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Apparatus and method for ranging and noise reduction of low coherence interferometry LCI and optical coherence tomography OCT signals by parallel detection of spectral bands

机译:通过光谱带的并行检测来测量低相干干涉法LCI和光学相干断层扫描OCT信号的范围和降低噪声的装置和方法

摘要

Apparatus and method for increasing the sensitivity in the detection of optical coherence tomography and low coherence interferometry (“LCI”) signals by detecting a parallel set of spectral bands, each band being a unique combination of optical frequencies. The LCI broad bandwidth source is split into N spectral bands. The N spectral bands are individually detected and processed to provide an increase in the signal-to-noise ratio by a factor of N. Each spectral band is detected by a separate photo detector and amplified. For each spectral band the signal is band pass filtered around the signal band by analog electronics and digitized, or, alternatively, the signal may be digitized and band pass filtered in software. As a consequence, the shot noise contribution to the signal is reduced by a factor equal to the number of spectral bands. The signal remains the same. The reduction of the shot noise increases the dynamic range and sensitivity of the system.
机译:通过检测一组平行的光谱带来增加检测光学相干断层扫描和低相干干涉测量(“ LCI”)信号的灵敏度的设备和方法,每个光谱带都是光频率的唯一组合。 LCI宽带源分为N个光谱带。分别检测和处理N个光谱带,以使信噪比增加N倍。每个光谱带均由单独的光电检测器检测并放大。对于每个频谱带,信号通过模拟电子设备在信号带周围进行带通滤波并数字化,或者,可以将信号数字化并通过软件对带通滤波。结果,散粒噪声对信号的贡献减小了等于频谱带数量的因数。信号保持不变。散粒噪声的减少增加了系统的动态范围和灵敏度。

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