Münter Michael, Vom Endt Malte, Pieper Mario, Casper Malte, Ahrens Martin, Kohlfaerber Tabea, Rahmanzadeh Ramtin, König Peter, Hüttmann Gereon, Schulz-Hildebrandt Hinnerk
Opt Lett. 2020 Sep 1;45(17):4766-4769. doi: 10.1364/OL.396134.
While optical coherence tomography (OCT) provides a resolution down to 1 µm, it has difficulties in visualizing cellular structures due to a lack of scattering contrast. By evaluating signal fluctuations, a significant contrast enhancement was demonstrated using time-domain full-field OCT (FF-OCT), which makes cellular and subcellular structures visible. The putative cause of the dynamic OCT signal is the site-dependent active motion of cellular structures in a sub-micrometer range, which provides histology-like contrast. Here we demonstrate dynamic contrast with a scanning frequency-domain OCT (FD-OCT), which we believe has crucial advantages. Given the inherent sectional imaging geometry, scanning FD-OCT provides depth-resolved images across tissue layers, a perspective known from histopathology, much faster and more efficiently than FF-OCT. Both shorter acquisition times and tomographic depth-sectioning reduce the sensitivity of dynamic contrast for bulk tissue motion artifacts and simplify their correction in post-processing. Dynamic contrast makes microscopic FD-OCT a promising tool for the histological analysis of unstained tissues.
虽然光学相干断层扫描(OCT)的分辨率可达1微米,但由于缺乏散射对比度,在可视化细胞结构方面存在困难。通过评估信号波动,使用时域全场OCT(FF-OCT)可显著增强对比度,从而使细胞和亚细胞结构可见。动态OCT信号的推测原因是细胞结构在亚微米范围内的位点依赖性主动运动,这提供了类似组织学的对比度。在此,我们展示了扫描频域OCT(FD-OCT)的动态对比度,我们认为它具有关键优势。鉴于固有的断层成像几何结构,扫描FD-OCT能比FF-OCT更快、更高效地提供跨组织层的深度分辨图像,这是组织病理学中熟知的视角。更短的采集时间和断层深度切片都降低了动态对比度对大块组织运动伪影的敏感性,并简化了后处理中的校正。动态对比度使显微FD-OCT成为用于未染色组织组织学分析的有前途的工具。