Dumont, N.S.-Y.; Stöckel, A.; Furlong, P.M.; Bartlett, M.; Eliasmith, C.; Stewart, T.C.
Biologically-Based Computation: How Neural Details and Dynamics Are Suited for Implementing a Variety of Algorithms. Brain Sci. 2023, 13, 245.
https://doi.org/10.3390/brainsci13020245
AMA Style
Dumont NS-Y, Stöckel A, Furlong PM, Bartlett M, Eliasmith C, Stewart TC.
Biologically-Based Computation: How Neural Details and Dynamics Are Suited for Implementing a Variety of Algorithms. Brain Sciences. 2023; 13(2):245.
https://doi.org/10.3390/brainsci13020245
Chicago/Turabian Style
Dumont, Nicole Sandra-Yaffa, Andreas Stöckel, P. Michael Furlong, Madeleine Bartlett, Chris Eliasmith, and Terrence C. Stewart.
2023. "Biologically-Based Computation: How Neural Details and Dynamics Are Suited for Implementing a Variety of Algorithms" Brain Sciences 13, no. 2: 245.
https://doi.org/10.3390/brainsci13020245
APA Style
Dumont, N. S.-Y., Stöckel, A., Furlong, P. M., Bartlett, M., Eliasmith, C., & Stewart, T. C.
(2023). Biologically-Based Computation: How Neural Details and Dynamics Are Suited for Implementing a Variety of Algorithms. Brain Sciences, 13(2), 245.
https://doi.org/10.3390/brainsci13020245