Nauman E A, Risic K J, Keaveny T M, Satcher R L
Department of Mechanical Engineering, Orthopaedic Biomechanics Laboratory, University of California, Berkeley, USA.
Ann Biomed Eng. 1999 Mar-Apr;27(2):194-9. doi: 10.1114/1.173.
Steady and pulsatile flows were imaged and quantified in a parallel plate flow chamber that was designed to allow constant variation of the volumetric flow rate and to minimize pressure gradients across the width of the flow field. Results indicated that both the steady and pulsatile flow fields were uniform across the width of the flow chamber as shown by linear regression analysis. Further, the dynamic effects of the fluid pulse were transmitted almost instantaneously across the length of the flow field. These findings verify that parallel plate devices designed in this manner are suitable for delivering uniform steady and pulsatile shear stress to adherent cell populations in vitro.
在一个平行板流动腔中对稳定流和脉动流进行成像和定量分析,该流动腔的设计允许体积流量持续变化,并使流场宽度上的压力梯度最小化。结果表明,如线性回归分析所示,稳定流场和脉动流场在流动腔宽度上都是均匀的。此外,流体脉冲的动态效应几乎瞬间在流场长度上传递。这些发现证实,以这种方式设计的平行板装置适用于在体外向贴壁细胞群体施加均匀的稳定剪切应力和脉动剪切应力。