Pacifici, F.; Chiereghin, F.; D’Orazio, M.; Malatesta, G.; Infante, M.; Fazio, F.; Bertinato, C.; Donadel, G.; Martinelli, E.; De Lorenzo, A.;
et al. Patch-Based Far-Infrared Radiation (FIR) Therapy Does Not Impact Cell Tracking or Motility of Human Melanoma Cells In Vitro. Curr. Issues Mol. Biol. 2024, 46, 10026-10037.
https://doi.org/10.3390/cimb46090599
AMA Style
Pacifici F, Chiereghin F, D’Orazio M, Malatesta G, Infante M, Fazio F, Bertinato C, Donadel G, Martinelli E, De Lorenzo A,
et al. Patch-Based Far-Infrared Radiation (FIR) Therapy Does Not Impact Cell Tracking or Motility of Human Melanoma Cells In Vitro. Current Issues in Molecular Biology. 2024; 46(9):10026-10037.
https://doi.org/10.3390/cimb46090599
Chicago/Turabian Style
Pacifici, Francesca, Francesca Chiereghin, Michele D’Orazio, Gina Malatesta, Marco Infante, Federica Fazio, Chiara Bertinato, Giulia Donadel, Eugenio Martinelli, Antonino De Lorenzo,
and et al. 2024. "Patch-Based Far-Infrared Radiation (FIR) Therapy Does Not Impact Cell Tracking or Motility of Human Melanoma Cells In Vitro" Current Issues in Molecular Biology 46, no. 9: 10026-10037.
https://doi.org/10.3390/cimb46090599
APA Style
Pacifici, F., Chiereghin, F., D’Orazio, M., Malatesta, G., Infante, M., Fazio, F., Bertinato, C., Donadel, G., Martinelli, E., De Lorenzo, A., Della-Morte, D., & Pastore, D.
(2024). Patch-Based Far-Infrared Radiation (FIR) Therapy Does Not Impact Cell Tracking or Motility of Human Melanoma Cells In Vitro. Current Issues in Molecular Biology, 46(9), 10026-10037.
https://doi.org/10.3390/cimb46090599