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Novel assisted cough system based on simulating cough airflow dynamics

机译:基于模拟咳嗽气流动态的新颖辅助咳嗽系统

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Cough is a defensive behavior that protects the respiratory system from infection and clears airway secretions. Cough airflow dynamics have been analyzed by a variety of mathematical and experimental tools. In this paper, the cough airflow dynamics of 42 subjects were obtained and analyzed. An identification model based on piecewise Gauss function for cough airflow dynamics is proposed through the dimensionless method, which could achieve over 90% identification accuracy. Meanwhile, an assisted cough system based on pneumatic flow servo system is presented. The vacuum situation and feedback control are used to increase the simulated peak cough flow rate, which are important for airway secretion clearance and to avoid airway collapse, respectively. The simulated cough peak flow could reach 5 L/s without the external assistance such as manual pressing, patient cooperation and other means. Finally, the backstepping control is developed to generate a simulated cough airflow that closely mimics the natural cough airflow of humans. The assisted cough system opens up wide opportunities of practical application in airway secretion clearance for critically ill patients with COVID 2019 and other pulmonary diseases.
机译:咳嗽是一种防御行为,可保护呼吸系统免受感染并清除气道分泌物。通过多种数学和实验工具对咳嗽气流动力学进行了分析。在本文中,获得了42名受试者的咳嗽气流动力学并分析。通过无量纲方法提出了基于咳嗽气流动力学的分段高斯函数的识别模型,该方法可以达到超过90%的识别精度。同时,提出了基于气流伺服系统的辅助咳嗽系统。真空状况和反馈控制用于增加模拟的峰值咳嗽流量,这对于气道分泌清除至关重要,分别避免气道塌陷。模拟的咳嗽峰流量可以达到5 l/s,而无需外部辅助,例如手动压力,患者合作和其他手段。最后,开发了后退控制,以生成模拟的咳嗽气流,该气流紧密模仿了人类的天然咳嗽气流。辅助咳嗽系统为患有COVID 2019和其他肺部疾病的重症患者的气道分泌清除率提供了广泛的实际应用机会。

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