Selected article for: "expiratory limb and flow control"

Author: Shriya Srinivasan; Khalil Ramadi; Franceso Vicario; Declan Gwynne; Alison Hayward; Robert Langer; Joseph Frassica; Rebecca Baron; Giovanni Traverso
Title: Individualized System for Augmenting Ventilator Efficacy (iSAVE): A Rapidly deployable system to expand ventilator capacity
  • Document date: 2020_3_29
  • ID: aarthz9w_6
    Snippet: For closed-circuit ventilators ( Figure 1B-C) , Y or T connectors are utilized to provide individual inspiratory channels for each patient. Each inspiratory channel consists of a filter, flow control valve, a one-way flow valve and a set of sensors in series prior to the endotracheal tube. The expiratory limb consists of a filter, pressure release valve (a PEEP valve can be used for this purpose), one-way valve and filter prior to connection to Y.....
    Document: For closed-circuit ventilators ( Figure 1B-C) , Y or T connectors are utilized to provide individual inspiratory channels for each patient. Each inspiratory channel consists of a filter, flow control valve, a one-way flow valve and a set of sensors in series prior to the endotracheal tube. The expiratory limb consists of a filter, pressure release valve (a PEEP valve can be used for this purpose), one-way valve and filter prior to connection to Y or T connectors which are routed back to the ventilator.

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