用于角膜灵敏度评价的瑞士液体喷射美感计的工作原理和相关物理特性。

IF 2.4
Daniela S Nosch, Matthias Oscity, Peter Steigmeier, Emanuele Käser, Markus Loepfe, Roland E Joos
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引用次数: 3

摘要

目的:描述和评价用于眼表灵敏度测量的Swiss Liquid Jet aestheiometer for Corneal Sensitivity (SLACS)的相关物理性质。方法:分析液体射流(Liquid Jet, LJ)液滴(由等渗盐水溶液组成)的特性,利用高速Photron FASTCAM NOVA S6相机(刺激时间为40 ms)记录LJ液滴的垂直位移和水平位移及速度。在微天平(压力范围100-1500毫巴)的帮助下,评估了20组10个lj的刺激质量。结果:由于连续流LJ在较低的压力范围内(700-1500 mbar)分解成液滴,变异性增加,速度下降,与预期的线性方式相比。然而,这可能是由于当通过像素计数确定LJ速度时,随着刺激速度的增加,很难识别LJ液滴从一个高速图像帧到下一个高速图像帧的模式变化。结论:瑞士液体喷射角膜敏感度美感计显示,在脉冲刺激模式下,以可重复的方式精确定位到眼表面。在临床敏感性测量所需的典型压力范围内,观察到LJ速度和质量的变化很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Working principle and relevant physical properties of the Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity (SLACS) evaluation.

Working principle and relevant physical properties of the Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity (SLACS) evaluation.

Working principle and relevant physical properties of the Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity (SLACS) evaluation.

Working principle and relevant physical properties of the Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity (SLACS) evaluation.

Purpose: To describe and evaluate relevant physical properties of the Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity (SLACS) for ocular surface sensitivity measurement.

Methods: Characteristics of Liquid Jet (LJ) droplets (consisting of isotonic saline solution) were analysed: vertical and horizontal displacement and speed of LJ droplets were recorded with the aid of the High Speed Photron FASTCAM NOVA S6 camera (stimulus duration: 40 ms). Stimulus mass was assessed for 20 sets of 10 LJs with aid of a microbalance (pressure range of 100-1500 mbar).

Results: Because continuous flow LJ disintegrated into droplets in the lower pressure range (<700 mbar), pulsed stimuli were applied in order to obtain similar stimulus characteristics across the applied pressure range. For all measurements, very little variability was observed. Vertical and horizontal displacement did not exceed 0.13 mm in either direction. The mass per shot showed an unexpected cubic dependency on pressure. Up to approximately 700 mbar, LJ speed showed an almost linear relationship. For the pressure range of >700-1500 mbar, variability increased and speed decreased compared to the expected in a linear manner. However, this may be caused by the difficulty of identifying pattern changes of LJ droplets from one high speed image frame to the next with increasing stimulus speed, when determining LJ speed via pixel count.

Conclusions: Swiss Liquid Jet Aesthesiometer for Corneal Sensitivity was shown to deliver fine droplets with a pulsed stimulus mode, in a repeatable manner with precise localisation to the ocular surface. Very little variability was observed in LJ speed and mass for the typical pressure range required for clinical sensitivity measurements.

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