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Infrared Video Pupillography Coupled with Smart Phone LED for Measurement of Pupillary Light Reflex

机译:红外视频眼线描记术结合智能手机LED测量瞳孔光反射

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摘要

Clinical assessment of pupil appearance and pupillary light reflex (PLR) may inform us the integrity of the autonomic nervous system (ANS). Current clinical pupil assessment is limited to qualitative examination, and relies on clinical judgment. Infrared (IR) video pupillography combined with image processing software offer the possibility of recording quantitative parameters. In this study we describe an IR video pupillography set-up intended for human and animal testing. As part of the validation, resting pupil diameter was measured in human subjects using the NeurOptics (Irvine, CA, USA) pupillometer, to compare against that measured by our IR video pupillography set–up, and PLR was assessed in guinea pigs. The set-up consisted of a smart phone with a light emitting diode (LED) strobe light (0.2 s light ON, 5 s light OFF cycles) as the stimulus and an IR camera to record pupil kinetics. The consensual response was recorded, and the video recording was processed using a custom MATLAB program. The parameters assessed were resting pupil diameter (D1), constriction velocity (CV), percentage constriction ratio, re-dilation velocity (DV) and percentage re-dilation ratio. We report that the IR video pupillography set-up provided comparable results as the NeurOptics pupillometer in human subjects, and was able to detect larger resting pupil size in juvenile male guinea pigs compared to juvenile female guinea pigs. At juvenile age, male guinea pigs also had stronger pupil kinetics for both pupil constriction and dilation. Furthermore, our IR video pupillography set-up was able to detect an age-specific increase in pupil diameter (female guinea pigs only) and reduction in CV (male and female guinea pigs) as animals developed from juvenile (3 months) to adult age (7 months). This technique demonstrated accurate and quantitative assessment of pupil parameters, and may provide the foundation for further development of an integrated system useful for clinical applications.
机译:对瞳孔外观和瞳孔光反射(PLR)的临床评估可能会告诉我们自主神经系统(ANS)的完整性。当前的临床学生评估仅限于定性检查,并且依赖于临床判断。红外(IR)视频瞳孔照相术与图像处理软件的结合提供了记录定量参数的可能性。在这项研究中,我们描述了用于人和动物测试的红外视频瞳孔造影设置。作为验证的一部分,使用NeurOptics (美国加利福尼亚州尔湾市)的瞳孔计测量了人类受试者的静息瞳孔直径,并将其与我们的红外视频瞳孔图设置和PLR进行了比较。在豚鼠中进行了评估。该设置包括一个智能手机,该手机具有作为刺激的发光二极管(LED)频闪灯(0.2 s点亮,5 s熄灭周期)和用于记录瞳孔动力学的红外摄像机。记录双方同意的响应,并使用自定义MATLAB程序处理视频记录。评估的参数是静息瞳孔直径(D1),收缩速度(CV),收缩率百分比,再扩张速度(DV)和再扩张百分比。我们报告说,红外视频瞳孔照相设置在人类受试者中可提供与NeurOptics 瞳孔计可比的结果,并且能够检测到幼年雄性豚鼠比幼年雌性豚鼠更大的静止瞳孔大小。在幼年时,雄性豚鼠对于瞳孔收缩和扩张均具有较强的瞳孔动力学。此外,从幼年(3个月)到成年的动物,我们的红外视频瞳孔成像设置能够检测出特定年龄的瞳孔直径增加(仅雌性豚鼠)和CV减少(雄性和雌性豚鼠)。 (7个月)。该技术展示了对瞳孔参数的准确和定量评估,并可能为进一步开发可用于临床应用的集成系统提供基础。

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