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Effects of frame rate and image resolution on pulse rate measured using multiple camera imaging photoplethysmography

机译:帧率和图像分辨率对使用多相机成像光体积描记法测量的脉搏率的影响

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Non-contact, imaging photoplethysmography uses cameras to facilitate measurements including pulse rate, pulse rate variability, respiration rate, and blood perfusion by measuring characteristic changes in light absorption at the skin's surface resulting from changes in blood volume in the superficial microvasculature. Several factors may affect the accuracy of the physiological measurement including imager frame rate, resolution, compression, lighting conditions, image background, participant skin tone, and participant motion. Before this method can gain wider use outside basic research settings, its constraints and capabilities must be well understood. Recently, we presented a novel approach utilizing a synchronized, nine-camera, semicircular array backed by measurement of an electrocardiogram and fingertip reflectance photoplethysmogram. Twenty-five individuals participated in six, five-minute, controlled head motion artifact trials in front of a black and dynamic color backdrop. Increasing the input channel space for blind source separation using the camera array was effective in mitigating error from head motion artifact. Herein we present the effects of lower frame rates at 60 and 30 (reduced from 120) frames per second and reduced image resolution at 329×246 pixels (one-quarter of the original 658×492 pixel resolution) using bilinear and zero-order downsampling. This is the first time these factors have been examined for a multiple imager array and align well with previous findings utilizing a single imager. Examining windowed pulse rates, there is little observable difference in mean absolute error or error distributions resulting from reduced frame rates or image resolution, thus lowering requirements for systems measuring pulse rate over sufficient length time windows.
机译:非接触式成像光体积描记法使用相机通过测量表层微脉管系统中血液量的变化而导致的皮肤表面光吸收特性的变化来促进包括脉搏频率,脉搏频率变异性,呼吸频率和血液灌注在内的测量。几个因素可能会影响生理测量的准确性,包括成像仪的帧频,分辨率,压缩率,照明条件,图像背景,参与者的肤色和参与者的运动。在此方法可以在基础研究设置之外广泛使用之前,必须充分了解其限制和功能。最近,我们提出了一种新颖的方法,该方法利用同步的九台照相机的半圆形阵列,并通过心电图和指尖反射光体积描记图的测量来支持。 25个人在黑色和动态彩色背景前参加了六分钟,五分钟,受控的头部运动伪影试验。使用摄像机阵列增加用于盲源分离的输入通道空间可有效减轻来自头部运动伪影的误差。在此,我们介绍了使用双线性和零阶下采样时每秒60和30(从120)帧降低的帧速率以及每秒329×246像素(原始658×492像素分辨率的四分之一)降低的图像分辨率的效果。 。这是首次针对多台成像器阵列检查这些因素,并与使用单台成像器的先前发现很好地吻合。检查开窗脉冲速率,由于降低的帧速率或图像分辨率而导致的平均绝对误差或误差分布几乎没有可观察到的差异,因此降低了在足够长的时间窗口内测量脉冲速率的系统的要求。

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