Zhu Yiqiang, Zhu Lida, Lim Yiheng, Makita Shuichi, Guo Yu, Yasuno Yoshiaki
Computational Optics Group, University of Tsukuba , Tsukuba, Ibaraki, Japan.
Biomed Opt Express. 2024 Jun 3;15(7):4044-4064. doi: 10.1364/BOE.524894. eCollection 2024 Jul 1.
We demonstrate a method that reduces the noise caused by multi-scattering (MS) photons in an optical coherence tomography image. This method combines a specially designed image acquisition (i.e., optical coherence tomography scan) scheme and subsequent complex signal processing. For the acquisition, multiple cross-sectional images (frames) are sequentially acquired while the depth position of the focus is altered for each frame by an electrically tunable lens. In the signal processing, the frames are numerically defocus-corrected, and complex averaged. Because of the inconsistency in the MS-photon trajectories among the different electrically tunable lens-induced defocus, this averaging reduces the MS signal. Unlike the previously demonstrated volume-wise multi-focus averaging method, our approach requires the sample to remain stable for only a brief period, approximately 70 ms, thus making it compatible with imaging. This method was validated using a scattering phantom and unanesthetized small fish samples, and was found to reduce MS noise even for unanesthetized measurement.
我们展示了一种减少光学相干断层扫描图像中由多次散射(MS)光子引起的噪声的方法。该方法结合了专门设计的图像采集(即光学相干断层扫描)方案和后续的复杂信号处理。对于采集,在通过电可调透镜为每一帧改变焦点的深度位置时,顺序采集多个横截面图像(帧)。在信号处理中,对这些帧进行数值散焦校正并进行复数平均。由于不同电可调透镜引起的散焦之间MS光子轨迹不一致,这种平均降低了MS信号。与先前展示的逐体积多焦点平均方法不同,我们的方法仅要求样本在短时间内保持稳定,大约70毫秒,从而使其与成像兼容。该方法使用散射体模和未麻醉的小鱼样本进行了验证,并且发现即使对于未麻醉的测量也能降低MS噪声。