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Double Interferometer Design for Independent Wavefront Manipulation in Spectral Domain Optical Coherence Tomography

机译:光谱域光学相干层析成像中独立波前操纵的双干涉仪设计

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摘要

Spectral domain optical coherence tomography (SD-OCT) is a highly versatile method which allows for three dimensional optical imaging in scattering media. A number of recent publications demonstrated the technique to benefit from structured illumination and beam shaping approaches, e.g. to enhance the signal-to-noise ratio or the penetration depth with samples such as biological tissue. We present a compact and easy to implement design for independent wavefront manipulation and beam shaping at the reference and sample arm of the interferometric OCT device. The design requires a single spatial light modulator and can be integrated to existing free space SD-OCT systems by modifying the source arm only. We provide analytical and numerical discussion of the presented design as well as experimental data confirming the theoretical analysis. The system is highly versatile and lends itself for applications where independent phase or wavefront control is required. We demonstrate the system to be used for wavefront sensorless adaptive optics as well as for iterative optical wavefront shaping for OCT signal enhancement in strongly scattering media.
机译:光谱域光学相干断层扫描(SD-OCT)是一种高度通用的方法,可以在散射介质中进行三维光学成像。许多最新的出版物证明了该技术可从结构化照明和光束整形方法中受益,例如以提高信噪比或对生物组织等样品的穿透深度。我们介绍了一种紧凑且易于实现的设计,用于在干涉式OCT设备的参考臂和采样臂处进行独立的波前操纵和波束成形。该设计只需要一个空间光调制器,并且只需修改光源臂就可以集成到现有的自由空间SD-OCT系统中。我们提供了对所提出的设计的分析和数值讨论,以及证实理论分析的实验数据。该系统用途广泛,适合需要独立相位或波前控制的应用。我们演示了该系统可用于无阵面自适应光学波阵面以及用于在强散射介质中增强OCT信号的迭代光学波阵面整形。

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