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搏动性眼血流测量的有效性。

Validity of pulsatile ocular blood flow measurements.

作者信息

Silver D M, Farrell R A

机构信息

Johns Hopkins University Applied Physics Laboratory, Laurel, Maryland.

出版信息

Surv Ophthalmol. 1994 May;38 Suppl:S72-80. doi: 10.1016/0039-6257(94)90049-3.

DOI:10.1016/0039-6257(94)90049-3
PMID:7940150
Abstract

The determination of average net pulsatile ocular blood flow form measurements of the intraocular pressure (IOP) pulse is based upon 1) an accurate measurement of IOP and its time variation; 2) a knowledge of the relation between the volume of the living eye and its IOP; 3) a physical model for the flow of blood through the eye: and 4) a concept of steady venous outflow from the eye. Each of these premises needs to be examined. The present analysis assesses the validity of the pneumatic tonometer for measuring the pressure in a flowing column of gas that is directed toward a thin membrane that is in contact with the surface of the cornea. The pressure of this stream of gas exerts a force against the cornea that depresses the corneal surface against the opposing force of the IOP. The balance of these forces and the resultant effect on the tonometer pressure sensor is described by the theories of elasticity, thermodynamics and fluid mechanics. In this treatment, differential equations are solved for the elastic deflections of the cornea subject to the opposing intraocular and tonometer pressures. This permits the pressure in the chamber of the pneumatic tonometer to be related through first principles to the IOP. The response of the tonometer pressure sensor to a range of IOPs (5-60 mmHg) is obtained, as well as the dynamical response of the tonometer to IOP oscillations. The conclusion is that the pneumatic tonometer provides a high fidelity, noninvasive measure of the IOP and its time variation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过眼内压(IOP)脉搏测量来确定平均净搏动性眼血流,是基于以下几点:1)对IOP及其随时间变化的精确测量;2)了解活体眼睛的体积与其IOP之间的关系;3)血液流经眼睛的物理模型;4)眼睛稳定静脉流出的概念。这些前提条件都需要进行检验。本分析评估了气动眼压计在测量流向与角膜表面接触的薄膜的流动气体柱压力方面的有效性。这股气流的压力对角膜施加一个力,使角膜表面在IOP的反作用力作用下凹陷。这些力的平衡以及对眼压计压力传感器的最终影响,由弹性、热力学和流体力学理论来描述。在这种处理方法中,求解角膜在眼内压和眼压计压力相反作用下的弹性挠度的微分方程。这使得气动眼压计腔室内的压力能够通过基本原理与IOP相关联。获得了眼压计压力传感器对一系列IOP(5 - 60 mmHg)的响应,以及眼压计对IOP振荡的动态响应。结论是,气动眼压计提供了对IOP及其随时间变化的高保真、非侵入性测量。(摘要截短至250字)

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