APA
Lohan S. B., Ahlberg S., Mensch A., Höppe D., Giulbudagian M., Calderón M., Grether-Beck S., Krutmann J., Lademann J. & Meinke M. C. (20171221). EPR Technology as Sensitive Method for Oxidative Stress Detection in Primary and Secondary Keratinocytes Induced by Two Selected Nanoparticles. : Cell biochemistry and biophysics.
Chicago
Lohan S B, Ahlberg S, Mensch A, Höppe D, Giulbudagian M, Calderón M, Grether-Beck S, Krutmann J, Lademann J and Meinke M C. 20171221. EPR Technology as Sensitive Method for Oxidative Stress Detection in Primary and Secondary Keratinocytes Induced by Two Selected Nanoparticles. : Cell biochemistry and biophysics.
Harvard
Lohan S. B., Ahlberg S., Mensch A., Höppe D., Giulbudagian M., Calderón M., Grether-Beck S., Krutmann J., Lademann J. and Meinke M. C. (20171221). EPR Technology as Sensitive Method for Oxidative Stress Detection in Primary and Secondary Keratinocytes Induced by Two Selected Nanoparticles. : Cell biochemistry and biophysics.
MLA
Lohan S B, Ahlberg S, Mensch A, Höppe D, Giulbudagian M, Calderón M, Grether-Beck S, Krutmann J, Lademann J and Meinke M C. EPR Technology as Sensitive Method for Oxidative Stress Detection in Primary and Secondary Keratinocytes Induced by Two Selected Nanoparticles. : Cell biochemistry and biophysics. 20171221.