首页> 外文会议>Conference on Optical Coherence tomography and coherence domain optical methods in biomedicine XX >Extending the effective imaging depth in spectral domain optical coherence tomography by dual spatial frequency encoding
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Extending the effective imaging depth in spectral domain optical coherence tomography by dual spatial frequency encoding

机译:通过双空间频率编码在光谱域光相干断层扫描中延伸有效的成像深度

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We present a spatial frequency domain multiplexing method for extending the imaging depth range of a SDOCT system without any expensive device. This method uses two reference arms with different round-trip optical delay to probe different depth regions within the sample. Two galvo scanners with different pivot-offset distances in the reference arms are used for spatial frequency modulation and multiplexing. While simultaneously driving the galvo scanners in the reference arms and the sample arm, the spatial spectrum of the acquired two-dimensional OCT spectral interferogram corresponding to the shallow and deep depth of the sample will be shifted to the different frequency bands in the spatial frequency domain. After data filtering, image reconstruction and fusion the spatial frequency multiplexing SDOCT system can provide an approximately 1.9 fold increase in the effective ranging depth compared with that of a conventional single-reference-arm full-range SDOCT system.
机译:我们介绍了一种空间频域复用方法,用于在没有任何昂贵的设备的情况下扩展SDOCT系统的成像深度范围。该方法使用具有不同往返光学延迟的两个参考臂,以探测样品内的不同深度区域。具有不同枢轴偏差的两个GALVO扫描仪参考臂的距离用于空间频率调制和多路复用。虽然同时驱动参考臂和样品臂中的镀锌扫描仪,但是对应于样本的浅和深度的所获取的二维OCT光谱干扰图的空间谱将被移位到空间频域中的不同频带。在数据滤波后,图像重建和融合的空间频率复用SDOCT系统可以提供与传统的单参考臂全范围SDOCT系统相比的有效测距深度的大约1.9倍。

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