Tateishi, A.; Coleman, S.K.; Migita, S.; Keinänen, K.; Haruyama, T.
Post-Synapse Model Cell for Synaptic Glutamate Receptor (GluR)-Based Biosensing: Strategy and Engineering to Maximize Ligand-Gated Ion-Flux Achieving High Signal-to-Noise Ratio. Sensors 2012, 12, 1035-1041.
https://doi.org/10.3390/s120101035
AMA Style
Tateishi A, Coleman SK, Migita S, Keinänen K, Haruyama T.
Post-Synapse Model Cell for Synaptic Glutamate Receptor (GluR)-Based Biosensing: Strategy and Engineering to Maximize Ligand-Gated Ion-Flux Achieving High Signal-to-Noise Ratio. Sensors. 2012; 12(1):1035-1041.
https://doi.org/10.3390/s120101035
Chicago/Turabian Style
Tateishi, Akito, Sarah K. Coleman, Satoshi Migita, Kari Keinänen, and Tetsuya Haruyama.
2012. "Post-Synapse Model Cell for Synaptic Glutamate Receptor (GluR)-Based Biosensing: Strategy and Engineering to Maximize Ligand-Gated Ion-Flux Achieving High Signal-to-Noise Ratio" Sensors 12, no. 1: 1035-1041.
https://doi.org/10.3390/s120101035
APA Style
Tateishi, A., Coleman, S. K., Migita, S., Keinänen, K., & Haruyama, T.
(2012). Post-Synapse Model Cell for Synaptic Glutamate Receptor (GluR)-Based Biosensing: Strategy and Engineering to Maximize Ligand-Gated Ion-Flux Achieving High Signal-to-Noise Ratio. Sensors, 12(1), 1035-1041.
https://doi.org/10.3390/s120101035