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首页> 外文期刊>JAMA facial plastic surgery >Infrared-based blink-detecting glasses for facial pacing: Toward a bionic blink
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Infrared-based blink-detecting glasses for facial pacing: Toward a bionic blink

机译:基于红外的眨眼检测眼镜,用于面部起搏:迈向仿生眨眼

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IMPORTANCE Facial paralysis remains one of the most challenging conditions to effectively manage, often causing life-altering deficits in both function and appearance. Facial rehabilitation via pacing and robotic technology has great yet unmet potential. A critical first step toward reanimating symmetrical facial movement in cases of unilateral paralysis is the detection of healthymovement to use as a trigger for stimulated movement. OBJECTIVE To test a blink detection system that can be attached to standard eyeglasses and used as part of a closed-loop facial pacing system. DESIGN, SETTING, AND PARTICIPANTS Standard safety glasseswere equipped with an infrared (IR) emitter-detector unit, oriented horizontally across the palpebral fissure, creating a monitored IR beam that became interrupted when the eyelids closed, and were tested in 24 healthy volunteers from a tertiary care facial nerve center community. MAIN OUTCOMES AND MEASURES Video-quantified blinkingwas compared with both IR sensor signal magnitude and rate of change in healthy participants with their gaze in repose, while they shifted their gaze from central to far-peripheral positions, and during the production of particular facial expressions. RESULTS Blink detection based on signal magnitude achieved 100% sensitivity in forward gaze but generated false detections on downward gaze. Calculations of peak rate of signal change (first derivative) typically distinguished blinks from gaze-related eyelid movements. During forward gaze, 87%of detected blink events were true positives, 11% were false positives, and 2%were false negatives. Of the 11% false positives, 6%were associated with partial eyelid closures. During gaze changes, false blink detection occurred 6%of the time during lateral eyemovements, 10% of the time during upward movements, 47%of the time during downward movements, and 6%of the time formovements from an upward or downward gaze back to the primary gaze. Facial expressions disrupted sensor output if they caused substantial squinting or shifted the glasses. CONCLUSIONS AND RELEVANCE Our blink detection system provides a reliable, noninvasive indication of eyelid closure using an invisible light beam passing in front of the eye. Future versions will aim to mitigate detection errors by using multiple IR emitter-detector units mounted on glasses, and alternative frame designs may reduce shifting of the sensors relative to the eye during facial movements.
机译:重要事项面瘫仍然是有效管理的最具挑战性的条件之一,常常导致功能和外观改变生命的缺陷。通过起搏和机器人技术进行面部修复具有巨大但尚未得到满足的潜力。在单侧瘫痪的情况下恢复对称面部运动的关键的第一步是检测健康运动以用作刺激运动的触发因素。目的测试眨眼检测系统,该系统可以安装在标准眼镜上并用作闭环面部起搏系统的一部分。设计,设置和参与者标准安全眼镜配备有红外(IR)发射器-检测器单元,其水平跨过睑裂裂开,产生了一个受监控的IR光束,当眼睑闭合时该光束被打断,并在24名健康志愿者中进行了测试。三级护理面神经中心社区。主要结果和措施将健康参与者保持凝视的视频量化眨眼与IR传感器信号幅度和变化率进行比较,同时将凝视从中心位置转移到外围位置,并在产生特定面部表情时进行观察。结果基于信号幅度的眨眼检测在前视时达到了100%的灵敏度,但在下视时却产生了错误的检测。信号变化峰值速率(一阶导数)的计算通常可将眨眼与与视线相关的眼睑运动区分开。在向前凝视期间,检测到的眨眼事件中有87%为真阳性,11%为假阳性,2%为假阴性。在11%的假阳性中,有6%与部分眼睑闭合有关。在凝视变化期间,在侧向眼动中有6%的时间发生了虚假眨眼检测,在向上运动中有10%的时间发生虚假眨眼,在向下运动中有47%的时间发生虚假眨眼,从向上或向下凝视到返回到主要的目光。如果面部表情引起斜视或眼镜移位,则它们会干扰传感器的输出。结论和相关性我们的眨眼检测系统使用通过眼前的不可见光束,提供可靠,无创的眼睑闭合指示。未来的版本旨在通过使用安装在眼镜上的多个红外发射器-检测器来减轻检测错误,并且其他框架设计可以减少面部运动期间传感器相对于眼睛的偏移。

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