Domdei Niklas, Domdei Lennart, Reiniger Jenny L, Linden Michael, Holz Frank G, Roorda Austin, Harmening Wolf M
Department of Ophthalmology, University of Bonn, Germany.
Equal contribution first authors.
Biomed Opt Express. 2017 Dec 8;9(1):157-172. doi: 10.1364/BOE.9.000157. eCollection 2018 Jan 1.
Due to the enormous dynamic range of human photoreceptors in response to light, studying their visual function in the intact retina challenges the stimulation hardware, specifically with regard to the displayable luminance contrast. The adaptive optics scanning laser ophthalmoscope (AOSLO) is an optical platform that focuses light to extremely small retinal extents, approaching the size of single photoreceptor cells. However, the current light modulation techniques produce spurious visible backgrounds which fundamentally limit experimental options. To remove unwanted background light and to improve contrast for high dynamic range visual stimulation in an AOSLO, we cascaded two commercial fiber-coupled acousto-optic modulators (AOMs) and measured their combined optical contrast. By compensating for zero-point differences in the individual AOMs, we demonstrate a multiplicative extinction ratio in the cascade that was in accordance with the extinction ratios of both single AOMs. When latency differences in the AOM response functions were individually corrected, single switch events as short as 50 ns with radiant power contrasts up to 1:10 were achieved. This is the highest visual contrast reported for any display system so far. We show psychophysically that this contrast ratio is sufficient to stimulate single foveal photoreceptor cells with small and bright enough visible targets that do not contain a detectable background. Background-free stimulation will enable photoreceptor testing with custom adaptation lights. Furthermore, a larger dynamic range in displayable light levels can drive photoreceptor responses in cones as well as in rods.
由于人类光感受器对光的响应具有巨大的动态范围,在完整视网膜中研究其视觉功能对刺激硬件提出了挑战,特别是在可显示的亮度对比度方面。自适应光学扫描激光检眼镜(AOSLO)是一种光学平台,可将光聚焦到极小的视网膜范围,接近单个光感受器细胞的大小。然而,当前的光调制技术会产生虚假的可见背景,这从根本上限制了实验选择。为了去除不需要的背景光并提高AOSLO中高动态范围视觉刺激的对比度,我们串联了两个商用光纤耦合声光调制器(AOM)并测量了它们的组合光学对比度。通过补偿各个AOM中的零点差异,我们证明了级联中的乘法消光比与单个AOM的消光比一致。当分别校正AOM响应函数中的延迟差异时,实现了短至50 ns的单开关事件,辐射功率对比度高达1:10。这是迄今为止任何显示系统所报道的最高视觉对比度。我们通过心理物理学方法表明,这种对比度足以用足够小且明亮的可见目标刺激单个中央凹光感受器细胞,这些目标不包含可检测到的背景。无背景刺激将能够使用定制的适应光对光感受器进行测试。此外,可显示光水平的更大动态范围可以驱动视锥细胞和视杆细胞中的光感受器反应。