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Automatic protective ventilation using the ARDSNet protocol with the additional monitoring of electrical impedance tomography

机译:使用ARDSNet协议进行自动保护性通气,并额外监视电阻层析成像

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IntroductionAutomatic ventilation for patients with respiratory failure aims at reducing mortality and can minimize the workload of clinical staff, offer standardized continuous care, and ultimately save the overall cost of therapy. We therefore developed a prototype for closed-loop ventilation using acute respiratory distress syndrome network (ARDSNet) protocol, called autoARDSNet.MethodsA protocol-driven ventilation using goal-oriented structural programming was implemented and used for 4?hours in seven pigs with lavage-induced acute respiratory distress syndrome (ARDS). Oxygenation, plateau pressure and pH goals were controlled during the automatic ventilation therapy using autoARDSNet. Monitoring included standard respiratory, arterial blood gas analysis and electrical impedance tomography (EIT) images. After 2-hour automatic ventilation, a disconnection of the animal from the ventilator was carried out for 10?seconds, simulating a frequent clinical scenario for routine clinical care or intra-hospital transport.ResultsThis pilot study of seven pigs showed stable and robust response for oxygenation, plateau pressure and pH value using the automated system. A 10-second disconnection at the patient-ventilator interface caused impaired oxygenation and severe acidosis. However, the automated protocol-driven ventilation was able to solve these problems. Additionally, regional ventilation was monitored by EIT for the evaluation of ventilation in real-time at bedside with one prominent case of pneumothorax.ConclusionsWe implemented an automatic ventilation therapy using ARDSNet protocol with seven pigs. All positive outcomes were obtained by the closed-loop ventilation therapy, which can offer a continuous standard protocol-driven algorithm to ARDS subjects.
机译:简介呼吸衰竭患者的自动通气旨在降低死亡率,并最大程度地减少临床工作人员的工作量,提供标准化的连续护理,并最终节省总体治疗费用。因此,我们开发了一种使用急性呼吸窘迫综合征网络(ARDSNet)协议进行闭环通气的原型,称为autoARDSNet。方法采用面向目标的结构化程序实施了协议驱动的通气,并在7头猪中进行了4小时的灌洗诱导急性呼吸窘迫综合征(ARDS)。使用autoARDSNet在自动通气治疗期间控制氧合作用,平台压和pH值目标。监测包括标准呼吸道,动脉血气分析和电阻抗断层扫描(EIT)图像。经过2小时的自动通气后,将动物从呼吸机上断开10秒钟,模拟了常规临床护理或医院内运输的常见临床情况。结果这项对7头猪的初步研究显示,对猪的反应稳定而有力。使用自动化系统进行氧合作用,平台压力和pH值。患者-呼吸机接口的断开连接10秒钟导致氧合受损和严重酸中毒。但是,自动协议驱动的通气能够解决这些问题。此外,通过EIT监测区域通气量,以实时评估床旁有1例气胸的通气情况。结论我们使用ARDSNet方案对7头猪实施了自动通气治疗。通过闭环通气疗法获得了所有积极的结果,可以为ARDS受试者提供连续的标准方案驱动算法。

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