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通过动态光色素密度测定法表征人类视锥光感受器镶嵌图

Characterizing the Human Cone Photoreceptor Mosaic via Dynamic Photopigment Densitometry.

作者信息

Sabesan Ramkumar, Hofer Heidi, Roorda Austin

机构信息

School of Optometry, University of California, Berkeley, California, United States of America.

College of Optometry, University of Houston, Houston, Texas, United States of America.

出版信息

PLoS One. 2015 Dec 14;10(12):e0144891. doi: 10.1371/journal.pone.0144891. eCollection 2015.

Abstract

Densitometry is a powerful tool for the biophysical assessment of the retina. Until recently, this was restricted to bulk spatial scales in living humans. The application of adaptive optics (AO) to the conventional fundus camera and scanning laser ophthalmoscope (SLO) has begun to translate these studies to cellular scales. Here, we employ an AOSLO to perform dynamic photopigment densitometry in order to characterize the optical properties and spectral types of the human cone photoreceptor mosaic. Cone-resolved estimates of optical density and photosensitivity agree well with bulk estimates, although show smaller variability than previously reported. Photopigment kinetics of individual cones derived from their selective bleaching allowed efficient mapping of cone sub-types in human retina. Estimated uncertainty in identifying a cone as long vs middle wavelength was less than 5%, and the total time taken per subject ranged from 3-9 hours. Short wavelength cones were delineated in every subject with high fidelity. The lack of a third cone-type was confirmed in a protanopic subject. In one color normal subject, cone assignments showed 91% correspondence against a previously reported cone-typing method from more than a decade ago. Combined with cone-targeted stimulation, this brings us closer in studying the visual percept arising from a specific cone type and its implication for color vision circuitry.

摘要

密度测定法是用于视网膜生物物理评估的强大工具。直到最近,这还仅限于对活体人类的整体空间尺度进行研究。将自适应光学(AO)应用于传统眼底相机和扫描激光检眼镜(SLO)已开始将这些研究拓展到细胞尺度。在此,我们使用自适应光学扫描激光检眼镜(AOSLO)进行动态光色素密度测定,以表征人视锥光感受器镶嵌的光学特性和光谱类型。视锥分辨的光密度和光敏度估计值与整体估计值吻合良好,尽管其变异性比先前报道的要小。通过对单个视锥进行选择性漂白得出的光色素动力学,能够有效地绘制出人视网膜中视锥亚型图谱。将一个视锥鉴定为长波长或中波长时的估计不确定性小于5%,每位受试者所需的总时间为3至9小时。在每个受试者中都能以高保真度描绘出短波长视锥。在一名红绿色盲受试者中证实不存在第三种视锥类型。在一名色觉正常的受试者中,视锥分类与十多年前报道的一种视锥分类方法的对应率为91%。结合对视锥的靶向刺激,这使我们在研究源自特定视锥类型的视觉感知及其对色觉回路的影响方面又迈进了一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d954/4684380/92379d51f822/pone.0144891.g001.jpg

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