Yang Y X, Xie B S, Zhou Z X, Liu J N, Xue Y Y, Lv G L
Department of Biological Engineering, Huazhong University of Science & Technology, Wuhan, Peoples Republic of China.
Med Biol Eng Comput. 1998 May;36(3):355-8. doi: 10.1007/BF02522483.
An experimental animal hypoxia model has been developed. It consists of two sensors (an in vitro and in vivo model), an experimental device and a computer signal processing system. This method can easily be applied to determine and analyse blood oxygen saturation at various hypoxia levels. It can also be used to evaluate the accuracy of pulse oximetry over a wide range of oxyhemoglobin desaturation levels. The DC and AC components of recorded red and infra-red signals, the dual-wavelength ratio R12 and the reading of a pulse oximeter (SpO2) can be automatically calculated and displayed on a computer screen. Preliminary results of the animal hypoxia test indicate that the measurements made by the instrument correlate well with the oxygen saturation readings of the automatic blood gas analyser AVL945. The computer analysis system is suitable for repeated estimations in the animal model.
已经建立了一种实验性动物缺氧模型。它由两个传感器(一个体外模型和一个体内模型)、一个实验装置和一个计算机信号处理系统组成。该方法可轻松用于测定和分析各种缺氧水平下的血氧饱和度。它还可用于评估在广泛的氧合血红蛋白去饱和水平范围内脉搏血氧饱和度测定的准确性。记录的红光和红外信号的直流和交流分量、双波长比R12以及脉搏血氧仪的读数(SpO2)可自动计算并显示在计算机屏幕上。动物缺氧测试的初步结果表明,该仪器的测量结果与自动血气分析仪AVL945的血氧饱和度读数相关性良好。该计算机分析系统适用于在动物模型中进行重复评估。