Artifacts cancellation in Fourier domain optical coherence tomography using balance detection

A. Bradu, A. Podoleanu
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引用次数: 1

Abstract

A Fourier domain optical coherence tomography system equipped with two spectrometers in balance detection is presented. The set-up was successfully used in reducing two artifacts present in Fourier domain optical coherence tomography images: autocorrelation terms and fixed pattern noise. Conditions and adjustments of spectrometer parameters are presented to ensure an anti-phase channelled spectrum modulation along the length of the two cameras for a majority of wavelengths within the optical source spectrum. By stopping the optical signal to reach one of the spectrometers, the set-up was used to compare the conditions of operation of a single camera with that of a balanced configuration. Using as a sample a tooth, balanced detection technique is compared with techniques applied to conventional single camera set-ups, based on sequential deduction of averaged spectra collected with different on/off settings for the sample or reference beams. It is concluded that balance detection performs better than single camera techniques, is more tolerant to movement, exhibits longer-term stability and can operate dynamically in real time.
利用平衡检测傅立叶域光学相干层析成像中的伪影消除
提出了一种用于平衡检测的双光谱仪傅里叶域光学相干层析成像系统。该装置成功地用于减少存在于傅里叶域光学相干层析成像中的两个伪影:自相关项和固定模式噪声。提出了确保在光源光谱内的大部分波长沿两个相机的长度进行反相位信道调制的条件和调整光谱仪参数。通过停止光信号到达其中一个光谱仪,该装置用于比较单个相机与平衡配置的操作条件。利用牙齿作为样本,平衡检测技术与传统单相机设置的技术进行了比较,该技术基于对样品或参考光束在不同开/关设置下收集的平均光谱的顺序推导。综上所述,平衡检测比单摄像机技术性能更好,对运动的容忍度更高,具有更长的稳定性,可以实时动态运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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