EP3021884A2

Fluid volume measurement using canister resonance for reduced pressure therapy systems

Abstract

This record has no abstract on file.

Term

7.8 yearsto projected expiry

Projected expiry 25 June 2034, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

1 claim: 1 independent, 0 dependent

  1. 1
    Claims of equivalent WO 2015009422 A2 We claim:1. A reduced pressure treatment system for collecting bodily fluids from a tissue site using reduced pressure, comprising: a source of reduced pressure;a dressing adapted to be disposed proximate and in fluid communication with the tissue site;a canister having sidewalls closed by a lower wall and an upper wall for collecting body fluids from the tissue site, an inlet adapted to be in fluid communication with the dressing, and an outlet disposed in the upper wall over the sidewalls proximate the upper wall and adapted to be in fluid communication with the source of reduced pressure, wherein the bodily fluids have a surface rising as the canister fills from an empty state to a full state while collecting the bodily fluids to define an airspace above the surface within the canister;a first acoustic transducer acoustically coupled to one of the sidewalls of the canister, configured to insonify the airspace of the canister at predetermined acoustic frequencies along a first axis of insonification, and adapted to generate echo output signals in response to acoustic waves reflected within the airspace at the predetermined frequencies, said first acoustic transducer adapted to insonify at a plurality of frequencies between a first frequency and a second frequency;and a processor in electrical communication with the first acoustic transducer, and adapted to provide input signals to the first acoustic transducer for insonifying the airspace at predetermined acoustic frequencies between a first frequency and a second frequency and then for receiving the echo output signals from the first acoustic transducer to determine a first harmonic frequency therebetween corresponding to the volume of the airspace. The system of claim 1, further comprising a second acoustic transducer oriented to insonify said interior of said canister along a second axis of insonification and oriented to receive a second echo output signal, said second acoustic transducer adapted to insonify at said plurality of frequencies between said first frequency and said second frequency, said second acoustic transducer in data communication with said processor, and said processor adapted to determine a second harmonic frequency based on said second echo output signal whereby said second harmonic frequency is related to said volume of said cavity. A device as in claim 2 further comprising a third acoustic transducer oriented to insonify said interior of said canister along a third axis of insonification and oriented to receive a third echo output signal, said third acoustic transducer adapted to insonify at said plurality of frequencies between said first frequency and said second frequency, said third acoustic transducer in data communication with said processor, and said processor adapted to determine a third harmonic frequency based on said second echo output signal whereby said third harmonic frequency is related to said volume of said cavity. A device as in any of claims 1 through 3 where said first frequency is about 50Hz and said second frequency is about 20KHz. A device as in claim 2 wherein said first axis of insonification and said second axis of insonification are mutually orthogonal. A device as in claim 3 wherein said third axis of insonification, said second axis of insonification, and said first axis of insonification are mutually orthogonal. 7. A method of assessing a volume of a bodily fluid in a fluid collection device, the method comprising: collecting said bodily fluids in said fluid collection device, said fluid collection device comprising a canister having a wall, a volume, and a cavity defined by said wall and surface of said bodily fluids within said canister;insonifying said cavity with an acoustic transducer;detecting a resulting echo output signals;analyzing said resulting echo output signals;calculating a volume of said cavity based on said one or more echo output signals;and calculating said volume of said bodily fluids in said canister based on the difference of said volume of said canister and said volume of said cavity. 8. An assessing method as recited in claim 7, wherein the insonifying step includes generating a signal comprising a sequence of acoustic frequencies. 9. An assessing method as recited in claim 8, wherein the analyzing step includes determining a resonant frequency of the cavity. 10. An assessing method as recited in claim 7, wherein the analyzing step includes measuring one or more time difference between insonifying and detecting said one or more resulting echo output signals. 11. A method of assessing a volume of bodily fluid in a fluid collection device, the method comprising: collecting said bodily fluids in said fluid collection device, said fluid collection device comprising a canister having a wall, a volume, and a cavity defined by said wall and surface of said bodily fluids within said canister;insonifying said cavity with an acoustic transducer;detecting a resulting echo output signals;calculating a resonant frequency of said cavity based on said resulting echo output signals;determining an orientation of said cavity;selecting a cavity volume from a database based on said orientation and said resonant frequency;calculating said volume of said bodily fluids in said canister based on the difference of said volume of said canister and said volume of said cavity. 12. An assessing method as recited in claim 10, wherein the analyzing step further includes determining an orientation of said cavity and selecting one of said one or more time differences based on the orientation of said cavity. 13. A method of assessing the viscosity of a bodily fluid in a fluid collection device, the method comprising: collecting bodily fluids in a fluid collection device, the fluid collection device comprising a canister and a cavity defined by the canister;insonifying the cavity with an acoustic transducer;detecting one or more resulting echo output signals;analyzing one or more resulting echo output signals;calculating the viscosity of bodily fluid in the fluid collection device based on the one or more echo output signals. 14. An assessing method as recited in claim 13, wherein the analyzing step includes determining the damping ratio of said one or more resulting echo output signals. 15. A method of removing a residue of a bodily fluid from a canister, the method comprising: collecting bodily fluids in a fluid collection device, the fluid collection device comprising a canister and a cavity defined by the canister;insonifying the cavity with an acoustic transducer with a range of frequencies between a first frequency and a second frequency wherein a surface acoustic wave is established with the canister.