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一种用于通气治疗的反馈控制器。

A feedback controller for ventilatory therapy.

作者信息

Chapman F W, Newell J C, Roy R J

出版信息

Ann Biomed Eng. 1985;13(5):359-72. doi: 10.1007/BF02407766.

Abstract

A computerized system that uses feedback of end-tidal CO2 fraction (FETCO2) to adjust minute volume of a ventilator has been developed and tested. The effectiveness and robustness of the controller were evaluated in five anesthetized dogs. The controller responded to step-changes in the set-point for FETCO2 by adjusting minute volume so that the FETCO2 settled to the new set-point in less than 60 sec with less than 20% overshoot. The system exhibited suitable dynamic response to step-changes in set-point with loop gains as large as two times and as small as one-half the optimal value. The breath-to-breath variation in FETCO2 values during prolonged periods of closed-loop controlled ventilation was smaller than the variation during periods of constant minute volume ventilation in three of five experiments. The controller generally maintained FETCO2 within +/- 0.1 vol% of the set-point. A disturbance to the controlled system was produced by releasing an occlusion of a branch of the pulmonary artery. The controller always responded to this disturbance in a stable manner, returning the FETCO2 to its desired value within 30 sec. Accurate control of arterial partial pressure of CO2(PaCO2) will require modifications enabling the system to determine the relationship between FETCO2 and PaCO2.

摘要

已开发并测试了一种利用呼气末二氧化碳分数(FETCO2)反馈来调节呼吸机分钟通气量的计算机系统。在五只麻醉犬身上评估了该控制器的有效性和鲁棒性。控制器通过调节分钟通气量对FETCO2设定点的阶跃变化做出响应,使得FETCO2在不到60秒的时间内稳定到新的设定点,超调量小于20%。该系统对设定点的阶跃变化表现出合适的动态响应,环路增益范围从最优值的一半到两倍。在五个实验中的三个实验中,长时间闭环控制通气期间FETCO2值的逐次呼吸变化小于恒定分钟通气量通气期间的变化。控制器通常将FETCO2维持在设定点的±0.1 vol%范围内。通过解除肺动脉分支的阻塞对控制系统产生干扰。控制器总是以稳定的方式对这种干扰做出响应,在30秒内将FETCO2恢复到其期望值。要精确控制动脉血二氧化碳分压(PaCO2),需要进行改进,使系统能够确定FETCO2与PaCO2之间的关系。

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