Computer Simulation of Platelet Adhesion around Stent Struts in the Presence and Absence of Tissue Defects around Them
Author(s) -
Yota Kawamura,
Noriko Tamura,
Shinichi Goto,
Shinya Goto
Publication year - 2021
Publication title -
journal of interventional cardiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.764
H-Index - 51
eISSN - 1540-8183
pISSN - 0896-4327
DOI - 10.1155/2021/8880988
Subject(s) - platelet , stent , gpvi , adhesion , biomedical engineering , medicine , platelet adhesion , platelet adhesiveness , platelet membrane glycoprotein , platelet activation , biophysics , surgery , materials science , composite material , platelet aggregation , biology
Aim To predict platelet accumulation around stent struts in the presence or absence of tissue defects around them.Methods Computer simulations were performed using virtual platelets implementing the function of the three membrane proteins: glycoprotein (GP) Ib α , GPIIb/IIIa, and GPVI. These platelets were perfused around the stent struts implanted into the vessel wall in the presence or absence of tissue defects around them using within the simulation platform. The number of platelets that adhered around stent struts was calculated by solving the blood flow using Navier–Stokes equation along with the adhesion of membrane protein modeled within the platform.Results Platelet accumulation around stent struts occurred mostly at the downstream region of the stent strut array. The majority of platelets adhered at the downstream of the first bend regardless of the tissue defect status. Platelet adhesion around stent struts occurred more rapidly in the presence of tissue defects.Conclusion Computer simulation using virtual platelets suggested a higher rate of platelet adhesion in the presence of tissue defects around stent struts.
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