CONNECTOR SYSTEM FOR A NEGATIVE PRESSURE WOUND THERAPY SYSTEM
20200054804 · 2020-02-20
Assignee
Inventors
Cpc classification
A61M2205/7536
HUMAN NECESSITIES
A61M1/86
HUMAN NECESSITIES
A61M39/00
HUMAN NECESSITIES
A61M39/105
HUMAN NECESSITIES
A61M35/30
HUMAN NECESSITIES
International classification
Abstract
The present disclosure relates to a connector device for a negative pressure wound therapy system having a connector housing, a fluid outlet connected to the connector housing, an air feeding port and an air filter and coupling means. The fluid outlet is adapted to be connected to a negative pressure source. The connector device is adapted to be engaged with a wound side connector of a wound side assembly by means of the coupling means. The wound side assembly includes a fluid removing conduit and an air supplying conduit, wherein a portion of each one of the fluid removing conduit and the air supplying conduit is connected to the wound side connector. The connector device when engaged with the wound side connector, the fluid removing conduit is fluidly connected to the fluid outlet and the air supplying conduit is fluidly connected to the air feeding port such that air ambient of the connector device can be fed to the air supplying conduit via the air feeding port and the air filter.
Claims
1. A connector device for a negative pressure wound therapy system, said connector device comprising: a connector housing, a fluid outlet connected to said connector housing, an air feeding port and an air filter, and coupling means, wherein: said fluid outlet is adapted to be connected to a negative pressure source, said connector device being adapted to be engaged with a wound side connector of a wound side assembly by means of said coupling means, said wound side assembly comprising a fluid removing conduit and an air supplying conduit, a portion of each one of said fluid removing conduit and said air supplying conduit being connected to said wound side connector, said connector device being such that when said connector device is engaged with said wound side connector, said fluid removing conduit is fluidly connected to said fluid outlet and, said air supplying conduit is fluidly connected to said air feeding port such that air ambient of said connector device can be fed to said air supplying conduit via said air filter and said air feeding port.
2. The connector device according to claim 1, wherein said connector device comprises an air feeding conduit comprising said air feeding port and an air inlet opening, said air feeding conduit being an integrated part of said connector housing.
3. The connector device according to claim 1, wherein said said air filter is provided within an air filter housing provided with said air inlet opening allowing air to flow through said air filter.
4. The connector device according to claim 2, wherein said connector housing has a connector housing device side and a connector housing coupling side, said connector device being adapted to be connected to said wound side connector at said connector housing coupling side, wherein said air inlet opening is provided on said connector housing device side.
5. The connector device according to claim 4, wherein said connector housing device side is positioned on the opposite side of said connector housing coupling side.
6. The connector device according to claim 2, wherein said air inlet opening is arranged at a radial distance from said fluid outlet.
7. The connector device according to claim 1, wherein said air filter is at least partly located within said connector housing so that maximum 2 cm of said air filter protrudes outside said connector housing.
8. The connector device according to claim 1, wherein a fluid conduit is connected to said fluid outlet.
9. The connector device according to claim 1, wherein said air filter provides an air leakage of between 0.5 ml/min to 70 ml/min at a pressure of 120 mmHg.
10. The connector device according to claim 1, wherein said connector device by means of said coupling means is adapted to form a snap-on, threaded, luer-lock, or bayonet engagement, with said wound side connector.
11. A branched connector device comprising a branched conduit which in turn comprises a first and a second branch portion, said branched connector device further comprising a connector device according to claim 1, wherein said first branch portion is connected to said fluid outlet of said connector device.
12. The branched connector device according to claim 11, wherein said branched connector device comprises a second connector device comprising a second connector housing and second coupling means and a second fluid outlet connected to said second connector housing, said second branch portion being connected to said second fluid outlet.
13. The branched connector device according to claim 12, wherein said second connector device comprises a second air feeding port.
14. The branched connector device according to claim 13, wherein a second conduit is connected to said second air feeding port.
15. (canceled)
16. (canceled)
17. (canceled)
18. A method comprising providing a connector device according to claim 1, connecting the connector device by means of said coupling means with a wound side connector of a wound side assembly, said wound fluid side assembly comprising a fluid removing conduit and an air supplying conduit, a portion of each one of said fluid removing conduit and said air supplying conduit being connected to said wound side connector.
19. The method according to claim 18, further comprising applying suction to a suction interface via said fluid outlet and said fluid removing conduit.
20. A negative pressure wound therapy system, comprising: a negative pressure source, a wound cover member having a suction interface, a wound side assembly connected to the suction interface, the wound side assembly comprising: a fluid removing conduit, an air supplying conduit, and a wound side connector connected to the fluid removing conduit and the air supplying conduit, and a connector device, comprising: a connector housing having a connector housing device side and an opposite connector housing coupling side, a fluid outlet connected to the connector housing, an air filter, an air feeding port connected to the filter, air feeding conduit comprising the air feeding port and an air inlet opening, the air inlet opening arranged on the connector housing device side, and coupling means, wherein: the fluid outlet is connected to the negative pressure source, the connector device is adapted to be connected to the wound side connector at the connector housing coupling side, the coupling means is adapted to engage with the wound side connector to: fluidly connect the fluid removing conduit to the fluid outlet, and fluidly connect the air supplying conduit to the air feeding port to allow air ambient to be supplied at a controlled air leakage rate to the air supplying conduit through the air filter.
21. The system according to claim 20, wherein: the negative pressure source comprises a pump and battery, the pump is arranged to have a suction capacity of up to 1.0 liter/min, and the air leakage rate through the air filter is selected to be in the range of 1 to 5 ml/min.
22. The system according to claim 20, wherein: the negative pressure source comprises a pump and battery, the pump is arranged to have a suction capacity of 1-5 liter/min, and the air leakage rate through the air filter is selected to be in the range of 10 to 30 ml/min.
23. The system according to claim 20, wherein the air leakage rate through the air filter is selected to be between 0.5 to 70 ml/min at a pressure of 120 mmHg.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0057] The various aspects of the present disclosure, including its particular features and advantages will be readily understood from the following detailed description and the accompanying drawings, in which:
[0058]
[0059]
[0060]
[0061]
[0062]
DETAILED DESCRIPTION
[0063]
[0064] The negative pressure wound therapy system illustrated in
[0065] The wound cover member 24 is generally adapted to be attached to the skin surrounding the wound. Purely by way of example, the wound cover member 24 may comprise a wound cover film. The wound cover member 24 may preferably be attached to the skin by an adhesive. Examples of adhesives that may be used include, but are not limited to, acrylic adhesives and/or silicone gel adhesives.
[0066] Moreover, the negative pressure wound therapy system illustrated in
[0067]
[0068] In embodiments of the present disclosure, the air leakage provided by the air filter 5 may be between 0.5 ml/min to 70 ml/min at a pressure of 120 mmHg, or between 1 ml/min to 40 ml/min at a pressure of 120 mmHg. For example, the air leakage provided by the air filter 5 may be between about 1 to 5 ml/min. For example, the air leakage provided by the air filter 5 may be between about 15 to 25 ml/min.
[0069] In
[0070] The connector housing 2 comprises coupling means 6 for fluidly connecting the fluid removing conduit 21 to the fluid outlet 3 and the air supplying conduit 22 to the air feeding port 4.
[0071] In negative pressure wound therapy systems there is in principle always a static pressure difference introduced by gravity between the pressure inside the canister and the pressure at the wound site. This is due to the height difference between the negative pressure source 23 and the wound 9. The amount of exudate inside the fluid removing conduit 21 and the fluid conduit 7 may increase, decrease or not influence the pressure at the wound site compared with the pressure inside the canister depending on the orientation of the tubing. A purpose of introducing the air volume is to ensure that transport of exudates takes place, e.g. by preventing clogging in or moving exudate from the fluid removing conduit 21 and the fluid conduit 7, between the wound area and a canister provided in connection with the vacuum pump despite static pressure differences introduced by gravity and consequently secure a correct pressure level at the wound site.
[0072]
[0073] As clearly illustrated in
[0074]
[0075] The direction of the fluid in the Y connector device 100 and the fluid communication assemblies is illustrated in
[0076] Preferably, the air leakage provided by the air filter 5 is adapted such that a continuous flow of air is ensured via the air supplying conduit 22, whilst at the same time reducing unnecessary work load of the negative pressure source 23, thereby minimizing noise and battery usage from the negative pressure source 23. For example, in case the negative pressure source 23 has a suction capacity of up to about 1 L/min, the air leakage provided by the air filter 5 may preferably be adapted to be between about 1 to 5 ml/min at a pressure of 120 mmHg. For example, in case the negative pressure source 23 has a suction capacity of up to about 5 L/min, the air leakage provided by the air filter 5 may preferably be adapted to be between about 15 to 55 ml/min at a pressure of 120 mmHg, such as between about 15 ml/min to 25 ml/min at a pressure of 120 mmHg.
[0077] In
[0078] The connector housing 2 comprises coupling means 6 for fluidly connecting the fluid removing conduit 21 to the fluid outlet 3 and the air supplying conduit 22 to the air feeding port 4. In
[0079] In negative pressure wound therapy systems there is in principle always a static pressure difference introduced by gravity between the pressure inside the canister and the pressure at the wound. This is due to the height difference between the negative pressure wound therapy system 18 and the different wounds 9 and the fact that exudate often is present in the conduits. The liquid column of exudate inside the fluid removing conduit 21 and the fluid conduit 7 may increase, decrease or not influence the pressure at the wound site compared with the pressure inside the canister depending on the orientation of the tubing. A purpose of introducing the air volume is to ensure that transport of exudate takes place between the wound area and a canister provided in connection with the vacuum pump, despite static pressure differences introduced by gravity, and consequently secures a correct pressure at the wound site. This is an even more crucial issue for negative wound therapy systems connectable to more than one fluid communication assembly and thus able to perform treatment at more than one wound site using only one negative pressure source.
[0080] The wound side assembly 19 is provided with wound side assembly coupling means 15 for coupling connection with the connector device coupling means 6. A non-limiting example of a coupling connection is a snap-on connection.
[0081] The Y connector device 100 according to
[0082] The second connector housing 2 furthermore comprises second coupling means 6 for fluidly connecting a second fluid removing conduit 21 to the second fluid outlet 3 and the second air supplying conduit 22 to the second air feeding port 4. The second connector device 1 is adapted to be engaged with a second wound side connector 25 of a second wound side assembly 19 at the second connector housing coupling side 2b or alternatively to a branched connector device 10, such as an Y connector device 100, according to the present disclosure.
[0083] The end portion of the branched conduit 14 is provided with a device side connector comprising coupling means 26 for coupling connection to a connector device 1. The connector device 1 may be a connector device identical to the connector device 1, a branched connector device 10, such as a Y connector device 100, all comprising a fluid outlet for fluid communication with the first and second branch portions 11, 12 via the end portion of the branched conduit 14, and an air feeding port to supply air via the second conduit 8 to the air feeding port 3 of the second connector device 2. It is of course also conceivable that the device side connector comprising coupling means 26 is coupled to a negative pressure source side connector connected to an fluid removing conduit leading to a negative pressure source 23 comprising a canister for receiving wound exudate.
[0084]
[0085] The branched connector device 10 furthermore comprises a second connector device 1, with a second connector housing 2 and a second fluid outlet 3, wherein the second branch portion 12 is connected to the second fluid outlet 3. The second connector device 1 furthermore comprises a second air feeding port 4 connected to the second connector housing 2. A third connector device 1, with a third connector housing 2 and a third fluid outlet 3, is connected to the third branch portion 13 via the third fluid outlet 3. The third connector device 1 furthermore comprises a third air feeding port 4 connected to the third connector housing 2.
[0086] Each of the first, second and third connector devices 1, 1, 1 furthermore comprises air filters 5, 5, 5 provided in air filter housings 16, 16, 16.
[0087] As illustrated in