Pallikaris Aristofanis, Williams David R, Hofer Heidi
Department of Biomedical Engineering, University of Rochester, Rochester, New York 14672, USA.
Invest Ophthalmol Vis Sci. 2003 Oct;44(10):4580-92. doi: 10.1167/iovs.03-0094.
Individual cones were imaged in the living human eye with the Rochester adaptive optics ophthalmoscope. In all eyes, there were large differences in the reflectance of different cones, even when all the photopigment was bleached. To help understand what produces this spatial variation, the investigators explored whether it is a static or a dynamic property of the cone mosaic.
Fully bleached cone images were acquired in three eyes with an adaptive optics system. Images were collected over a 10-minute period approximately every hour for 24 hours. The temporal variation in cone directionality was measured in one eye. Finally, the experimental data on the temporal variation of absorption were compared with findings in various models of reflectance.
Cone reflectance changes over time appear to be independent from cone to cone. These temporal changes are present in all three cone classes. The spatiotemporal variation in cone reflectance is not caused by the spatiotemporal variation in the optical axes of cones. This, along with the modeling results, suggest that changes in the reflectance affect the light that passes through photopigment in the receptors rather than the stray light, and that the changes are related to the outer segment-retinal pigment epithelium (RPE) interface.
The reflectance of individual cones is a dynamic property of the mosaic. Changes can be observed over periods of minutes as well as many hours. The cause of the variation is not known but may be related to the process of disc shedding in receptors.
使用罗切斯特自适应光学检眼镜对活体人眼的单个视锥细胞进行成像。在所有眼睛中,即使所有光色素都被漂白,不同视锥细胞的反射率仍存在很大差异。为了帮助理解产生这种空间变化的原因,研究人员探讨了这是视锥细胞镶嵌的静态特性还是动态特性。
使用自适应光学系统在三只眼睛中采集完全漂白的视锥细胞图像。在24小时内,大约每小时采集一次图像,持续10分钟。在一只眼睛中测量视锥细胞方向性的时间变化。最后,将吸收时间变化的实验数据与各种反射率模型的结果进行比较。
视锥细胞反射率随时间的变化似乎在不同视锥细胞之间是独立的。这些时间变化在所有三种视锥细胞类型中都存在。视锥细胞反射率的时空变化不是由视锥细胞光轴的时空变化引起的。这与建模结果一起表明,反射率的变化影响穿过受体中光色素的光,而不是杂散光,并且这些变化与外段 - 视网膜色素上皮(RPE)界面有关。
单个视锥细胞的反射率是镶嵌的动态特性。在几分钟以及数小时的时间段内都可以观察到变化。变化的原因尚不清楚,但可能与受体中的盘状小体脱落过程有关。