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Spectral Characteristics of the human eye in vivo determined using low-coherence interferometry

机译:使用低相干干涉测量测定体内人眼的光谱特征

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Spectral characteristic biophotorecepter in the human eye were determined using reflected optical wave from the retina and in this measurement have been used microspectrometric techniques. This measurements is possible only in vitro. We present new non-invasive correlation method ocular low coherence interferometry, which can be used in ophthalmology. Number of observed fringes in the Michelson interferometer is connected with spectral width biophotorecipient across wiener-Khinchine transformation in case using of the partial coherent light sources. Such method allow determinate spectral sensitivity rod if sounded light is low intensity and application optical filter permit value red and violet border human eye. Change width interference fringes it is possible simultaneity measurement space sensitivity of the human retina which is vary important in the ophthalmic diagnostic.
机译:使用来自视网膜的反射光波测定人眼中的光谱特征生物光学仪,并且在该测量中已经使用了微型光谱技术。该测量仅在体外可能。我们呈现出新的非侵入性相关方法眼部低相干干涉测量法,可用于眼科。迈克森干涉仪中观测的条纹的数量在使用部分相干光源的情况下,在维纳 - khinchine转换上与光谱宽度生物光影相连。这种方法允许测定光谱灵敏度杆,如果响声光是低强度和应用滤光器允许的红色和紫色的人眼。变化宽度干扰条纹是人视网膜的同时性测量空间敏感性,其在眼科诊断中变化。

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