Takano Chihiro, Ohta Yuji
Graduate School of Humanities and Sciences, Ochanomizu University, Tokyo, Japan.
Med Eng Phys. 2007 Oct;29(8):853-7. doi: 10.1016/j.medengphy.2006.09.006. Epub 2006 Oct 30.
Using a time-lapse image acquired from a CCD camera, we developed a non-contact and non-invasive device, which could measure both the respiratory and pulse rate simultaneously. The time-lapse image of a part of the subject's skin was consecutively captured, and the changes in the average image brightness of the region of interest (ROI) were measured for 30s. The brightness data were processed by a series of operations of interpolation as follows a first-order derivative, a low pass filter of 2 Hz, and a sixth-order auto-regressive (AR) spectral analysis. Fourteen sound and healthy female subjects (22-27 years of age) participated in the experiments. Each subject was told to keep a relaxed seating posture with no physical restriction. At the same time, heart rate was measured by a pulse oximeter and respiratory rate was measured by a thermistor placed at the external naris. Using AR spectral analysis, two clear peaks could be detected at approximately 0.3 and 1.2 Hz. The peaks were thought to correspond to the respiratory rate and the heart rate. Correlation coefficients of 0.90 and 0.93 were obtained for the measurement of heart rate and respiratory rate, respectively.
我们利用从电荷耦合器件(CCD)相机获取的延时图像,开发了一种非接触、非侵入性的设备,该设备能够同时测量呼吸频率和脉搏率。连续采集受试者部分皮肤的延时图像,并在30秒内测量感兴趣区域(ROI)的平均图像亮度变化。亮度数据通过一系列如下操作进行处理:一阶导数、2赫兹的低通滤波器以及六阶自回归(AR)频谱分析。14名健康的年轻女性受试者(年龄在22至27岁之间)参与了实验。要求每位受试者保持放松的坐姿,无身体限制。同时,使用脉搏血氧仪测量心率,通过置于外鼻孔的热敏电阻测量呼吸频率。通过AR频谱分析,在大约0.3赫兹和1.2赫兹处可检测到两个明显的峰值。这些峰值被认为分别对应呼吸频率和心率。心率和呼吸频率测量的相关系数分别为0.90和0.93。