Sousa Ana Isabel, Marques-Neves Carlos, Vieira Pedro Manuel
Department of Physics, NOVA School of Science and Technology, NOVA University of Lisbon, 2829-516 Caparica, Portugal.
Faculty of Medicine, University of Lisbon, 1649-028 Lisbon, Portugal.
Bioengineering (Basel). 2024 Mar 9;11(3):267. doi: 10.3390/bioengineering11030267.
Chromatic Pupillometry, used to assess Pupil Light Reflex (PLR) to a coloured light stimulus, has regained interest since the discovery of melanopsin in the intrinsically photosensitive Retinal Ganglion Cells (ipRGCs). This technique has shown the potential to be used as a screening tool for neuro-ophthalmological diseases; however, most of the pupillometers available are expensive and not portable, making it harder for them to be used as a widespread screening tool. In this study, we developed a smartphone-based system for chromatic pupillometry that allows targeted stimulation of the ipRGCs. Using a smartphone, this system is portable and accessible and takes advantage of the location of the ipRGCs in the perifovea. The system incorporates a 3D-printed support for the smartphone and an illumination system. Preliminary tests were carried out on a single individual and then validated on eleven healthy individuals with two different LED intensities. The average Post-Illumination Pupil Light Response 6 s after the stimuli offsets (PIPR-6s) showed a difference between the blue and the red stimuli of 9.5% for both intensities, which aligns with the studies using full-field stimulators. The results validated this system for a targeted stimulation of the ipRGCs for chromatic pupillometry, with the potential to be a portable and accessible screening tool for neuro-ophthalmological diseases.
彩色瞳孔测量法用于评估对彩色光刺激的瞳孔光反射(PLR),自在内源性光敏视网膜神经节细胞(ipRGCs)中发现黑视蛋白以来,它重新引起了人们的关注。这项技术已显示出用作神经眼科疾病筛查工具的潜力;然而,现有的大多数瞳孔测量仪价格昂贵且不可携带,这使得它们难以用作广泛的筛查工具。在本研究中,我们开发了一种基于智能手机的彩色瞳孔测量系统,该系统能够有针对性地刺激ipRGCs。借助智能手机,该系统便于携带且易于使用,并利用了ipRGCs在中央凹周围的位置。该系统包括一个用于智能手机的3D打印支架和一个照明系统。首先对一名个体进行了初步测试,然后在11名健康个体上使用两种不同的LED强度进行了验证。刺激停止6秒后的平均照明后瞳孔光反应(PIPR - 6s)显示,两种强度下蓝色和红色刺激之间的差异均为9.5%,这与使用全视野刺激器的研究结果一致。结果验证了该系统可用于有针对性地刺激ipRGCs进行彩色瞳孔测量,有潜力成为一种便于携带且易于使用的神经眼科疾病筛查工具。