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Multi-beam OCT imaging based on an integrated free-space interferometer

机译:基于集成自由空间干涉仪的多光束OCT成像

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摘要

While it is a common practice to increase the speed of swept-source optical coherence tomography (OCT) systems by using a high-speed source, this approach may not always be optimal. Parallelization in the form of multiple imaging beams is an alternative approach, but scalable and low-loss multi-beam OCT architectures are needed to capitalize on its advantages. In this study, we demonstrate an eight-beam OCT system using an interferometer architecture comprising planar lightwave circuits (PLC) splitters, V-groove assemblies (VGA), and optical ribbon fibers. We achieved an excess loss and heterodyne efficiency on each channel that was close to that of single-beam systems. In vivo structural imaging of a human finger and OCT angiography imaging of a mouse ear was performed to demonstrate the imaging performance of the system. This work provides further evidence supporting multi-beam architectures as a viable strategy for increasing OCT imaging speed.
机译:虽然通过使用高速源来提高扫描源光学相干断层扫描(OCT)系统的速度是一种常见的做法,但这种方法可能并不总是最佳的。多种成像光束形式的并行化是一种替代方法,但是需要扩展和低损耗的多光束OCT架构来利用其优点。在这项研究中,我们使用包括平面光波电路(PLC)分离器,V沟组件(VGA)和光学带纤维的干涉仪架构展示了八束OCT系统。我们在接近单梁系统的每个通道上实现了过多的损失和外差效率。在人手指和OCT血管造影成像的体内结构成像中进行了鼠标耳朵的成像以证明系统的成像性能。这项工作提供了进一步证据支持多光束架构作为增加OCT成像速度的可行策略。

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