Nasr, B.; Chatterton, R.; Yong, J.H.M.; Jamshidi, P.; D’Abaco, G.M.; Bjorksten, A.R.; Kavehei, O.; Chana, G.; Dottori, M.; Skafidas, E.
Self-Organized Nanostructure Modified Microelectrode for Sensitive Electrochemical Glutamate Detection in Stem Cells-Derived Brain Organoids. Biosensors 2018, 8, 14.
https://doi.org/10.3390/bios8010014
AMA Style
Nasr B, Chatterton R, Yong JHM, Jamshidi P, D’Abaco GM, Bjorksten AR, Kavehei O, Chana G, Dottori M, Skafidas E.
Self-Organized Nanostructure Modified Microelectrode for Sensitive Electrochemical Glutamate Detection in Stem Cells-Derived Brain Organoids. Biosensors. 2018; 8(1):14.
https://doi.org/10.3390/bios8010014
Chicago/Turabian Style
Nasr, Babak, Rachael Chatterton, Jason Hsien Ming Yong, Pegah Jamshidi, Giovanna Marisa D’Abaco, Andrew Robin Bjorksten, Omid Kavehei, Gursharan Chana, Mirella Dottori, and Efstratios Skafidas.
2018. "Self-Organized Nanostructure Modified Microelectrode for Sensitive Electrochemical Glutamate Detection in Stem Cells-Derived Brain Organoids" Biosensors 8, no. 1: 14.
https://doi.org/10.3390/bios8010014
APA Style
Nasr, B., Chatterton, R., Yong, J. H. M., Jamshidi, P., D’Abaco, G. M., Bjorksten, A. R., Kavehei, O., Chana, G., Dottori, M., & Skafidas, E.
(2018). Self-Organized Nanostructure Modified Microelectrode for Sensitive Electrochemical Glutamate Detection in Stem Cells-Derived Brain Organoids. Biosensors, 8(1), 14.
https://doi.org/10.3390/bios8010014