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Compliance compensation in volume control ventilator

  • US 6,142,150 A
  • Filed: 03/24/1998
  • Issued: 11/07/2000
  • Est. Priority Date: 03/24/1998
  • Status: Expired due to Term
First Claim
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1. A ventilator comprising:

  • a cylinder assembly comprising a cylinder having an outlet and a shiftable piston therein to deliver gas to the outlet;

    a patient circuit coupled with the cylinder outlet for conveying cylinder-derived gas to a patient during gas-supplemented inhalations;

    a PEEP assembly operatively coupled with said cylinder assembly for maintaining a constant pressure within said patient circuit during patient exhalation,said cylinder having varying piston starting positions and effective compliances at the beginning of said gas-supplemented inhalations; and

    a control circuit operatively coupled with said cylinder assembly and including;

    a cylinder pressure sensor coupled with said cylinder for sensing the gas pressure therein and providing cylinder pressure signals representative thereof;

    a patient circuit pressure sensor coupled with said patient circuit for sensing gas pressure therein and providing patient circuit pressure signals representative thereof;

    a signal processor coupled with said sensors and operable for receiving said pressure signals therefrom, said signal processor operable to determine, using said received pressure signals, a predicted compliance of said cylinder at the end of a gas-supplemented inhalation and a compliance-compensated volume of gas to be delivered by said cylinder assembly for said gas-supplemented inhalation, and to generate an output representative of said compliance-compensated volume of gas; and

    a controller coupled with said signal processor and cylinder assembly in order to receive said output and operate said cylinder assembly to deliver said compliance-compensated volume of gas, so that the patient receives a desired tidal volume of gas from the cylinder assembly notwithstanding the position of said piston within said cylinder and the compliance of said cylinder at the beginning of said inhalation.

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