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探头几何形状对经巩膜漫射光学光谱的影响。

Effects of probe geometry on transscleral diffuse optical spectroscopy.

作者信息

Svenmarker Pontus, Xu Can T, Andersson-Engels Stefan, Krohn Jørgen

出版信息

Biomed Opt Express. 2011 Nov 1;2(11):3058-71. doi: 10.1364/BOE.2.003058. Epub 2011 Oct 7.

Abstract

The purpose of this study was to investigate how the geometry of a fiber optic probe affects the transmission and reflection of light through the scleral eye wall. Two geometrical parameters of the fiber probe were investigated: the source-detector distance and the fiber protrusion, i.e. the length of the fiber extending from the flat surface of the fiber probe. For optimization of the fiber optic probe geometry, fluorescence stained choroidal tumor phantoms in ex vivo porcine eyes were measured with both diffuse reflectance- and laser-induced fluorescence spectroscopy. The strength of the fluorescence signal compared to the excitation signal was used as a measure for optimization. Intraocular pressure (IOP) and temperature were monitored to assess the impact of the probe on the eye. For visualizing any possible damage caused by the probe, the scleral surface was imaged with scanning electron microscopy after completion of the spectroscopic measurements. A source-detector distance of 5 mm with zero fiber protrusion was considered optimal in terms of spectroscopic contrast, however, a slight fiber protrusion of 0.5 mm is argued to be advantageous for clinical measurements. The study further indicates that transscleral spectroscopy can be safely performed in human eyes under in vivo conditions, without leading to an unacceptable IOP elevation, a significant rise in tissue temperature, or any visible damage to the scleral surface.

摘要

本研究的目的是探究光纤探头的几何形状如何影响光透过巩膜眼壁的传输和反射。研究了光纤探头的两个几何参数:源探测器距离和光纤突出长度,即从光纤探头平面伸出的光纤长度。为了优化光纤探头的几何形状,使用漫反射光谱和激光诱导荧光光谱对离体猪眼中荧光染色的脉络膜肿瘤模型进行了测量。荧光信号与激发信号的强度比用作优化的度量。监测眼内压(IOP)和温度以评估探头对眼睛的影响。为了观察探头可能造成的任何损伤,在光谱测量完成后,用扫描电子显微镜对巩膜表面进行成像。就光谱对比度而言,源探测器距离为5毫米且光纤突出长度为零被认为是最佳的,然而,0.5毫米的轻微光纤突出长度被认为对临床测量有利。该研究进一步表明,在体内条件下,经巩膜光谱检查可以在人眼中安全地进行,不会导致不可接受的眼内压升高、组织温度显著升高或巩膜表面出现任何可见损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f27/3207375/a389f01c852e/boe-2-11-3058-g001.jpg

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