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A wearable infrared videopupillography with multi-stimulation of consistent illumination for binocular pupil response

机译:可穿戴式红外视频瞳孔成像,可对双眼瞳孔反应进行多次刺激一致照明

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摘要

The pupil response to light can reflect various kinds of diseases which are related to physiological health. Pupillary abnormalities may be influenced on people by autonomic neuropathy, glaucoma, diabetes, genetic diseases, and high myopia. In the early stage of neuropathy, it is often asymptomatic and difficulty detectable by ophthalmologists. In addition, the position of injured nerve can lead to unsynchronized pupil response for human eyes. In our study, we design the pupilometer to measure the binocular pupil response simultaneously. It uses the different wavelength of LEDs such as white, red, green and blue light to stimulate the pupil and record the process. Therefore, the pupilometer mainly contains two systems. One is the image acquisition system, it use the two cameras modules with the same external triggered signal to capture the images of the pupil simultaneously. The other one is the illumination system. It use the boost converter ICs and LED driver ICs to supply the constant current for LED to maintain the consistent luminance in each experiments for reduced experimental error. Furthermore, the four infrared LEDs are arranged nearby the stimulating LEDs to illuminate eyes and increase contrast of image for image processing. In our design, we success to implement the function of synchronized image acquisition with the sample speed in 30 fps and the stable illumination system for precise measurement of experiment.
机译:瞳孔对光的反应可以反映与生理健康有关的各种疾病。自主神经病变,青光眼,糖尿病,遗传病和高度近视可能会影响瞳孔异常。在神经病的早期,它通常是无症状的,并且眼科医生很难发现。另外,受伤的神经的位置可能导致人眼瞳孔反应不同步。在我们的研究中,我们设计了瞳孔计以同时测量双眼瞳孔反应。它使用不同波长的LED,例如白,红,绿和蓝光来刺激瞳孔并记录过程。因此,瞳孔计主要包含两个系统。一种是图像采集系统,它使用具有相同外部触发信号的两个摄像头模块同时捕获瞳孔的图像。另一个是照明系统。它使用升压转换器IC和LED驱动器IC为LED提供恒定电流,以在每次实验中保持一致的亮度,以减少实验误差。此外,四个红外LED布置在刺激LED附近,以照亮眼睛并增加图像的对比度以进行图像处理。在我们的设计中,我们成功实现了以30 fps的采样速度和稳定的照明系统实现同步图像采集的功能,从而可以精确地测量实验。

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