Takeishi Naoki, Imai Yohsuke, Nakaaki Keita, Yamaguchi Takami, Ishikawa Takuji
Department of Biomedical Engineering, Tohoku University, AobaSendai, Japan.
Department of Bioengineering and Robotics, Tohoku University, AobaSendai, Japan.
Physiol Rep. 2014 Jun 6;2(6). doi: 10.14814/phy2.12037. Print 2014 Jun 1.
We numerically investigated margination of leukocytes at arteriole shear rate in straight circular channels with diameters ranging from 10 to 22 μm. Our results demonstrated that passing motion of RBCs effectively induces leukocyte margination not only in small channels but also in large channels. A longer time is needed for margination to occur in a larger channel, but once a leukocyte has marginated, passing motion of RBCs occurs continuously independent of the channel diameter, and leukocyte margination is sustained for a long duration. We also show that leukocytes rarely approach the wall surface to within a microvillus length at arteriole shear rate.
我们对直径范围为10至22μm的直圆形通道中白细胞在小动脉剪切速率下的靠边现象进行了数值研究。我们的结果表明,红细胞的通过运动不仅在小通道中,而且在大通道中都能有效地诱导白细胞靠边。在较大的通道中,靠边现象的发生需要更长的时间,但一旦白细胞靠边,红细胞的通过运动就会持续发生,与通道直径无关,并且白细胞靠边现象会持续很长时间。我们还表明,在小动脉剪切速率下,白细胞很少接近壁面至微绒毛长度以内。