School of Electronic Information Engineering, Tianjin University, Tianjin, People's Republic of China.
J Clin Monit Comput. 2014 Aug;28(4):363-9. doi: 10.1007/s10877-013-9541-7. Epub 2013 Dec 6.
End-tidal partial pressure of [Formula: see text] is an important index in clinical monitoring. Medical mainstream capnography has become widely used, but there are still limitations in accuracy and stability. A type of mainstream capnometer based on the principle of non-dispersive infrared was designed. This capnometer inhibits signal drift by using electric modulation and thus ensures the accuracy of long-term CO2 monitoring. Statistical methods are used to find the best setting for sampling respiratory signals and improving precision. Several digital filtering techniques are used to process various interferences and improve capnogram quality. Clinical tests and targeted experiments show this mainstream capnometer can accurately monitor respiratory CO2 concentrations, especially at the end-tidal peak point. This capnometer also shows high accuracy and stability in long-term continuous monitoring.
呼气末[Formula: see text]分压是临床监测的一个重要指标。主流型呼气末二氧化碳监测仪已在医学中得到广泛应用,但在准确性和稳定性方面仍存在局限性。本文设计了一种基于不分光红外线原理的主流型呼气末二氧化碳监测仪,该监测仪通过电调制抑制信号漂移,从而保证了 CO2 长时间监测的准确性。本文采用统计学方法来找到最佳的呼吸信号采样设置,以提高精度。同时,采用了几种数字滤波技术来处理各种干扰,提高了呼末二氧化碳图的质量。临床测试和针对性实验表明,这种主流型呼气末二氧化碳监测仪可以准确监测呼吸 CO2 浓度,尤其是在呼气末峰点。该监测仪在长时间连续监测中也表现出了较高的准确性和稳定性。