Zang, L.; Gu, K.; Ji, X.; Zhang, H.; Yan, S.; Wu, X.
Comparative Analysis of Temperature Rise between Convective Heat Transfer Method and Computational Fluid Dynamics Method in an Anatomy-Based Left Atrium Model during Pulsed Field Ablation: A Computational Study. J. Cardiovasc. Dev. Dis. 2023, 10, 56.
https://doi.org/10.3390/jcdd10020056
AMA Style
Zang L, Gu K, Ji X, Zhang H, Yan S, Wu X.
Comparative Analysis of Temperature Rise between Convective Heat Transfer Method and Computational Fluid Dynamics Method in an Anatomy-Based Left Atrium Model during Pulsed Field Ablation: A Computational Study. Journal of Cardiovascular Development and Disease. 2023; 10(2):56.
https://doi.org/10.3390/jcdd10020056
Chicago/Turabian Style
Zang, Lianru, Kaihao Gu, Xingkai Ji, Hao Zhang, Shengjie Yan, and Xiaomei Wu.
2023. "Comparative Analysis of Temperature Rise between Convective Heat Transfer Method and Computational Fluid Dynamics Method in an Anatomy-Based Left Atrium Model during Pulsed Field Ablation: A Computational Study" Journal of Cardiovascular Development and Disease 10, no. 2: 56.
https://doi.org/10.3390/jcdd10020056
APA Style
Zang, L., Gu, K., Ji, X., Zhang, H., Yan, S., & Wu, X.
(2023). Comparative Analysis of Temperature Rise between Convective Heat Transfer Method and Computational Fluid Dynamics Method in an Anatomy-Based Left Atrium Model during Pulsed Field Ablation: A Computational Study. Journal of Cardiovascular Development and Disease, 10(2), 56.
https://doi.org/10.3390/jcdd10020056