Yan Qincheng, Wu Quanyu, Zhang Weimin, Pan Lingjiao, Liu Xiaojie, Tao Weige
School of Electrical and Information Engineering, Jiangsu University of Technology, Changzhou, Jiangsu 213001, P. R. China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024 Aug 25;41(4):775-781. doi: 10.7507/1001-5515.202401063.
Simulation of the human biological lung is a crucial method for medical professionals to learn and practice the use of new pulmonary interventional diagnostic and therapeutic devices. The study on ventilation effects of the simulation under positive pressure ventilation mode provide valuable guidance for clinical ventilation treatment. This study focused on establishing an electrical simulation ventilation model, which aims to address the complexities in parameter configuration and slow display of air pressure and airflow waveforms in simulating the human biological lung under positive pressure ventilation mode. A simulated ventilation experiment was conducted under pressure-regulated volume control (PRVC) positive pressure ventilation mode, and the resulting ventilation waveform was compared with that of normal adults. The experimental findings indicated that the average error of the main reference index moisture value was 9.8% under PRVC positive pressure ventilation mode, effectively simulating the ventilatory effect observed in normal adults. So the established electrical simulation ventilation model is feasible, and provides a foundation for further research on the simulation of human biological lung positive pressure ventilation experimental platform.
模拟人体生物肺是医学专业人员学习和练习使用新型肺部介入诊断和治疗设备的关键方法。对正压通气模式下模拟的通气效果进行研究,可为临床通气治疗提供有价值的指导。本研究着重建立一个电模拟通气模型,旨在解决在正压通气模式下模拟人体生物肺时参数配置复杂以及气压和气流波形显示缓慢的问题。在压力调节容量控制(PRVC)正压通气模式下进行了模拟通气实验,并将得到的通气波形与正常成年人的波形进行了比较。实验结果表明,在PRVC正压通气模式下,主要参考指标湿度值的平均误差为9.8%,有效模拟了正常成年人的通气效果。因此,所建立的电模拟通气模型是可行的,为进一步研究人体生物肺正压通气实验平台的模拟奠定了基础。