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共聚焦扫描激光多普勒血流仪:模型流动系统中的实验

Confocal scanning laser Doppler flowmetry: experiments in a model flow system.

作者信息

Chauhan B C, Smith F M

机构信息

Department of Ophthalmology, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Glaucoma. 1997 Aug;6(4):237-45.

PMID:9264303
Abstract

PURPOSE

We conducted this study toward validating confocal scanning laser Doppler flowmetry (SLDF), a new noninvasive technique for measuring retinal and optic nerve head hemodynamics.

METHODS

We designed a model flow system using a glass capillary coupled to a microlitre syringe driven by an infusion pump. Eleven capillaries with parallel walls (internal diameters ranging 705 to 25 microm) were used. The capillaries were perfused with skim milk over a range of pump flow rates. At each flow rate, measurements were made with the Heidelberg Retina Flowmeter (HRF) to study the relationship between HRF-measured flow and actual flow. The initial experiments (n = 2) were conducted to establish the approximate velocity operating range of the HRF with single HRF measurements across a wide range of flow rates, whereas the subsequent experiments (n = 9) were concentrated within this operating range with five HRF measurements at each flow rate.

RESULTS

When pump flow rates were converted to actual velocity at the measurement point for the initial experiments, the velocity operating range of the HRF was approximately 0.08 to 1.0 mm/s. For velocities of >1 mm/s, HRF measured velocity was not linearly related to actual velocity. Within the operating range, there was a highly significant linear relationship between HRF-measured flow and actual flow (0.935 < or = r < or = 0.990, p < 0.001). When the curves of HRF-measured velocity versus actual velocity for the different experiments were plotted, they largely superimposed. The variability of the HRF measurements was between 3.57% and 4.05% and was independent of flow rate.

CONCLUSIONS

SLDF measures reliably and linearly within a given operating range.

摘要

目的

我们开展这项研究以验证共焦扫描激光多普勒血流仪(SLDF),这是一种用于测量视网膜和视神经乳头血流动力学的新型非侵入性技术。

方法

我们设计了一个模型血流系统,该系统使用与由输液泵驱动的微升注射器相连的玻璃毛细管。使用了11根具有平行管壁的毛细管(内径范围为705至25微米)。在一系列泵流速范围内用脱脂牛奶灌注这些毛细管。在每个流速下,使用海德堡视网膜血流仪(HRF)进行测量,以研究HRF测量的血流与实际血流之间的关系。最初的实验(n = 2)旨在通过在很宽的流速范围内进行单次HRF测量来确定HRF的近似速度操作范围,而后续实验(n = 9)则集中在这个操作范围内,在每个流速下进行5次HRF测量。

结果

在最初的实验中,当将泵流速转换为测量点处的实际速度时,HRF的速度操作范围约为0.08至1.0毫米/秒。对于速度>1毫米/秒,HRF测量的速度与实际速度并非线性相关。在操作范围内,HRF测量的血流与实际血流之间存在高度显著的线性关系(0.935≤r≤0.990,p<0.001)。当绘制不同实验中HRF测量的速度与实际速度的曲线时,它们基本重叠。HRF测量的变异性在3.57%至4.05%之间,且与流速无关。

结论

SLDF在给定的操作范围内能够可靠且线性地进行测量。

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