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使用频率标记快速绘制多焦点瞳孔反应场(mPRF)的方法。

Method to Quickly Map Multifocal Pupillary Response Fields (mPRF) Using Frequency Tagging.

作者信息

Lorenceau Jean, Ajasse Suzon, Barbet Raphael, Boucart Muriel, Chavane Frédéric, Lamirel Cédric, Legras Richard, Matonti Frédéric, Rateaux Maxence, Rouland Jean-François, Sahel José-Alain, Trinquet Laure, Wexler Mark, Vignal-Clermont Catherine

机构信息

Integrative Neuroscience and Cognition Center, UMR8002, Université Paris Cité, 75006 Paris, France.

Streetlab, 75012 Paris, France.

出版信息

Vision (Basel). 2024 Apr 9;8(2):17. doi: 10.3390/vision8020017.

Abstract

We present a method for mapping multifocal Pupillary Response Fields in a short amount of time using a visual stimulus covering 40° of the visual angle divided into nine contiguous sectors simultaneously modulated in luminance at specific, incommensurate, temporal frequencies. We test this multifocal Pupillary Frequency Tagging (mPFT) approach with young healthy participants (N = 36) and show that the spectral power of the sustained pupillary response elicited by 45 s of fixation of this multipartite stimulus reflects the relative contribution of each sector/frequency to the overall pupillary response. We further analyze the phase lag for each temporal frequency as well as several global features related to pupil state. Test/retest performed on a subset of participants indicates good repeatability. We also investigate the existence of structural (RNFL)/functional (mPFT) relationships. We then summarize the results of clinical studies conducted with mPFT on patients with neuropathies and retinopathies and show that the features derived from pupillary signal analyses, the distribution of spectral power in particular, are homologous to disease characteristics and allow for sorting patients from healthy participants with excellent sensitivity and specificity. This method thus appears as a convenient, objective, and fast tool for assessing the integrity of retino-pupillary circuits as well as idiosyncrasies and permits to objectively assess and follow-up retinopathies or neuropathies in a short amount of time.

摘要

我们提出了一种方法,可在短时间内绘制多焦点瞳孔反应场,该方法使用一种视觉刺激,其覆盖40°视角,分为九个连续扇区,同时以特定的、互质的时间频率进行亮度调制。我们用年轻健康参与者(N = 36)测试了这种多焦点瞳孔频率标记(mPFT)方法,结果表明,对这种多部分刺激进行45秒注视所引发的持续性瞳孔反应的频谱功率反映了每个扇区/频率对整体瞳孔反应的相对贡献。我们进一步分析了每个时间频率的相位滞后以及与瞳孔状态相关的几个全局特征。对一部分参与者进行的重测显示出良好的重复性。我们还研究了结构(视网膜神经纤维层)/功能(mPFT)关系的存在情况。然后,我们总结了用mPFT对神经病和视网膜病患者进行临床研究的结果,结果表明,从瞳孔信号分析得出的特征,尤其是频谱功率的分布,与疾病特征同源,能够以极高的灵敏度和特异性将患者与健康参与者区分开来。因此,这种方法似乎是一种方便、客观且快速的工具,可用于评估视网膜 - 瞳孔回路的完整性以及个体特质,并能在短时间内客观地评估和随访视网膜病或神经病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79db/11036301/2aa60d991e6b/vision-08-00017-g001.jpg

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