Mujat Mircea, Sampani Konstantina, Patel Ankit H, Zambrano Ronald, Sun Jennifer K, Wollstein Gadi, Ferguson R Daniel, Schuman Joel S, Iftimia Nicusor
Physical Sciences, Inc., 20 New England Business Center, Andover, MA 01810, USA.
Beetham Eye Institute, Joslin Diabetes Center, Boston, MA 02115, USA.
Diagnostics (Basel). 2024 Jan 15;14(2):184. doi: 10.3390/diagnostics14020184.
The cellular-level visualization of retinal microstructures such as blood vessel wall components, not available with other imaging modalities, is provided with unprecedented details by dark-field imaging configurations; however, the interpretation of such images alone is sometimes difficult since multiple structural disturbances may be present in the same time. Particularly in eyes with retinal pathology, microstructures may appear in high-resolution retinal images with a wide range of sizes, sharpnesses, and brightnesses. In this paper we show that motion contrast and phase gradient imaging modalities, as well as the simultaneous acquisition of depth-resolved optical coherence tomography (OCT) images, provide additional insight to help understand the retinal neural and vascular structures seen in dark-field images and may enable improved diagnostic and treatment plans.
暗场成像配置能够以前所未有的细节呈现视网膜微观结构,如血管壁成分等,而其他成像方式则无法实现细胞水平的可视化;然而,仅对这些图像进行解读有时会很困难,因为同一时间可能存在多种结构紊乱。特别是在患有视网膜病变的眼睛中,微观结构可能会以各种大小、清晰度和亮度出现在高分辨率视网膜图像中。在本文中,我们表明运动对比度和相位梯度成像方式,以及深度分辨光学相干断层扫描(OCT)图像的同步采集,能提供更多信息,有助于理解在暗场图像中看到的视网膜神经和血管结构,并可能有助于制定更好的诊断和治疗方案。