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Stable Contactless Sensing of Vital Signs Using RGB-Thermal Image Fusion System with Facial Tracking for Infection Screening

机译:使用具有面部跟踪功能的RGB热图像融合系统对生命体征进行稳定的非接触式感测

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Infrared thermography (IRT) has been used to screen febrile passengers in international airports for over a decade. However, fever-based infection screening using IRT suffered from low sensitivity because measurements can be affected by ambient temperature, humidity, etc. In our previous study, we proposed an RGB-thermal image fusion system to measure vital signs i.e., the RGB camera detects tiny changes in color from facial skin, associated with blood flow, to estimate heart rate, and IRT senses temperature changes around the nasal area, caused by respiration, to measure respiratory rate). The inclusion of heart and respiratory rates lead to increased screening accuracy. In the present study, to promote the widespread use of our system in real-world settings, a face detection and tracking method was developed and implemented into the system, thereby enabling the accurate and stable measurement of vital signs. We assessed heart and respiratory rate estimation via an RGB-thermal image fusion system using Bland-Altman plots and statistical analysis.
机译:红外热成像(IRT)一直用于筛查国际机场的发热乘客,已有十多年的历史了。但是,使用IRT进行的发烧感染筛查的灵敏度较低,因为测量值可能会受到环境温度,湿度等的影响。在我们先前的研究中,我们提出了RGB热图像融合系统来测量生命体征,即RGB摄像机可以检测面部皮肤颜色的微小变化(与血液流动相关)可估算心率,IRT可以感应到由呼吸引起的鼻区域周围的温度变化,以测量呼吸频率)。纳入心脏和呼吸频率可提高筛查准确性。在本研究中,为了促进我们的系统在实际环境中的广泛使用,开发了一种面部检测和跟踪方法并将其实施到系统中,从而能够准确,稳定地测量生命体征。我们通过使用Bland-Altman图和统计分析的RGB热图像融合系统评估了心脏和呼吸频率的估计。

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