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Predicting the formation of aortic dissection using a non-Newtonian model / 中国医学物理学杂志
Chinese Journal of Medical Physics ; (6): 1571-1576, 2023.
Article in Zh | WPRIM | ID: wpr-1026180
Responsible library: WPRO
ABSTRACT
The blood flow in the aortic arch and branch vessels in vitro is simulated,and the blood model is optimized with a non-Newtonian model.A numerical simulation analysis is conducted based on bidirectional fluid-solid coupling to analyze the hemodynamic characteristics(blood flow velocity,vascular wall pressure and vascular wall stress)in a cardiac cycle,and discuss their relationships with the formation of aortic dissection.It is concluded that the long-term existence of"chaotic"blood flow distribution in the blood vessel and the sudden changes of wall pressure and wall stress are liable to cause changes in the structure and function of the cells of the arterial wall,and ultimately induce the formation of aortic dissection.The study provides a more reliable basis for medical diagnosis,and further protects the life,health and safety of patients.
Key words
Full text: 1 Database: WPRIM Language: Zh Journal: Chinese Journal of Medical Physics Year: 2023 Type: Article
Full text: 1 Database: WPRIM Language: Zh Journal: Chinese Journal of Medical Physics Year: 2023 Type: Article