在光学相干层析成像中,通过再循环回路使用传统扫源激光器进行长轴向成像

A. Bradu, D. Jackson, A. Podoleanu
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摘要

通常,扫描源光学相干层析成像(SS-OCT)成像仪器能够比基于相机(CB)的对偶具有更长的轴向范围。然而,仍然有各种各样的应用,将利用扩大轴向范围。在本文中,我们提出了一种干涉仪配置,可用于将配备传统扫描源激光器的OCT仪器的轴向范围扩展到几厘米。在这种配置中,干涉仪的两个臂配备了可调的光程长度环。在两个环中使用半导体光放大器可以补偿光损耗,因此,可以轴向组合多路径深度反射率剖面(ascan)。通过这种方式,可以实现极长的整体轴向范围。再循环回路的使用产生的效果相当于延长了扫描源激光器的相干长度。使用这种方法,SS-OCT可实现的轴向成像范围可以达到远远超出激光相干长度限制的值,原则上超过许多厘米。在目前的工作中,我们演示了使用商用扫描源激光器的轴向范围超过4厘米,使用“内部”扫描源激光器的轴向范围达到6厘米。当在传统设置单独使用时,这两种激光器可以提供小于几毫米的轴向范围。
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Long axial imaging range using conventional swept source lasers in optical coherence tomography via re-circulation loops
Typically, swept source optical coherence tomography (SS-OCT) imaging instruments are capable of a longer axial range than their camera based (CB) counterpart. However, there are still various applications that would take advantage for an extended axial range. In this paper, we propose an interferometer configuration that can be used to extend the axial range of the OCT instruments equipped with conventional swept-source lasers up to a few cm. In this configuration, the two arms of the interferometer are equipped with adjustable optical path length rings. The use of semiconductor optical amplifiers in the two rings allows for compensating optical losses hence, multiple paths depth reflectivity profiles (Ascans) can be combined axially. In this way, extremely long overall axial ranges are possible. The use of the recirculation loops produces an effect equivalent to that of extending the coherence length of the swept source laser. Using this approach, the achievable axial imaging range in SS-OCT can reach values well beyond the limit imposed by the coherence length of the laser, to exceed in principle many centimeters. In the present work, we demonstrate axial ranges exceeding 4 cm using a commercial swept source laser and reaching 6 cm using an “in-house” swept source laser. When used in a conventional set-up alone, both these lasers can provide less than a few mm axial range.
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