Numerical analysis on RSOD-based phase modulation in OCT

Ling Wang, Z. Ding, Kai Wang
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Abstract

Optical coherence tomography (OCT) is an emerging technology for high-resolution bio-medical imaging. The rapid scanning optical delay line (RSOD) has developed basically for depth scanning and dispersion compensation. If the pivot center of the galvamirror in RSOD is offset, phase modulation can be realized, providing a high carrier frequency required for heterodyne detection. However, the size of galvamirror should be increased, leading to lower response for its oscillation and hence a low scanning rate. In this paper we propose to apply a sinusoidal waveform (resonant scan) instead of a triangle waveform (linear scan) to the galvamirror. Numerical analysis on phase modulation by RSOD and successive envelop demodulation under different driving waveform is conducted. We demonstrate that it is possible to improve OCT frame rate by resonant scan without compromising the signal-to-noise performance if complete and accurate envelope demodulation and appropriate signal processing are adopted.
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基于rsod的OCT相位调制的数值分析
光学相干断层扫描(OCT)是一种新兴的高分辨率生物医学成像技术。用于深度扫描和色散补偿的快速扫描光延迟线(RSOD)已基本研制成功。如果RSOD中电激镜的枢轴中心偏移,则可以实现相位调制,从而提供外差检测所需的高载波频率。然而,电激镜的尺寸应该增加,导致其振荡响应较低,从而降低扫描速率。在本文中,我们提出用正弦波形(共振扫描)代替三角形波形(线性扫描)的电激镜。对不同驱动波形下的RSOD调相和连续包络解调进行了数值分析。我们证明,如果采用完整和准确的包络解调和适当的信号处理,可以通过共振扫描提高OCT帧率,而不影响信噪性能。
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