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Wavelength-tuning interferometry of intraocular distances

机译:眼内距离的波长调谐干涉法

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We describe basic principles of wavelength-tuning interferometry and demonstrate its application in ophthalmology. The advantage of this technique compared with conventional low-coherence interferometry ranging is the simultaneous measurement of the object structure without the need for a moving reference mirror. Shifting the wavelength of an external-cavity tunable laser diode causes intensity oscillations in the interference pattern of light beams remitted from the intraocular structure. A Fourier transform of the corresponding wave-number-dependent photodetector signal yields the distribution of the scattering potential along the light beam illuminating the eye. We use an external interferometer to linearize the wave-number axis. We obtain high resolution in a model eye by slow tuning over a wide wavelength range. With lower resolution we demonstrate the simultaneous measurement of anterior segment length, vitreous chamber depth, and axial eye length in human eyes in vivo with data-acquisition times in the millisecond range. (C) 1997 Optical Society of America.
机译:我们描述了波长调谐干涉法的基本原理,并演示了其在眼科中的应用。与传统的低相干干涉测距相比,该技术的优势在于无需移动参考镜即可同时测量物体结构。改变外腔可调谐激光二极管的波长会导致从眼内结构射出的光束的干涉图案中的强度振荡。相应的与波数有关的光电探测器信号的傅立叶变换产生了沿照射眼睛的光束的散射势的分布。我们使用外部干涉仪来线性化波数轴。通过在较宽的波长范围内缓慢调谐,我们可以在模型眼中获得高分辨率。在较低的分辨率下,我们证明了在人眼中可以同时测量前眼的长度,玻璃体腔的深度和人眼中轴眼的长度,数据获取时间在毫秒范围内。 (C)1997年美国眼镜学会。

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