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电磁阀辅助低成本呼吸机在猪模型中气体交换和呼吸力学方面的开发和性能评估。

Development and performance evaluation of a solenoid valve assisted low-cost ventilator on gas exchange and respiratory mechanics in a porcine model.

机构信息

Department of Medicine, University of Minnesota, Minneapolis, Minnesota, United States of America.

Independent Researcher, Philips Respironics, Minneapolis, Minnesota, United States of America.

出版信息

PLoS One. 2024 May 16;19(5):e0303443. doi: 10.1371/journal.pone.0303443. eCollection 2024.

Abstract

INTRODUCTION

During the COVID-19 pandemic, ventilator shortages necessitated the development of new, low-cost ventilator designs. The fundamental requirements of a ventilator include precise gas delivery, rapid adjustments, durability, and user-friendliness, often achieved through solenoid valves. However, few solenoid-valve assisted low-cost ventilator (LCV) designs have been published, and gas exchange evaluation during LCV testing is lacking. This study describes the development and performance evaluation of a solenoid-valve assisted low-cost ventilator (SV-LCV) in vitro and in vivo, focusing on gas exchange and respiratory mechanics.

METHODS

The SV-LCV, a fully open ventilator device, was developed with comprehensive hardware and design documentation, utilizing solenoid valves for gas delivery regulation. Lung simulator testing calibrated tidal volumes at specified inspiratory and expiratory times, followed by in vivo testing in a porcine model to compare SV-LCV performance with a conventional ventilator.

RESULTS

The SV-LCV closely matched the control ventilator's respiratory profile and gas exchange across all test cycles. Lung simulator testing revealed direct effects of compliance and resistance changes on peak pressures and tidal volumes, with no significant changes in respiratory rate. In vivo testing demonstrated comparable gas exchange parameters between SV-LCV and conventional ventilator across all cycles. Specifically, in cycle 1, the SV-LCV showed arterial blood gas (ABG) results of pH 7.54, PCO2 34.5 mmHg, and PO2 91.7 mmHg, compared to the control ventilator's ABG of pH 7.53, PCO2 37.1 mmHg, and PO2 134 mmHg. Cycle 2 exhibited ABG results of pH 7.53, PCO2 33.6 mmHg, and PO2 84.3 mmHg for SV-LCV, and pH 7.5, PCO2 34.2 mmHg, and PO2 93.5 mmHg for the control ventilator. Similarly, cycle 3 showed ABG results of pH 7.53, PCO2 32.1 mmHg, and PO2 127 mmHg for SV-LCV, and pH 7.5, PCO2 35.5 mmHg, and PO2 91.3 mmHg for the control ventilator.

CONCLUSION

The SV-LCV provides similar gas exchange and respiratory mechanic profiles compared to a conventional ventilator. With a streamlined design and performance akin to commercially available ventilators, the SV-LCV presents a viable, readily available, and reliable short-term solution for overcoming ventilator supply shortages during crises.

摘要

简介

在 COVID-19 大流行期间,呼吸机短缺促使人们开发新的、低成本的呼吸机设计。呼吸机的基本要求包括精确的气体输送、快速调整、耐用性和易用性,这些通常通过电磁阀来实现。然而,很少有电磁阀辅助的低成本呼吸机(LCV)设计被公布,并且在 LCV 测试期间缺乏气体交换评估。本研究描述了一种电磁阀辅助的低成本呼吸机(SV-LCV)的开发和体外及体内性能评估,重点关注气体交换和呼吸力学。

方法

SV-LCV 是一种完全开放的呼吸机设备,具有全面的硬件和设计文档,利用电磁阀来调节气体输送。肺模拟器测试在指定的吸气和呼气时间校准潮气量,然后在猪模型中进行体内测试,以比较 SV-LCV 与传统呼吸机的性能。

结果

SV-LCV 在所有测试周期中都与对照呼吸机的呼吸特征和气体交换密切匹配。肺模拟器测试显示顺应性和阻力变化对峰值压力和潮气量的直接影响,呼吸频率没有显著变化。体内测试表明,SV-LCV 和传统呼吸机在所有周期中的气体交换参数相当。具体来说,在第 1 个周期中,SV-LCV 的动脉血气(ABG)结果为 pH 值 7.54、PCO2 34.5mmHg 和 PO2 91.7mmHg,而对照呼吸机的 ABG 结果为 pH 值 7.53、PCO2 37.1mmHg 和 PO2 134mmHg。第 2 个周期中,SV-LCV 的 ABG 结果为 pH 值 7.53、PCO2 33.6mmHg 和 PO2 84.3mmHg,而对照呼吸机的 ABG 结果为 pH 值 7.5、PCO2 34.2mmHg 和 PO2 93.5mmHg。同样,第 3 个周期中,SV-LCV 的 ABG 结果为 pH 值 7.53、PCO2 32.1mmHg 和 PO2 127mmHg,而对照呼吸机的 ABG 结果为 pH 值 7.5、PCO2 35.5mmHg 和 PO2 91.3mmHg。

结论

SV-LCV 与传统呼吸机相比提供了相似的气体交换和呼吸力学特征。SV-LCV 具有简化的设计和类似于商业上可用的呼吸机的性能,为危机期间克服呼吸机供应短缺提供了一种可行、现成且可靠的短期解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/359a/11098403/4e129f749317/pone.0303443.g001.jpg

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