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Spatio-temporal filtering of thermal video sequences for heart rate estimation

机译:用于心率估计的热视频序列的时空滤波

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In this paper, a novel method for non-contact measurement of heart rate using thermal imaging was proposed. Thermal videos were recorded from subjects' faces. The measurements are performed on three different areas: the whole face, the upper half of the face and the supraorbital region. A tracker was used to track these regions to make the algorithm invulnerable to the subject's motion. After tracking, the videos were spatially filtered using a full Laplacian pyramid decomposition to increase the signal to noise ratio; next, the video frames were successively temporally filtered using an ideal bandpass filter for extracting the thermal variations caused by blood circulation. Finally, the heart rate was calculated by using two methods including zero crossing and Fast Fourier Transform. For evaluating the results, the complement of absolute normalized difference (CAND) index was used which was introduced by Pavlidis. This index was 99.42% in the best case and 92.472% in average for 22 subjects. These results showed a growth in CAND index in comparison with previous work. Zerocrossing outperformed FFT because of the nonstationary nature of thermal signals. Another benefit of our method is that, the videos are taken from the face unlike most of the studies that take it from the neck and Carotid. Neck and carotid are less accessible than faces. Finally, the optimum ROI for estimating the heart rate from face was identified. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的热成像非接触式心率测量方法。从被摄对象的面部记录热敏录像。测量是在三个不同的区域进行的:整个面部,面部的上半部分和眶上区域。使用跟踪器跟踪这些区域,以使算法对对象的运动无害。跟踪之后,使用完整的拉普拉斯金字塔分解对视频进行空间滤波,以提高信噪比;接下来,使用理想的带通滤波器对视频帧进行连续的时间滤波,以提取由血液循环引起的热变化。最后,通过使用两种方法来计算心率,包括过零和快速傅立叶变换。为了评估结果,使用了Pavlidis引入的绝对归一化差异(CAND)指数的补码。最好的情况下,该指数为99.42%,22名受试者的平均指数为92.472%。这些结果表明,与以前的工作相比,CAND指数有所增加。由于热信号的非平稳特性,过零性能优于FFT。我们方法的另一个好处是,视频是从面部拍摄的,这与大多数从脖子和颈动脉获取视频的研究不同。颈部和颈动脉比面部更难接近。最后,确定了从面部估计心率的最佳ROI。 (C)2016 Elsevier Ltd.保留所有权利。

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