Style | Citing Format |
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MLA | Khaleghi A, et al.. "A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain." Waves in Random and Complex Media, vol. , no. , 2021, pp. -. |
APA | Khaleghi A, Mohammadi MR, Shahi K, Motie Nasrabadi A (2021). A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain. Waves in Random and Complex Media, (), -. |
Chicago | Khaleghi A, Mohammadi MR, Shahi K, Motie Nasrabadi A. "A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain." Waves in Random and Complex Media , no. (2021): -. |
Harvard | Khaleghi A et al. (2021) 'A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain', Waves in Random and Complex Media, (), pp. -. |
Vancouver | Khaleghi A, Mohammadi MR, Shahi K, Motie Nasrabadi A. A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain. Waves in Random and Complex Media. 2021;():-. |
BibTex | @article{ author = {Khaleghi A and Mohammadi MR and Shahi K and Motie Nasrabadi A}, title = {A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain}, journal = {Waves in Random and Complex Media}, volume = {}, number = {}, pages = {-}, year = {2021} } |
RIS | TY - JOUR AU - Khaleghi A AU - Mohammadi MR AU - Shahi K AU - Motie Nasrabadi A TI - A Neuronal Population Model Based on Cellular Automata to Simulate the Electrical Waves of the Brain JO - Waves in Random and Complex Media VL - IS - SP - EP - PY - 2021 ER - |