Huang X R
Bascom Palmer Eye Institute, University of Miami School of Medicine, Miami, FL 33136, USA.
Bull Soc Belge Ophtalmol. 2006(302):71-88.
Recently developed optical techniques provide quantitative structural measurements of the retinal nerve fiber layer (RNFL). A complete interpretation of these measurements requires understanding of the optical properties of the RNFL. This paper gives a review of the polarization properties and relevant anatomy of the ocular tissues, followed by a thorough discussion of the optical properties of the RNFL. The RNFL reflectance arises from light scattering from cylinders. Microtubules are a major component contributing to the reflectance. The RNFL reflectance exhibits weak intrinsic diattenuation and well preserves polarization. RNFL birefringence varies across the retina; the variation suggests that birefringence depends on the ultrastructure of the nerve fiber bundles, which offers hope that measurement of RNFL birefringence may be able to provide early detection of subcellular changes in glaucoma.
最近开发的光学技术可对视网膜神经纤维层(RNFL)进行定量结构测量。要完整解读这些测量结果,需要了解RNFL的光学特性。本文综述了眼组织的偏振特性及相关解剖结构,随后深入讨论了RNFL的光学特性。RNFL的反射率源于圆柱体的光散射。微管是导致反射率的主要成分。RNFL反射率表现出微弱的固有二向色性,并能很好地保持偏振。RNFL双折射在整个视网膜上有所不同;这种变化表明双折射取决于神经纤维束的超微结构,这为通过测量RNFL双折射来早期检测青光眼的亚细胞变化带来了希望。