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双光子视觉刺激亮度的测定方法。

Method for the determination of the luminance of two-photon vision stimuli.

作者信息

Kaczkoś Oliwia, Zielińska Agnieszka, Pniewski Jacek, Wojtkowski Maciej, Komar Katarzyna

机构信息

International Centre for Translational Eye Research, Skierniewicka 10a, 01-230 Warsaw, Poland.

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

Biomed Opt Express. 2024 Sep 9;15(10):5818-5830. doi: 10.1364/BOE.525180. eCollection 2024 Oct 1.

Abstract

Two-photon vision is a new and developing field in vision science. The phenomenon is based on visual perception of pulsed infrared lasers (800-1300 nm) due to the isomerization of visual pigments caused by two-photon absorption, with color perception corresponding to a wavelength about one-half of the stimulating wavelength in the near-infrared spectral range. Future applications of this effect, both in medical diagnostics and in virtual/augmented reality (VR/AR), require the ability to determine the luminance of the two-photon stimuli. However, the luminous efficiency function () outside of the visible range is unknown, requiring a non-standard approach to quantifying the luminance of two-photon stimuli. This study proposes a brightness adjustment method to determine the subjective luminance of two-photon infrared stimuli using photometric units. The repeatability of the proposed method with the background on was approximately equal to 407 td, more than twice as good as with the background off. In this report, we present the relationship between the luminance of two-photon stimuli and a physical quantity proposed for the first time: . This relationship enables the prediction of stimulus luminance that could achieve nearly 670 cd/m within the safe range of laser power for the eye.

摘要

双光子视觉是视觉科学中一个新兴的发展领域。该现象基于对脉冲红外激光(800 - 1300纳米)的视觉感知,这是由于双光子吸收导致视觉色素异构化,颜色感知对应于近红外光谱范围内刺激波长约一半的波长。这种效应在医学诊断以及虚拟现实/增强现实(VR/AR)中的未来应用,需要具备确定双光子刺激亮度的能力。然而,可见范围之外的发光效率函数()是未知的,这就需要一种非标准方法来量化双光子刺激的亮度。本研究提出一种亮度调整方法,使用光度单位来确定双光子红外刺激的主观亮度。所提方法在有背景时的重复性约为407尼特,比无背景时好两倍多。在本报告中,我们首次展示了双光子刺激亮度与所提出的一个物理量之间的关系:。这种关系能够预测在眼睛激光功率安全范围内可实现近670坎德拉每平方米的刺激亮度。

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