TY - JOUR
T1 - マイクロチャンネルを通過する赤血球の変形挙動と内部流動の二次元数値シミュレーションによる観察
AU - Kase, Atsushi
AU - Kohri, Shimpei
AU - Tajikawa, Tsutomu
AU - Bando, Kiyoshi
AU - Ohba, Kenkichi
PY - 2010/12
Y1 - 2010/12
N2 - It is particularly important to know the deformation behavior of the erythrocyte passing through a micro channel (MC) like the blood capillary. In this paper, the deformation behavior of an erythrocyte passing through the pseudo MC was calculated and observed by a two-dimensional numerical simulation of blood flow. The pseudo MC wall was created by assuming that the wall was one of the fluids which had no velocity at all times. The erythrocyte's movement and deformation were calculated by using an immersed boundary method. The following results were obtained by the simulation. An erythrocyte smoothly deformed and passed through the pseudo MC. In the pseudo MC, its shape changed to bullet-like shape and its moving velocity was almost constant. In addition, a narrow layer of only blood plasma, what we call the plasma layer, was formed between pseudo MC's wall surface and the erythrocyte membrane. It was possible that the plasma layer puts the erythrocyte into fluid lubrication. On the other hand, in our previous researches the deformation behavior of the erythrocyte passing through the MC was observed by experiments. The simulation results had good agreement particularly on an erythrocyte's deformed shape and process in MC with the experimental results.
AB - It is particularly important to know the deformation behavior of the erythrocyte passing through a micro channel (MC) like the blood capillary. In this paper, the deformation behavior of an erythrocyte passing through the pseudo MC was calculated and observed by a two-dimensional numerical simulation of blood flow. The pseudo MC wall was created by assuming that the wall was one of the fluids which had no velocity at all times. The erythrocyte's movement and deformation were calculated by using an immersed boundary method. The following results were obtained by the simulation. An erythrocyte smoothly deformed and passed through the pseudo MC. In the pseudo MC, its shape changed to bullet-like shape and its moving velocity was almost constant. In addition, a narrow layer of only blood plasma, what we call the plasma layer, was formed between pseudo MC's wall surface and the erythrocyte membrane. It was possible that the plasma layer puts the erythrocyte into fluid lubrication. On the other hand, in our previous researches the deformation behavior of the erythrocyte passing through the MC was observed by experiments. The simulation results had good agreement particularly on an erythrocyte's deformed shape and process in MC with the experimental results.
KW - Deformability
KW - Erythrocyte
KW - Immersed boundary method
KW - Micro channel
KW - Shape recoverability
KW - Erythrocyte
KW - Immersed Boundary Method
KW - Deformability
KW - Shape recoverability
KW - Micro channel
UR - http://www.scopus.com/inward/record.url?scp=79953204302&partnerID=8YFLogxK
U2 - 10.1299/kikaib.76.772_2111
DO - 10.1299/kikaib.76.772_2111
M3 - 学術論文
AN - SCOPUS:79953204302
SN - 0387-5016
VL - 76
SP - 2111
EP - 2117
JO - Nippon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
JF - Nippon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
IS - 772
ER -