Selected article for: "end expiratory and inspiratory pressure"

Author: Galbiati Cristiano; Walter Bonivento; Mauro Caravati; Marco Razeti; Sandro DeCecco; Giuliana Fiorillo; Federico Gabriele; Roberto Tartaglia; Alessandro Razeto; Davide Sablone; Eugenio Scapparone; Gemma Testera; Marco Rescigno; Davide Franco; Iza Kochanek; Cary Kendziora; Stephen H. Pordes; Hanguo Wang; Andrea Ianni; Art McDonald; L. Molinari Tosatti; T. Dinon; M. Malosio; D. Minuzzo; A. Zardoni; A. Prini
Title: Mechanical Ventilator Milano (MVM):A Novel Mechanical Ventilator Designed for Mass Scale Production in response to the COVID-19 Pandemics
  • Document date: 2020_3_27
  • ID: 5qbsmyjb_19
    Snippet: The respiratory cycle is operated by actuating pneumatic valves PV1 and PV2. During the inspiratory phase, PV2 is closed and PV1 is open. At the end of the inspiratory cycle, the pressure reaches the design range of 20 mbarg to 30 mbarg. At the end of the inspiratory cycle, PV1 is closed and PV2 is opened simultaneously, allowing the discharge of the lungs pressure. The end-expiratory pressure is set by the height of the liquid column in vent tra.....
    Document: The respiratory cycle is operated by actuating pneumatic valves PV1 and PV2. During the inspiratory phase, PV2 is closed and PV1 is open. At the end of the inspiratory cycle, the pressure reaches the design range of 20 mbarg to 30 mbarg. At the end of the inspiratory cycle, PV1 is closed and PV2 is opened simultaneously, allowing the discharge of the lungs pressure. The end-expiratory pressure is set by the height of the liquid column in vent trap VT1.

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