Biomedical Electronics Center, Hanoi University of Science and Technology, Hanoi, Viet Nam.
J Med Eng Technol. 2020;44(7):357-367. doi: 10.1080/03091902.2020.1799089. Epub 2020 Aug 25.
Measuring and monitoring hemodynamic parameters has brought many benefits in supporting diagnosis and treatment for cardiovascular patients. There are many advantages to measuring hemodynamic parameters by non-invasive technique based on impedance cardiography (ICG) such as simplicity, real-time and low cost. However, the electrode positions of this method are very difficult to implement in cases where the patient has to use multiple medical devices at the same time, especially for patients on active treatment and resuscitation. This paper presents the results of the study proposing new three locations of ICG electrodes to overcome the above limitation. Accordingly, we measured and evaluated 10 volunteers on the Niccomo device. The results show that all three positions of proposed electrode can be used to replace standard electrode position. In particular, the 1st proposed position, can be used to measure all five hemodynamic parameters HR, SV, LVET, Z, CO and ICG waveforms, expressed by the average correlation and the relative average difference of five parameters, = 0.9641 and = 3.31%. The 2nd proposed position can be used to measure four parameters HR, SV, LVET, CO and ICG waveforms shown by = 0.9091 and = 8.67%. The 3rd proposed position can be used to measure three parameters HR, Z and LVET, expressed by = 0.8485 and = 9.26%.
测量和监测血流动力学参数为心血管患者的诊断和治疗提供了许多益处。基于电抗血流图(ICG)的非侵入性技术测量血流动力学参数具有简单、实时和低成本等优点。然而,该方法的电极位置在患者同时使用多种医疗设备时非常难以实现,尤其是对于正在接受积极治疗和复苏的患者。本文介绍了研究结果,提出了新的三个 ICG 电极位置,以克服上述限制。因此,我们在 Niccomo 设备上对 10 名志愿者进行了测量和评估。结果表明,提出的三个电极位置都可以代替标准电极位置。特别是第一个提出的位置,可以用来测量所有五个血流动力学参数 HR、SV、LVET、Z 和 CO 以及 ICG 波形,五个参数的平均相关系数和相对平均差分别为 = 0.9641 和 = 3.31%。第二个提出的位置可以用来测量四个参数 HR、SV、LVET 和 CO 以及 ICG 波形,相关系数和相对平均差分别为 = 0.9091 和 = 8.67%。第三个提出的位置可以用来测量三个参数 HR、Z 和 LVET,相关系数和相对平均差分别为 = 0.8485 和 = 9.26%。