首页> 外文期刊>Journal of cataract and refractive surgery >Imaging corneal crosslinking by autofluorescence 2-photon microscopy, second harmonic generation, and fluorescence lifetime measurements.
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Imaging corneal crosslinking by autofluorescence 2-photon microscopy, second harmonic generation, and fluorescence lifetime measurements.

机译:通过自发荧光2光子显微镜,二次谐波生成和荧光寿命测量来成像角膜交联。

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PURPOSE: To evaluate the use of 2-photon microscopy (TPM), which excites tissue autofluorescence, in detecting and calculating the grade of collagen corneal crosslinks, which are not visible through the slitlamp and in vivo confocal microscopy. SETTING: Departments of Ophthalmology, University of Lubeck, Lubeck, and University of Rostock, Rostock, Germany. DESIGN: Experimental study. METHODS: Corneas of rabbits were treated with different crosslinking (CXL) protocols. Two weeks after treatment, the corneas were evaluated in vivo by confocal microscopy. Eyes were enucleated and TPM was performed at 710 nm and 826 nm excitation wavelengths to detect tissue autofluorescence, second harmonic generation, and fluorescence lifetime measurements (FLIM). Eyes were then fixed and analyzed by histology. RESULTS: Crosslinking following the standard protocol generated a strong autofluorescence signal in the stroma that was detected by TPM. This signal was weakly present in the control specimens, and a sharp transition zone between the peripheral zone and the CXL zone was seen. On FLIM, an increase in corneal crosslinks was measured when the standard protocol was used. CONCLUSIONS: Two-photon microscopy, a noninvasive method, was able to detect the effects of therapeutic CXL and measure the grade of CXL. In addition to postoperative treatment control, the technique has possibilities for use in online dosimetry during 2-photon triggered CXL.
机译:目的:评估激发组织自发荧光的2光子显微镜(TPM)在检测和计算胶原角膜交联的程度方面的用途,而该角膜交联在裂隙灯和体内共聚焦显微镜下是不可见的。单位:德国吕贝克的吕贝克大学和德国罗斯托克的罗斯托克大学眼科。设计:实验研究。方法:采用不同的交联(CXL)方案处理兔角膜。治疗后两周,通过共聚焦显微镜在体内评估角膜。摘除眼球,并在710 nm和826 nm激发波长下进行TPM,以检测组织自身荧光,二次谐波的产生和荧光寿命的测量(FLIM)。然后固定眼睛并通过组织学分析。结果:遵循标准协议的交联在基质中产生了强烈的自发荧光信号,TPM可检测到该信号。该信号在对照样本中微弱地存在,并且在外围区域和CXL区域之间看到了一个陡峭的过渡区域。在FLIM上,使用标准协议时,测量到了角膜交联的增加。结论:双光子显微镜是一种非侵入性方法,能够检测治疗性CXL的效果并测量CXL的等级。除了术后治疗控制外,该技术还可以用于2光子触发CXL期间的在线剂量测定。

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