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M A Hofmann

Showing results (31-40 of 62) with videos related to

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The Journal of General Virology|January 8, 1999
Porcine cells persistently infected with classical swine fever virus protected from pestivirus-induced cytopathic effectC Mittelholzer, C Moser, J D Tratschin, et al.
Journal of Virological Methods|May 1, 1997
An indirect ELISA for the detection of antibodies against porcine reproductive and respiratory syndrome virus using recombinant nucleocapsid protein as antigenH Denac, C Moser, J D Tratschin, et al.
Journal of Virology|August 10, 1999
Cytopathogenic and noncytopathogenic RNA replicons of classical swine fever virusC Moser, P Stettler, J D Tratschin, et al.
Schweizer Archiv Fur Tierheilkunde|January 1, 1995
[Diagnosis of contagious diseases in animals using PCR]M A Hofmann, J D Tratschin, K Brechtbühl, et al.
Archives of Virology|October 29, 1999
Classical swine fever virus is genetically stable in vitro and in vivoH Vanderhallen, C Mittelholzer, M A Hofmann, et al.
Virology|September 1, 1993
Leader-mRNA junction sequences are unique for each subgenomic mRNA species in the bovine coronavirus and remain so throughout persistent infectionM A Hofmann, R Y Chang, S Ku, et al.
Journal of Virology|December 1, 1994
A cis-acting function for the coronavirus leader in defective interfering RNA replicationR Y Chang, M A Hofmann, P B Sethna, et al.
Journal of Virology|September 1, 1992
The nucleocapsid protein gene of bovine coronavirus is bicistronicS D Senanayake, M A Hofmann, J L Maki, et al.
Archives of Virology. Supplementum|January 1, 1994
Role of subgenomic minus-strand RNA in coronavirus replicationD A Brian, R Y Chang, M A Hofmann, et al.
Schweizer Archiv Fur Tierheilkunde|May 6, 1999
[Classical swine fever in wild boars in Switzerland]M A Hofmann, B Thür, T Vanzetti, et al.
Pageof 7

Showing results (31-40 of 62) with videos related to

Sort By:
Pageof 7
The Journal of General Virology|January 8, 1999
Porcine cells persistently infected with classical swine fever virus protected from pestivirus-induced cytopathic effectC Mittelholzer, C Moser, J D Tratschin, et al.
Journal of Virological Methods|May 1, 1997
An indirect ELISA for the detection of antibodies against porcine reproductive and respiratory syndrome virus using recombinant nucleocapsid protein as antigenH Denac, C Moser, J D Tratschin, et al.
Journal of Virology|August 10, 1999
Cytopathogenic and noncytopathogenic RNA replicons of classical swine fever virusC Moser, P Stettler, J D Tratschin, et al.
Schweizer Archiv Fur Tierheilkunde|January 1, 1995
[Diagnosis of contagious diseases in animals using PCR]M A Hofmann, J D Tratschin, K Brechtbühl, et al.
Archives of Virology|October 29, 1999
Classical swine fever virus is genetically stable in vitro and in vivoH Vanderhallen, C Mittelholzer, M A Hofmann, et al.
Virology|September 1, 1993
Leader-mRNA junction sequences are unique for each subgenomic mRNA species in the bovine coronavirus and remain so throughout persistent infectionM A Hofmann, R Y Chang, S Ku, et al.
Journal of Virology|December 1, 1994
A cis-acting function for the coronavirus leader in defective interfering RNA replicationR Y Chang, M A Hofmann, P B Sethna, et al.
Journal of Virology|September 1, 1992
The nucleocapsid protein gene of bovine coronavirus is bicistronicS D Senanayake, M A Hofmann, J L Maki, et al.
Archives of Virology. Supplementum|January 1, 1994
Role of subgenomic minus-strand RNA in coronavirus replicationD A Brian, R Y Chang, M A Hofmann, et al.
Schweizer Archiv Fur Tierheilkunde|May 6, 1999
[Classical swine fever in wild boars in Switzerland]M A Hofmann, B Thür, T Vanzetti, et al.
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