et al.
Microbiology Resource Announcements|March 25, 2024
African swine fever virus NAM P1/95 is a mixture of genotype I and genotype VIII virusesLynnette C Goatley, Graham L Freimanis, Chandana Tennakoon, et al.
Scientific Reports|March 12, 2024
The transcriptomic insight into the differential susceptibility of African Swine Fever in inbred pigsMohammad Hossein Banabazi, Graham Freimanis, Lynnette C Goatley, et al.
Pathogens (Basel, Switzerland)|August 25, 2023
The Effect of Temperature on the Stability of African Swine Fever Virus BA71V Isolate in Environmental Water SamplesEleni-Anna Loundras, Christopher L Netherton, John Flannery, et al.
Veterinary Research|September 27, 2014
Dynamics of African swine fever virus shedding and excretion in domestic pigs infected by intramuscular inoculation and contact transmissionClaire Guinat, Ana Luisa Reis, Christopher L Netherton, et al.
Virology|April 5, 2016
Sensitivity of African swine fever virus to type I interferon is linked to genes within multigene families 360 and 505Josephine P Golding, Lynnette Goatley, Steve Goodbourn, et al.
Frontiers in Veterinary Science|June 13, 2024
Investigation of activation-induced markers (AIM) in porcine T cells by flow cytometryMadison Moorton, Priscilla Y L Tng, Ryo Inoue, et al.
Pageof 5

Showing results (11-20 of 50) with videos related to

Sort By:
Pageof 5
Virus Research|November 13, 2012
African swine fever virus replication and genomicsLinda K Dixon, David A G Chapman, Christopher L Netherton, et al.
Pathogens (Basel, Switzerland)|February 26, 2022
Adaptive Cellular Immunity against African Swine Fever Virus InfectionsAlexander Schäfer, Giulia Franzoni, Christopher L Netherton, et al.
The Journal of General Virology|August 18, 2021
Autophagy impairment by African swine fever virusGareth L Shimmon, Joshua Y K Hui, Thomas E Wileman, et al.
Sub-Cellular Biochemistry|December 30, 2023
African Swine Fever Virus Host-Pathogen InteractionsChristopher L Netherton, Gareth L Shimmon, Joshua Y K Hui, et al.
Microbiology Resource Announcements|March 25, 2024
African swine fever virus NAM P1/95 is a mixture of genotype I and genotype VIII virusesLynnette C Goatley, Graham L Freimanis, Chandana Tennakoon, et al.
Scientific Reports|March 12, 2024
The transcriptomic insight into the differential susceptibility of African Swine Fever in inbred pigsMohammad Hossein Banabazi, Graham Freimanis, Lynnette C Goatley, et al.
Pathogens (Basel, Switzerland)|August 25, 2023
The Effect of Temperature on the Stability of African Swine Fever Virus BA71V Isolate in Environmental Water SamplesEleni-Anna Loundras, Christopher L Netherton, John Flannery, et al.
Veterinary Research|September 27, 2014
Dynamics of African swine fever virus shedding and excretion in domestic pigs infected by intramuscular inoculation and contact transmissionClaire Guinat, Ana Luisa Reis, Christopher L Netherton, et al.
Virology|April 5, 2016
Sensitivity of African swine fever virus to type I interferon is linked to genes within multigene families 360 and 505Josephine P Golding, Lynnette Goatley, Steve Goodbourn, et al.
Frontiers in Veterinary Science|June 13, 2024
Investigation of activation-induced markers (AIM) in porcine T cells by flow cytometryMadison Moorton, Priscilla Y L Tng, Ryo Inoue, et al.
Pageof 5