首页> 外文会议>International Economic Conference for Innovation in Biomedical Engineering and life Sciences >Agreement Between Eyes in Wide-field Fluorescence Lifetime Imaging Ophthalmoscopy Measurements at the Human Retina in Healthy Volunteers
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Agreement Between Eyes in Wide-field Fluorescence Lifetime Imaging Ophthalmoscopy Measurements at the Human Retina in Healthy Volunteers

机译:眼睛之间的一致性荧光寿命成像在健康志愿者的人视网膜上的眼科检查

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Fluorescence lifetime imaging ophthalmoscopy (FLIO) is a new imaging technique for measuring the time-resolved in vivo autofluorescence generated by endogenous fluorophores in the ocular fundus. The aim is to assess the metabolism of the retina. Based on the fluorescence lifetime, different fluorescent compounds in the eye can be distinguished. Pathologic changes may be observed by detecting changes in the fluorescence lifetime. Until now, FLIO is performed using 30° fundus images. For certain diseases section of the fundus is of interest. In this work, observational clinical study in young healthy volunteers was performed to examine the usability of 55° wide-field fluorescence lifetime images. The time-resolved retina autofluorescence was measured (scanning laser ophthalmoscope: 55° of fundus, 62x62 um~2 per pixel; excitation: diode laser with pico-second pulses, 473nm, 80MHz repetition rate; detection: spectral channels 498-560nm (chl) and 560-720nm (ch2), time-correlated single photon counting method) in both eyes of 11 healthy volunteers (28.7±3.6 years). Three repetitive measurements on different days within one week at a similar time have been performed. All subjects had a crystalline lens and an undilated pupil. A modified 3-exponential approach was applied to determine the mean fluorescence lifetimes τ_m. τ_m were computed on the ETDRS grid and in a 15x15 pixel region 25° superior to the fovea. The Wil-coxon rank-sum test was used to test for statistical significant differences between left and right eye. The coefficient of variation in the superior region is 5.6% (right) and 4.7% (left) in chl and 2.5% (right) and 2.1% (left) in ch2. No statistical significant differences have been found between right and left eye. FLIO measurements in young healthy volunteers using a 55° lens are repeatable in both eyes and show no significant differences. Spectral channel 2 should be preferred because of its lower variability. The data analysis was done with FLIMX (available at http://www.flimx.de).
机译:荧光寿命成像眼科(FLIO)是一种用于测量眼底在内源荧光团产生的体内自发荧光中的新成像技术。目的是评估视网膜的新陈代谢。基于荧光寿命,可以区分眼睛中的不同荧光化合物。可以通过检测荧光寿命的变化来观察病理变化。到目前为止,FLIO使用30°眼底图像进行。对于某些疾病的疾病部分是令人兴趣的。在这项工作中,进行了年轻健康志愿者的观察临床研究,以检查55°宽场荧光寿命图像的可用性。测量时间分辨视网膜自发荧光(扫描激光眼镜:55°的眼底,每像素62x62 um〜2;激励:二极管激光,带有微微第二脉冲,473nm,80MHz重复率;检测:光谱通道498-560nm(CHL在11个健康志愿者(28.7±3.6岁)的两种眼中,在两只眼中,560-720nm(CH2),时间相关的单光子计数方法。已经进行了在类似时间内的不同日子的三次重复测量。所有受试者都有一个结晶透镜和未透过的瞳孔。应用修改过的3指数方法以确定平均荧光寿命τ_m。 τm在ETDRS网格上计算,在15x15像素区域25°优于FOVEA。 WIL-COXON秩 - 和试验用于测试左眼和右眼之间的统计显着差异。优质区域的变化系数为5.6%(右)和4.7%(左)CHL和2.5%(右)和2.1%(左)在CH 2中。在右眼和左眼之间没有发现统计显着差异。使用55°镜片的年轻健康志愿者的Flio测量是在眼睛中可重复的,并且没有显着差异。由于其较低的可变性,光谱通道2应该是优选的。数据分析是用flimx完成的(可在http://www.flimx.de上获得)。

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