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用于视觉科学应用的结构光增强内视刺激

Structured light enhanced entoptic stimuli for vision science applications.

作者信息

Pushin Dmitry A, Cory David G, Kapahi Connor, Kulmaganbetov Mukhit, Mungalsingh Melanie, Silva Andrew E, Singh Taranjit, Thompson Benjamin, Sarenac Dusan

机构信息

Department of Physics, University of Waterloo, Waterloo, ON, Canada.

Centre for Eye and Vision Research, Hong Kong, Hong Kong SAR, China.

出版信息

Front Neurosci. 2023 Jul 25;17:1232532. doi: 10.3389/fnins.2023.1232532. eCollection 2023.

Abstract

The dichroic macular pigment in the Henle fiber layer in the fovea enables humans to perceive entoptic phenomena when viewing polarized blue light. In the standard case of linearly polarized stimuli, a faint bowtie-like pattern known as the Haidinger's brush appears in the central point of fixation. As the shape and clarity of the perceived signal is directly related to the health of the macula, Haidinger's brush has been used as a diagnostic marker in studies of early stage macular degeneration and central field visual dysfunction. However, due to the weak nature of the perceived signal the perception of the Haidinger's brush has not been integrated with modern clinical methods. Recent attempts have been made to increase the strength of the perceived signal by employing structured light with spatially varying polarization profiles. Here we review the advancements with the structured light stimuli and describe the current challenges and future prospects.

摘要

中央凹处Henle纤维层中的二向色性黄斑色素使人类在观看偏振蓝光时能够感知内视现象。在线性偏振刺激的标准情况下,在注视中心点会出现一种微弱的领结状图案,称为海丁格刷。由于所感知信号的形状和清晰度与黄斑的健康直接相关,海丁格刷已被用作早期黄斑变性和中心视野视觉功能障碍研究中的诊断标志物。然而,由于所感知信号较弱,海丁格刷的感知尚未与现代临床方法相结合。最近有人尝试通过采用具有空间变化偏振分布的结构光来增强所感知信号的强度。在此,我们回顾了结构光刺激方面的进展,并描述了当前的挑战和未来的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fa0/10407105/eb47a9282086/fnins-17-1232532-g0001.jpg

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