Chiles C, Ravin C E
Invest Radiol. 1981 Nov-Dec;16(6):525-7. doi: 10.1097/00004424-198111000-00013.
Basic principles of fluid mechanics may be used to analyze the relationships of flow, pressure and cross-sectional area of any collapsible tube, including pulmonary blood vessels. The cross-sectional area of a collapsible tube is a direct function of transmural pressure. Alterations in pressure inside the tube may result from changes in fluid velocity, downstream constriction in the tube, or direct increase in internal pressure, as with a manometer. This paper reviews the basic equations applicable to flow in collapsible tubes and illustrates the principles of such flow with a physical model. Depending upon the circumstances, changes in size of the tube may or may not reflect changes in flow or changes in fluid velocity.
流体力学的基本原理可用于分析任何可塌陷管道(包括肺血管)的流量、压力和横截面积之间的关系。可塌陷管道的横截面积是跨壁压力的直接函数。管内压力的改变可能源于流体速度的变化、管下游的狭窄或内部压力的直接增加,如使用压力计的情况。本文回顾了适用于可塌陷管道内流动的基本方程,并用物理模型说明了这种流动的原理。根据具体情况,管道尺寸的变化可能反映也可能不反映流量或流体速度的变化。