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在实际应用场景中使用便携式仪器测量瞳孔对光反射。

Measuring the Pupillary Light Reflex Using Portable Instruments in Applied Settings.

作者信息

Gray Nicola S, Price Menna, Pink Jennifer, O'Connor Chris, Antunes Ana, Snowden Robert J

机构信息

Department of Psychology, Swansea University, Swansea SA2 8PP, UK.

Swansea Bay University Health Board, Bridgend CF31 4LN, UK.

出版信息

Vision (Basel). 2024 Oct 1;8(4):60. doi: 10.3390/vision8040060.

Abstract

The early components of the pupillary light reflex (PLR) are governed by the parasympathetic nervous system. The use of cheap, portable pupillometry devices may allow for the testing of parasympathetic-system health in field settings. We examined the reliability of two portable instruments for measuring the PLR and their sensitivity to individual differences known to modulate the PLR. Parameters of the PLR were measured in a community sample ( = 108) in a variety of field settings. Measurements were taken using a commercial pupillometer (NeuroLight, IDMED) and an iPhone using the Reflex Pro PLR analyser (Brightlamp). The parameters of baseline pupil diameter, constriction latency, amplitude and relative amplitude of constriction, and constriction velocity were measured. Individual differences related to age, levels of anxiety, and post-traumatic stress disorder (PTSD) symptomology were assessed. Some measures could not be attained using the iPhone under these field conditions. The reliability of the measures was high, save for the measurement of contraction latency which was particularly unreliable for the iPhone system. The parameters of the PLR showed the same internal relationships as those established in laboratory-based measurements. Age was negatively correlated with all the reliable PLR parameters for both systems. Effects of anxiety and PTSD symptomology were also apparent. The study demonstrated that a hand-held portable infrared pupillometer can be used successfully to measure the PLR parameters under field settings and can be used to examine individual differences. This may allow these devices to be used in workplaces, sports fields, roadsides, etc., to examine parasympathetic activity where needed.

摘要

瞳孔对光反射(PLR)的早期组成部分受副交感神经系统控制。使用廉价、便携的瞳孔测量设备可能有助于在现场环境中检测副交感神经系统的健康状况。我们研究了两种用于测量PLR的便携式仪器的可靠性及其对已知可调节PLR的个体差异的敏感性。在各种现场环境中,对一个社区样本(n = 108)的PLR参数进行了测量。使用商用瞳孔计(NeuroLight,IDMED)和配备Reflex Pro PLR分析仪(Brightlamp)的iPhone进行测量。测量了基线瞳孔直径、收缩潜伏期、收缩幅度和相对幅度以及收缩速度等参数。评估了与年龄、焦虑水平和创伤后应激障碍(PTSD)症状相关的个体差异。在这些现场条件下,使用iPhone无法获得某些测量结果。除收缩潜伏期的测量外,其他测量的可靠性较高,而收缩潜伏期的测量对于iPhone系统尤其不可靠。PLR的参数显示出与基于实验室测量所建立的参数相同的内部关系。年龄与两个系统所有可靠的PLR参数均呈负相关。焦虑和PTSD症状的影响也很明显。该研究表明,手持式便携式红外瞳孔计可成功用于在现场环境中测量PLR参数,并可用于检查个体差异。这可能使这些设备能够在工作场所、运动场、路边等环境中,在需要时用于检测副交感神经活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de5f/11503361/75b66b71702b/vision-08-00060-g001.jpg

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