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Design and construction of a simplified, gas-driven, pressure-controlled emergency ventilator

机译:设计和施工简化,气体驱动,压力控制的紧急呼吸机

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IntroductionDue to the COVID-19 crisis or any other mass casualty situation it might be necessary to give artificial ventilation to many affected patients. Contrarily, the worldwide availability of emergency ventilators is still a shortage, especially in developing countries.MethodsModes of artificial ventilation were compared and the most safe, easy to use, and lung protecting principle was optimized to fit all requirements of both emergency ventilation and cost-effective mass production.ResultsThe presented research results describe a simplified device for a pressure-controlled ventilation which works without electricity according to a known principle. Just pressurized gas and a patient connection is required. The device enables the control of basic ventilator parameters such as peak inspiratory pressure, positive end-expiratory pressure and the ventilation frequency. Further, the device is semiadaptive to the patient's lung stiffness and automatically maintains minute volume through frequency adjustment. The machine can be manufactured by turning, milling and drilling and needs purchased components with costs less than 100 USD. A sterilization and thus a reuse is possible.DiscussionThe presented development does not describe a ready-to-purchase ventilator, it rather outlines a refined working principle for emergency ventilation and its easiest methods of production with a minimum of requirements. The presented research aims on providing an open-source guideline for production of an emergency ventilator using worldwide available methods and thus should inspire local researchers to do a reverse engineering and eventually to put it into operation following country-specific regulations. For long-term ventilation exceeding emergency purposes, a monitoring of alarms for disconnection and violation of desired ventilator parameters should be established. The ventilator is limited to a fixed ratio between PIP and PEEP. Moreover, the ventilation frequency depends on two parameters, which needs some training. Nevertheless, the ventilator provides basic features to enable an emergency ventilation with minimal prerequisites.
机译:介绍与Covid-19危机或任何其他大规模伤亡情况可能有必要对许多受影响的患者进行人工通风。相反,急救呼吸器的全球可用性仍然是短缺,特别是在发展中国家。比较人工通风的方法,并且最安全,易用,肺保护原理得到了优化,以满足紧急通风和成本的所有要求有效的批量生产。提出的研究结果描述了一种用于压力控制通气的简化装置,其根据已知原理工作而没有电。只需要加压气体和患者连接。该装置使得能够控制诸如峰值吸气压力,正端呼气压力和通风频率的基本呼吸机参数。此外,对患者的肺刚度是半拔赖性的,并通过频率调节自动保持微小体积。该机器可以通过转动,铣削和钻孔制造,并需要购买成本低于100美元的成分。灭菌和灭菌是可以的。探讨的探测器没有描述一种现代购买的呼吸机,它相当概述了紧急通风的精细工作原理及其最简单的生产方法,最小的要求。本研究旨在提供使用全球可用方法生产紧急呼吸机的开源指南,因此应该激发当地的研究人员进行逆向工程,并最终将其投入到特定国家的规定后将其投入运营。对于超过应急目的的长期通风,应建立对断开和违反所需通风参数的警报监测。呼吸机限于PIP和PEEP之间的固定比率。此外,通风频率取决于需要一些培训的两个参数。然而,呼吸机提供了基本功能,以使紧急通风具有最小的先决条件。

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