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薄壁可折叠微管的力学原理。

Mechanics of a thin walled collapsible microtube.

作者信息

Sipkema P, Westerhof N

机构信息

Laboratory for Physiology, Free University, Amsterdam, The Netherlands.

出版信息

Ann Biomed Eng. 1989;17(3):203-17. doi: 10.1007/BF02368042.

Abstract

The purpose of this study is to measure the transmural pressure-cross sectional area relation of micro tubes (240 microns diameter) and to compare the measured perfusion pressure-flow relation with the pressure-flow relation calculated from the experimental pressure-cross sectional area relation. The microtubes are made by dipping a glass mould in a latex solution and glueing their outside ends to the inside of glass pipettes. The pressure-cross sectional area relation is determined both with a microplethysmograph (pressure-volume relation) and the microscope (pressure-diameter relations). Heparinized blood is used to include the rheological properties of blood as a perfusion medium. Static pressure-flow relations are obtained with a constant velocity piston pump for two values of external pressure (0 and 10 kPa) and with two downstream resistor settings (0 and 380 kPa cm-3 sec). The calculated pressure-flow relations using length and the experimental pressure-cross sectional area relation, Poiseuille's law, and accounting for the diameter- and shear-dependent viscosity compared well with the relations obtained from the experiments. It is also found that the pressure-flow relation shows an apparent zero flow pressure axis intercept (the extrapolation of the pressure-flow relation to the pressure axis), which can therefore be explained on the basis of the shape of the pressure-area relations.

摘要

本研究的目的是测量微管(直径240微米)的跨壁压力-横截面积关系,并将测量得到的灌注压力-流量关系与根据实验压力-横截面积关系计算得出的压力-流量关系进行比较。微管是通过将玻璃模具浸入乳胶溶液中,并将其外端粘接到玻璃吸管内部制成的。压力-横截面积关系通过微量体积描记器(压力-体积关系)和显微镜(压力-直径关系)来确定。使用肝素化血液作为灌注介质以纳入血液的流变学特性。使用恒速活塞泵在两个外部压力值(0和10 kPa)以及两个下游阻力器设置(0和380 kPa cm-3 sec)下获得静态压力-流量关系。使用长度以及实验压力-横截面积关系、泊肃叶定律,并考虑直径和剪切力相关的粘度计算得到的压力-流量关系与实验得到的关系吻合良好。还发现压力-流量关系显示出明显的零流量压力轴截距(压力-流量关系向压力轴的外推),因此可以根据压力-面积关系的形状对此进行解释。

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