首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Nonmydriatic fluorescence-based quantitative imaging of human macular pigment distributions
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Nonmydriatic fluorescence-based quantitative imaging of human macular pigment distributions

机译:基于非散瞳荧光的人类黄斑色素分布定量成像

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We have developed a CCD-camera-based nomnydriatic instrument that detects fluorescence from retinal lipofuscin chromophores ("autofluorescence") as a means to indirectly quantify and spatially image the distribution of macular pigment (MP). The lipofuscin fluorescence intensity is reduced at all retinal locations containing MP since MP has a competing absorption in the blue-green wavelength region. Projecting a large diameter, 488 nm excitation spot onto the retina, centered on the fovea, but extending into the macular periphery, and comparing lipofuscin fluorescence intensities outside and inside the foveal area, it is possible to spatially map out the distribution of MP. Spectrally selective detection of the lipofuscin fluorescence reveals an important wavelength dependence of the obtainable image contrast and deduced MP optical density levels, showing that it is important to block out interfering fluorescence contributions in the detection setup originating from ocular media such as the lens. Measuring 70 healthy human volunteer subjects with no ocular pathologies, we find widely varying spatial extent of MP, distinctly differing distribution patterns of MR and strongly differing absolute MP levels among individuals. Our population study suggests that MP imaging based on lipofuscin fluorescence is useful as a relatively simple, objective, and quantitative noninvasive optical technique suitable to rapidly screen MP levels and distributions in healthy humans with undilated pupils. (c) 2006 Optical Society of America.
机译:我们已经开发了一种基于CCD相机的线粒体仪器,该仪器可检测来自视网膜脂褐素发色团的荧光(“自发荧光”),以间接量化和空间成像黄斑色素(MP)的分布。由于MP在蓝绿色波长范围内具有竞争性吸收,因此在所有含有MP的视网膜位置处脂褐素的荧光强度都会降低。将大直径的488 nm激发点投射到视网膜上,以中央凹为中心,但延伸到黄斑外围,并比较中央凹区域内外的脂褐素荧光强度,可以在空间上绘制MP的分布图。脂褐素荧光的光谱选择性检测揭示了可获得的图像对比度和推导的MP光学密度水平的重要波长依赖性,这表明重要的是要在源自眼睛介质(例如晶状体)的检测设置中屏蔽干扰荧光。通过测量70名没有眼部疾病的健康人类志愿者受试者,我们发现MP的空间范围变化很​​大,MR的分布模式明显不同,并且个体之间的MP绝对水平也存在很大差异。我们的人群研究表明,基于脂褐素荧光的MP成像作为一种相对简单,客观,定量的无创光学技术非常有用,适合快速筛查未散瞳的健康人的MP水平和分布。 (c)2006年美国眼镜学会。

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