首页> 外文会议>Conference on optical coherence tomography and coherence domain optical methods in biomedicine >From Talbot Bands to No Mirror Terms in Fourier Domain OCT, aQuest on the Fundamental Origin of the Sensitivity Decay with Depth
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From Talbot Bands to No Mirror Terms in Fourier Domain OCT, aQuest on the Fundamental Origin of the Sensitivity Decay with Depth

机译:从Talbot乐队到傅里叶域的镜子术语OCT,Aquest对敏感性衰减的基本起源深入

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We show that the decay of sensitivity with depth in Fourier Domain (FD)-OCT can be explained based on the superposition of wavetrain lengths after dispersion (diffraction). The more coherent the dispersed waves are, the slower the decay of sensitivity. An asymmetry in the decay curve with the optical path difference (OPD) can be introduced via an "intrinsic" delay which has the effect of shifting axially the two wavetrains relative to each other, originating from the object and reference beam of an interferometer. In this way, an equivalent Talbot Bands set-up is implemented, characterized by no mirror terms for the "extrinsic" delay introduced in the interferometer. Such configurations require that the two interfering beams use different parts of the diffraction grating in the interrogating spectrometer. Theory of Talbot Bands is presented and then how this knowledge can be transferred to the field of FD-OCT to achieve A-scans mirror terms free in one step. A theoretical rigorous model and a heuristic model are presented to quantify the Talbot bands.
机译:我们表明,在色散(衍射)之后,可以基于波纹长度的叠加来解释傅里叶域(FD)-OCT中深度的灵敏度的衰减。分散的波浪越连干,敏感性的衰减越慢。具有光路径差(OPD)的衰减曲线中的不对称性可以通过“固有的”延迟引入,该延迟具有相对于干涉仪的物体和参考光束轴向地彼此转移的效果。以这种方式,实现了等效的Talbot带设置,其特征在于,在干涉仪中引入的“外在”延迟的镜子术语。这种配置要求两个干扰光束在询问光谱仪中使用衍射光栅的不同部分。展示了Talbot乐队的理论,然后如何将这种知识转移到FD-OCT领域,以在一步中自由实现扫描镜面。提出了理论严格的模型和启发式模型来量化Talbot带。

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