Cense Barry, Gao Weihua, Brown Jeffrey M, Jones Steven M, Jonnal Ravi S, Mujat Mircea, Park B Hyle, de Boer Johannes F, Miller Donald T
Indiana University, School of Optometry, Bloomington IN 47405, USA.
Opt Express. 2009 Nov 23;17(24):21634-51. doi: 10.1364/OE.17.021634.
Various layers of the retina are well known to alter the polarization state of light. Such changes in polarization may be a sensitive indicator of tissue structure and function, and as such have gained increased clinical attention. Here we demonstrate a polarization-sensitive optical coherence tomography (PS-OCT) system that incorporates adaptive optics (AO) in the sample arm and a single line scan camera in the detection arm. We quantify the benefit of AO for PS-OCT in terms of signal-to-noise, lateral resolution, and speckle size. Double pass phase retardation per unit depth values ranging from 0.25 degrees/microm to 0.65 degrees/microm were found in the birefringent nerve fiber layer at 6 degrees eccentricity, superior to the fovea, with the highest values being noticeably higher than previously reported with PS-OCT around the optic nerve head. Moreover, fast axis orientation and degree of polarization uniformity measurements made with AO-PS-OCT demonstrate polarization scrambling in the retinal pigment epithelium at the highest resolution reported to date.
视网膜的各层结构改变光的偏振态是众所周知的。这种偏振变化可能是组织结构和功能的敏感指标,因此受到了越来越多的临床关注。在此,我们展示了一种偏振敏感光学相干断层扫描(PS-OCT)系统,该系统在样品臂中集成了自适应光学(AO),在检测臂中采用了单线扫描相机。我们从信噪比、横向分辨率和散斑大小方面量化了AO对PS-OCT的益处。在离中心凹6度、比中心凹更靠上的位置,在双折射神经纤维层中发现单位深度的双程相位延迟值范围为0.25度/微米至0.65度/微米,其最高值明显高于之前PS-OCT在视神经乳头周围所报告的值。此外,用AO-PS-OCT进行的快轴方向和偏振均匀度测量表明,在迄今报道的最高分辨率下,视网膜色素上皮存在偏振扰频现象。