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一种通过控制自动手动复苏器来操作的呼吸机的生物学评估。猪的描述性研究。

Biological evaluation of a mechanical ventilator that operates by controlling an automated manual resuscitator. A descriptive study in swine.

机构信息

Institute of Omics and Applied Biotechnology, Pontificia Universidad Catolica del Peru, Lima, Peru.

School of Veterinary Medicine, Universidad Nacional Mayor de San Marcos, Lima, Peru.

出版信息

PLoS One. 2022 Mar 3;17(3):e0264774. doi: 10.1371/journal.pone.0264774. eCollection 2022.

Abstract

The Covid-19 outbreak challenged health systems around the world to design and implement cost-effective devices produced locally to meet the increased demand of mechanical ventilators worldwide. This study evaluates the physiological responses of healthy swine maintained under volume- or pressure-controlled mechanical ventilation by a mechanical ventilator implemented to bring life-support by automating a resuscitation bag and closely controlling ventilatory parameters. Physiological parameters were monitored in eight sedated animals (t0) prior to inducing deep anaesthesia, and during the next six hours of mechanical ventilation (t1-7). Hemodynamic conditions were monitored periodically using a portable gas analyser machine (i.e. BEecf, carbonate, SaO2, lactate, pH, PaO2, PaCO2) and a capnometer (i.e. ETCO2). Electrocardiogram, echocardiography and lung ultrasonography were performed to detect in vivo alterations in these vital organs and pathological findings from necropsy were reported. The mechanical ventilator properly controlled physiological levels of blood biochemistry such as oxygenation parameters (PaO2, PaCO2, SaO2, ETCO2), acid-base equilibrium (pH, carbonate, BEecf), and perfusion of tissues (lactate levels). In addition, histopathological analysis showed no evidence of acute tissue damage in lung, heart, liver, kidney, or brain. All animals were able to breathe spontaneously after undergoing mechanical ventilation. These preclinical data, supports the biological safety of the medical device to move forward to further evaluation in clinical studies.

摘要

新冠疫情大流行促使全球各地的卫生系统设计和实施成本效益高的本地生产设备,以满足全球对机械呼吸机需求的增加。本研究通过自动化复苏袋并密切控制通气参数的机械呼吸机,评估了在容积或压力控制机械通气下维持的健康猪的生理反应。在诱导深度麻醉之前和接下来的六小时机械通气期间(t1-7),监测了八只镇静动物(t0)的生理参数。使用便携式气体分析仪(即 BEecf、碳酸盐、SaO2、乳酸、pH、PaO2、PaCO2)和二氧化碳描记器(即 ETCO2)定期监测血流动力学状况。进行心电图、超声心动图和肺超声检查,以检测这些重要器官的体内变化,并报告尸检的病理发现。机械呼吸机能够很好地控制血液生化的生理水平,如氧合参数(PaO2、PaCO2、SaO2、ETCO2)、酸碱平衡(pH、碳酸盐、BEecf)和组织灌注(乳酸水平)。此外,组织病理学分析显示肺、心脏、肝脏、肾脏或大脑没有急性组织损伤的证据。所有动物在接受机械通气后均能够自主呼吸。这些临床前数据支持该医疗器械的生物安全性,可推进进一步的临床研究评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c73/8893637/83a4e7ab6cb1/pone.0264774.g001.jpg

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