Conduit with heated wick
A conduit for a breathing circuit includes a heater associated, at least in part, with a hydrophilic layer. The purpose of the heater is to evaporate any condensed liquid collecting in the conduit, which is first sucked up by the hydrophilic layer. The heated wick reduces the risk of collected water being passed to the patient and causing choking fits or discomfit. It is preferred that the heated wick lies freely in the conduit to settle at low points in the conduit where condensation may collect.
1. A conduit for a breathing circuit including a heater located within said conduit, said heater comprising an elongate heating element covered with an inner electrical insulating layer and at least partially covered with an outer hydrophilic layer, there being no means for direct supply of water or fluid to said hydrophilic layer from outside said conduit, said hydrophilic layer being formed so as to absorb water due to its structure, wherein said conduit is an expiratory conduit and said heater is located in an expiratory flow path of said conduit and at least a length of said conduit has a conduit wall wherein at least a region of said conduit wall is of a breathable material.
2. A conduit as claimed in claim 1 wherein said at least a region is or are distributed over said length of said conduit.
3. A conduit as claimed in claim 1 , wherein said hydrophilic layer is a braided sheath.
4. A conduit for a breathing circuit including a heater located within said conduit, said heater comprising an elongate heating element covered with an inner electrical insulating layer and at least partially covered with an outer hydrophilic layer, there being no means for direct supply of water or fluid to said hydrophilic layer from outside said conduit, said said hydrophilic layer being formed so as to absorb water due to its structure, said heater lying freely in said conduit to settle over at least some of its length at low points in said conduit where condensed water vapour may collect, wherein said conduit is an expiratory conduit and said heater is located in an expiratory flow path of said conduit and at least a length of said conduit has a conduit wall wherein at least a region of said conduit wall is of a breathable material.
5. A conduit as claimed in claim 4 wherein said at least a region is or are distributed over said length of said conduit.
6. A conduit for a breathing circuit including a heater located within said conduit, said heater comprising an elongate heating element covered with an inner electrical insulating layer and at least partially covered with an outer hydrophilic layer, there being no means for direct supply of water or fluid to said hydrophilic layer from outside said conduit, wherein said hydrophilic layer is a braided sheath.
7. A conduit for a breathing circuit including a heater located within said conduit, said heater comprising an elongate heating element covered with an inner electrical insulating layer and at least partially covered with an outer hydrophilic layer, there being no means for direct supply of water or fluid to said hydrophilic layer from outside said conduit, said hydrophilic layer being formed so as to absorb water due to its structure, wherein said hydrophilic layer is a braided sheath.
8. A conduit for a breathing circuit including a heater located within said conduit, said heater comprising an elongate heating element covered with an inner electrical insulating layer and at least partially covered with an outer hydrophilic layer, there being no means for direct supply of water or fluid to said hydrophilic layer from outside said conduit, said hydrophilic layer being formed so as to absorb water due to its structure, said heater lying freely in said conduit to settle over at least some of its length at low points in said conduit where condensed water vapour may collect, wherein said hydrophilic layer is a braided sheath.