Tang Peijun, Wang Ruikang K
Department of Bioengineering, University of Washington, 3720 15th Avenue NE, Seattle, WA 98195, USA.
Biomed Opt Express. 2020 Oct 15;11(11):6379-6388. doi: 10.1364/BOE.403933. eCollection 2020 Nov 1.
When imaging birefringent samples using optical coherence tomography angiography (OCTA), the phase retardation may appear opposite to the phase change due to the blood flow in the orthogonal signals, for which a cancellation effect can occur when deriving OCTA signals. This effect can diminish the ability of OCTA to detect vascular information, leading to an erroneous interpretation of the final OCTA images. To mitigate this issue, we demonstrate polarization-sensitive optical coherence tomography (PS-OCT) to image microvascular information within a living sample without polarization induced artifacts. The system is furnished with a swept source OCT (SS-OCT) that incorporates two imaging modes: OCTA imaging and polarization-sensitive imaging. PS-OCT is used to provide birefringent contrast where the color-encoded Stokes parameters are used to obtain high contrast polarization-state images. OCTA is used to acquire high-resolution images of functional microvascular networks permeating the scanned tissue volume. Taking the advantages of the dual-channel PS-OCT configuration, the polarization induced artifacts are eliminated from OCTA vascular imaging. The proposed PS-OCTA system is employed to visualize the birefringent components and the vascular networks of the human skin in vivo. It is expected that the proposed system setup would have useful and practical applications in the investigations of the vasculature in the birefringent tissue samples both pre-clinically and clinically.
当使用光学相干断层扫描血管造影(OCTA)对双折射样本进行成像时,由于正交信号中的血流,相位延迟可能会呈现出与相位变化相反的情况,在推导OCTA信号时可能会出现抵消效应。这种效应会削弱OCTA检测血管信息的能力,导致对最终OCTA图像的错误解读。为了缓解这个问题,我们展示了偏振敏感光学相干断层扫描(PS - OCT),用于对活体样本中的微血管信息进行成像,且不会产生偏振诱导伪像。该系统配备了扫频源OCT(SS - OCT),它包含两种成像模式:OCTA成像和偏振敏感成像。PS - OCT用于提供双折射对比度,其中颜色编码的斯托克斯参数用于获取高对比度的偏振态图像。OCTA用于获取渗透到扫描组织体积中的功能性微血管网络的高分辨率图像。利用双通道PS - OCT配置的优势,从OCTA血管成像中消除了偏振诱导伪像。所提出的PS - OCTA系统用于在体内可视化人体皮肤的双折射成分和血管网络。预计所提出的系统设置在临床前和临床研究双折射组织样本中的脉管系统方面将具有有用且实际的应用。