Style | Citing Format |
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MLA | Mirakhorli F, et al.. "A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries." Cardiovascular Engineering and Technology, vol. 14, no. 1, 2023, pp. 79-91. |
APA | Mirakhorli F, Vahidi B, Pazouki M, Barmi PT (2023). A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries. Cardiovascular Engineering and Technology, 14(1), 79-91. |
Chicago | Mirakhorli F, Vahidi B, Pazouki M, Barmi PT. "A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries." Cardiovascular Engineering and Technology 14, no. 1 (2023): 79-91. |
Harvard | Mirakhorli F et al. (2023) 'A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries', Cardiovascular Engineering and Technology, 14(1), pp. 79-91. |
Vancouver | Mirakhorli F, Vahidi B, Pazouki M, Barmi PT. A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries. Cardiovascular Engineering and Technology. 2023;14(1):79-91. |
BibTex | @article{ author = {Mirakhorli F and Vahidi B and Pazouki M and Barmi PT}, title = {A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries}, journal = {Cardiovascular Engineering and Technology}, volume = {14}, number = {1}, pages = {79-91}, year = {2023} } |
RIS | TY - JOUR AU - Mirakhorli F AU - Vahidi B AU - Pazouki M AU - Barmi PT TI - A Fluid-Structure Interaction Analysis of Blood Clot Motion in a Branch of Pulmonary Arteries JO - Cardiovascular Engineering and Technology VL - 14 IS - 1 SP - 79 EP - 91 PY - 2023 ER - |