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Advanced lung ventilation system (ALVS) with linear respiratory mechanics assumption for waveform optimization of dual-controlled ventilation.

机译:具有线性呼吸力学假设的高级肺通气系统(ALVS),用于双控通气的波形优化。

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摘要

The present paper describes the functional features of an advanced lung ventilation system (ALVS) properly designed for the optimization of conventional dual-controlled ventilation (DCV), i.e. with pressure-controlled ventilation with ensured tidal or minute volume. Considering the particular clinical conditions of patients treated with controlled ventilation the analysis and synthesis of ALVS control have been performed assuming a linear respiratory mechanics. Moreover, new airways pressure waveforms with more physiological shape can be tested on simulators of respiratory system in order to evaluate their clinical application. This is obtained through the implementation of a compensation procedure making the desired airways pressure waveform independent on patient airways resistance and lung compliance variations along with a complete real-time monitoring of respiratory system parameters leading the ventilator setting. The experimental results obtained with a lung simulator agree with the theoretical ones and show that ALVS performance is useful for the research activity aiming at the improvement of both diagnostic evaluation and therapeutic outcome relative to mechanical ventilation treatments.
机译:本文介绍了一种先进的肺通气系统(ALVS)的功能特征,该系统经过适当设计可优化常规双控通气(DCV),即确保潮气量或每分钟气量的压力控制通气。考虑到通气控制患者的特殊临床状况,假设线性呼吸力学进行了ALVS控制的分析和综合。此外,可以在呼吸系统模拟器上测试具有更多生理形状的新的气道压力波形,以评估其临床应用。这是通过执行补偿程序来实现的,该补偿程序使所需的气道压力波形独立于患者的气道阻力和肺顺应性变化,并且对导致呼吸机设置的呼吸系统参数进行了完整的实时监控。用肺部模拟器获得的实验结果与理论相符,表明ALVS性能对于旨在改善诊断评估和相对于机械通气治疗的治疗结果的研究活动是有用的。

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