Pereira, F.M.; Bernacka-Wojcik, I.; Ribeiro, R.S.R.; Lobato, M.T.; Fortunato, E.; Martins, R.; Igreja, R.; Jorge, P.A.S.; Águas, H.; Oliva, A.M.G.
Hybrid Microfluidic Platform for Multifactorial Analysis Based on Electrical Impedance, Refractometry, Optical Absorption and Fluorescence. Micromachines 2016, 7, 181.
https://doi.org/10.3390/mi7100181
AMA Style
Pereira FM, Bernacka-Wojcik I, Ribeiro RSR, Lobato MT, Fortunato E, Martins R, Igreja R, Jorge PAS, Águas H, Oliva AMG.
Hybrid Microfluidic Platform for Multifactorial Analysis Based on Electrical Impedance, Refractometry, Optical Absorption and Fluorescence. Micromachines. 2016; 7(10):181.
https://doi.org/10.3390/mi7100181
Chicago/Turabian Style
Pereira, Fábio M., Iwona Bernacka-Wojcik, Rita S. Rodrigues Ribeiro, Maria Teresa Lobato, Elvira Fortunato, Rodrigo Martins, Rui Igreja, Pedro A. S. Jorge, Hugo Águas, and Abel Martin Gonzalez Oliva.
2016. "Hybrid Microfluidic Platform for Multifactorial Analysis Based on Electrical Impedance, Refractometry, Optical Absorption and Fluorescence" Micromachines 7, no. 10: 181.
https://doi.org/10.3390/mi7100181
APA Style
Pereira, F. M., Bernacka-Wojcik, I., Ribeiro, R. S. R., Lobato, M. T., Fortunato, E., Martins, R., Igreja, R., Jorge, P. A. S., Águas, H., & Oliva, A. M. G.
(2016). Hybrid Microfluidic Platform for Multifactorial Analysis Based on Electrical Impedance, Refractometry, Optical Absorption and Fluorescence. Micromachines, 7(10), 181.
https://doi.org/10.3390/mi7100181