首页> 外文会议>Conference on Optical Coherence tomography and coherence domain optical methods in biomedicine XXI >Optimization of data processing with the Akinetic swept-laser: algorithm to automatically adjust the A-scan synchronization delay
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Optimization of data processing with the Akinetic swept-laser: algorithm to automatically adjust the A-scan synchronization delay

机译:用APKETIC扫描激光器的数据处理优化:算法自动调整A扫描同步延迟

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The Akinetic swept-laser (Insight, Lafayette, USA) is an all-semiconductor compact and tunable laser source for optical coherence tomography (OCT). Wavelength sweeps with this source are composed of valid data sections interleaved with invalid data sections. The source provides a precise trigger for each wavelength sweep and a "data valid vector" (DVV) file which identifies the indices of the valid data points in a recorded interferogram. In order to identify valid data in real time during acquisition, a delay must be precisely adjusted between the trigger and the wavelength sweep. Optimizing this delay becomes tedious when changing the interferometer configuration in a multi-purpose OCT system. The source provides tools to do this, but they are not automated and require a sample with a single clean reflection. We developed a simple and robust algorithm, integrated in our OCT data acquisition and treatment software, for finding the optimal delay correction that must be applied to accurately identify the valid data obtained with the Akinetic swept-laser. It can perform optimization either from the laser spectrum or from an interferogram and facilitates delay readjustment when the interferometer configuration is modified.
机译:动态扫描激光(Insight,Lafayette,USA)是一种用于光学相干断层扫描(OCT)的全半导体紧凑型激光源。具有此源的波长扫描由使用无效数据部分交错的有效数据部分组成。源为每个波长扫描提供精确的触发和“数据有效向量”(DVV)文件,其识别记录的干扰图中的有效数据点的指标。为了在采集期间实时识别有效数据,必须在触发和波长扫描之间精确调整延迟。在多用途OCT系统中更改干涉仪配置时,优化此延迟变得繁琐。源提供工具来执行此操作,但它们并非自动化,并且需要具有单个清洁反射的样本。我们开发了一种简单且稳健的算法,集成在我们的OCT数据采集和处理软件中,用于找到必须应用的最佳延迟校正,以便精确地识别用AWINCED扫描激光器获得的有效数据。它可以从激光光谱或来自干涉图进行优化,并在修改干涉仪配置时促进延迟重新调整。

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