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Integrated-optics based multi-beam imaging for speed improvement of OCT systems

机译:基于集成光学的多光束成像,可提高OCT系统的速度

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The speed improvement is a game-changer in optical coherence tomography (OCT) imaging because it opens up for new and very exciting applications. The frame rate of an OCT system is limited by the speed of the camera or the sweep rate of the light source. This problem can be overcome by multiple-beam imaging, in which different locations on the sample are illuminated by an array of light simultaneously. This technique allows parallel imaging from multiple sample locations and therefore improves OCT axial scan rate by a factor equal to the number of beams used simultaneously which can go up to very high frequency ranges (e.g. MHz) easily. In this work, we introduce a compact integrated-optics based multiple-beam illumination design in which several waveguides with certain length differences are combined with wavelength-independent couplers for space-division multiplexing. Electrodes will be placed on each beam path in order to separate desired signal from unwanted reflections at the optical surfaces or tissue. The imaging speed will be improved by the number of the beam paths used. In addition to fast imaging, the proposed design will be very compact which makes it very suitable to be used in endoscopic probes. The proof-of-concept of this idea was experimentally demonstrated using a design which consists of 2 times 4 parallel OCT channels that are realized with a total of 6 Y-couplers. Each individual OCT channel has an optical path length delay with respect to the other channels.
机译:速度提高是光学相干断层扫描(OCT)成像中的游戏规则改变者,因为它为新的非常令人兴奋的应用打开了大门。 OCT系统的帧速率受照相机的速度或光源的扫描速率的限制。这个问题可以通过多光束成像来克服,在多光束成像中,样品上的不同位置会同时被一束光照射。该技术允许从多个样本位置进行并行成像,因此将OCT轴向扫描速率提高了一个系数,该系数等于同时使用的光束数量,可以轻松地达到非常高的频率范围(例如MHz)。在这项工作中,我们介绍了一种基于紧凑型集成光学的多光束照明设计,该设计将具有一定长度差异的几个波导与与波长无关的耦合器组合在一起,进行空分复用。电极将放置在每个光束路径上,以便将所需信号与光学表面或组织上的有害反射分开。成像速度将通过使用的光路数量来提高。除了快速成像外,建议的设计还将非常紧凑,这使其非常适合用于内窥镜探头。这个想法的概念证明是通过一种设计进行实验证明的,该设计由2个4个并行OCT通道组成,总共有6个Y耦合器。每个单独的OCT信道相对于其他信道具有光程长度延迟。

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