Bergmann, H.; Czaja, E.-M.; Frick, A.; Klaaß, U.; Marquart, R.; Rudovsky, A.; Holland, D.; Wysocki, P.; Lehnau, D.; Schröder, R.;
et al. Remote Sensing Provides a Rapid Epidemiological Context for the Control of African Swine Fever in Germany. Sensors 2023, 23, 8202.
https://doi.org/10.3390/s23198202
AMA Style
Bergmann H, Czaja E-M, Frick A, Klaaß U, Marquart R, Rudovsky A, Holland D, Wysocki P, Lehnau D, Schröder R,
et al. Remote Sensing Provides a Rapid Epidemiological Context for the Control of African Swine Fever in Germany. Sensors. 2023; 23(19):8202.
https://doi.org/10.3390/s23198202
Chicago/Turabian Style
Bergmann, Hannes, Eva-Maria Czaja, Annett Frick, Ulf Klaaß, Ronny Marquart, Annett Rudovsky, Diana Holland, Patrick Wysocki, Daike Lehnau, Ronald Schröder,
and et al. 2023. "Remote Sensing Provides a Rapid Epidemiological Context for the Control of African Swine Fever in Germany" Sensors 23, no. 19: 8202.
https://doi.org/10.3390/s23198202
APA Style
Bergmann, H., Czaja, E.-M., Frick, A., Klaaß, U., Marquart, R., Rudovsky, A., Holland, D., Wysocki, P., Lehnau, D., Schröder, R., Rogoll, L., Sauter-Louis, C., & Homeier-Bachmann, T.
(2023). Remote Sensing Provides a Rapid Epidemiological Context for the Control of African Swine Fever in Germany. Sensors, 23(19), 8202.
https://doi.org/10.3390/s23198202