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平行平板流动腔内的动态剪切应力

Dynamic shear stress in parallel-plate flow chambers.

作者信息

Bacabac Rommel G, Smit Theo H, Cowin Stephen C, Van Loon Jack J W A, Nieuwstadt Frans T M, Heethaar Rob, Klein-Nulend Jenneke

机构信息

Department of Oral Cell Biology, Academic Centre for Dentistry Amsterdam-Vrije Universiteit, Van der Boechorststraat 7, 1081 BT Amsterdam, The Netherlands.

出版信息

J Biomech. 2005 Jan;38(1):159-67. doi: 10.1016/j.jbiomech.2004.03.020.

Abstract

An in vitro model using a parallel-plate fluid flow chamber is supposed to simulate in vivo fluid shear stresses on various cell types exposed to dynamic fluid flow in their physiological environment. The metabolic response of cells in vitro is associated with the wall shear stress. However, parallel-plate flow chambers have not been characterized for dynamic fluid flow experiments. We use a dimensionless ratio h / lambda(v), in determining the exact magnitude of the dynamic wall shear stress, with its oscillating components scaled by a shear factor T. It is shown that, in order to expose cells to predictable levels of dynamic fluid shear stress, two conditions have to be met: (1) h / lambda(v) < 2, where h is the distance between the plates and lambda(v) is the viscous penetration depth; and (2) f(0) < f(c) / m, where the critical frequency f(c) is the upper threshold for this flow regime, m is the highest harmonic mode of the flow, and f(0) is the fundamental frequency of fluid flow.

摘要

使用平行板流体流动腔的体外模型旨在模拟在其生理环境中暴露于动态流体流动的各种细胞类型上的体内流体剪切应力。体外细胞的代谢反应与壁面剪切应力相关。然而,平行板流动腔尚未针对动态流体流动实验进行表征。我们使用无量纲比h / λ(v)来确定动态壁面剪切应力的精确大小,其振荡分量由剪切因子T缩放。结果表明,为了使细胞暴露于可预测水平的动态流体剪切应力,必须满足两个条件:(1) h / λ(v) < 2,其中h是板之间的距离,λ(v)是粘性渗透深度;(2) f(0) < f(c) / m,其中临界频率f(c)是该流动状态的上限阈值,m是流动的最高谐波模式,f(0)是流体流动的基频。

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