Dual chamber patient interface with airflow regulation
A patient interface may include a dual chamber cushion assembly having a nasal chamber and an oral chamber. The nasal chamber may be arranged to deliver pressurized breathable gas to a patient's nasal passages, and the oral chamber may be arranged to deliver pressurized breathable gas to the patient's oral passages. The nasal chamber may be pressurized to a different level than an oral chamber to promote nasal breathing. An air passage may fluidly connect the nasal chamber and the oral chamber so that pressurized breathable gas may flow from the nasal chamber to the oral chamber.
1 . A patient interface for sealed delivery of a flow of air at a continuously positive pressure with respect to ambient air pressure to an entrance to a patient's airways including at least an entrance of a patient's nares, wherein the patient interface is configured to maintain a therapy pressure in a range of about 4 cmH2O to about 30 cmH2O above ambient air pressure in use, throughout a patient's respiratory cycle, while the patient is sleeping, to ameliorate sleep disordered breathing, the patient interface comprising:
a cushion assembly configured to deliver a flow of air to the patient's airways, the cushion assembly including:
a nasal chamber pressurisable to a therapeutic pressure of at least 6 cmH 2 O above ambient air pressure, the nasal chamber configured to, in use, deliver the flow of air to the patient's nasal passageways;
an oral chamber pressurisable to a different level than the nasal chamber, the oral chamber configured to, in use, deliver the flow of air to the patient's mouth;
at least one inlet port sized and structured to receive the flow of air into at least the nasal chamber;
a seal-forming structure constructed and arranged to form a seal with a region of the patient's face surrounding an entrance to the patient's airways, said seal-forming structure having at least one hole formed therein such that the flow of air is delivered to at least an entrance to the patient's nares; and
a partition forming a wall extending between and separating the nasal chamber and the oral chamber,
wherein a first surface of the wall is disposed in the nasal chamber and a second surface of the wall that is opposite the first surface is disposed in the oral chamber,
wherein a plurality of holes is formed in the wall extending through the first surface and the second surface to, in use, allow the flow of air to flow from the nasal chamber to the oral chamber in a manner that maintains a pressure in the oral chamber at a level lower than a pressure in the nasal chamber to promote nasal breathing.
2 . The patient interface of claim 1 , wherein the plurality of holes comprises at least three holes.
3 . The patient interface of claim 1 , wherein the pressure in the nasal chamber is at least 2 cmH 2 O above the pressure in the oral chamber.
4 . The patient interface of claim 1 , wherein the pressure in the nasal chamber is at least 5 cmH 2 O above the pressure in the oral chamber.
5 . The patient interface of claim 1 , said cushion assembly further comprising a flow regulator including a passageway fluidly connecting the nasal chamber and the oral chamber to allow the flow of air to flow from the nasal chamber to the oral chamber,
wherein the flow regulator is configured to adjust a size of the passageway to control a volume of the flow of air that flows from the nasal chamber to the oral chamber.
6 . The patient interface of claim 5 , wherein the flow regulator is an adjustable valve.
7 . The patient interface of claim 5 , wherein the size of the passageway is manually adjustable.
8 . The patient interface of claim 7 , wherein the flow regulator further comprises a rotatable dial to manually adjust the size of the passageway.
9 . The patient interface of claim 5 , wherein the size of the passageway is automatically adjustable.
10 . The patient interface of claim 5 , further comprising a sensor to determine a level of resistance in the patient's nasal passageways, wherein, in use, when the level of resistance in the patient's nasal passageways exceeds a first threshold, the flow regulator is configured to automatically adjust the flow of air to increase pressure in the oral chamber.
11 . The patient interface of claim 1 , wherein the partition comprises silicone.
12 . The patient interface of claim 1 , wherein the seal-forming structure includes a nasal seal comprising the at least one hole such that the flow of air is delivered to at least an entrance to the patient's nares.
13 . The patient interface of claim 1 , wherein the seal-forming structure includes an oral seal having a hole formed therein to deliver the flow of air to the patient's mouth.
14 . The patient interface of claim 1 , wherein the cushion assembly is an oro-nasal cushion assembly and the seal-forming structure is configured to, in use, form a seal below the patient's pronasale.
15 . The patient interface of claim 14 , further comprising a pair of headgear tubes configured to deliver the flow of air to the cushion assembly, the pair of headgear tubes being configured to, in use, extend along respective sides of the patient's face between the patient's eye and ear.
16 . The patient interface of claim 1 , wherein the cushion assembly is a full-face cushion assembly and the seal-forming structure is configured to, in use, form a seal above the patient's pronasale.
17 . The patient interface of claim 16 , wherein the seal-forming structure is configured to, in use, form a seal along the patient's nasal bridge.
18 . The patient interface of claim 1 , wherein the wall extends from a first interior surface of the cushion assembly on a patient-contacting side of the cushion assembly to a second interior surface of the cushion assembly on a non-patient contacting side of the cushion assembly, and
wherein the wall is non-removably attached to the first interior surface of the cushion assembly, and the wall is non-removably attached to the second interior surface of the cushion assembly.
19 . The patient interface of claim 1 , wherein the wall forms an upper surface of the mouth chamber and a lower surface of the nasal chamber.
20 . The patient interface of claim 1 , wherein the cushion assembly further comprises a nasal cushion and a separate oral cushion,
wherein the seal-forming structure includes a nasal seal comprising the at least one hole such that the flow of air is delivered to at least an entrance to the patient's nares, the nasal cushion comprising the nasal seal,
wherein the seal-forming structure includes an oral seal having a hole formed therein to deliver the flow of air to the patient's mouth, the oral cushion comprising the oral seal.
21 . The patient interface of claim 20 , wherein the wall is disposed in the nasal cushion, in the oral cushion, or in a fluidly connecting structure therebetween.
22 . The patient interface of claim 20 , further comprising a joint forming a hollow interior to fluidly connect the nasal cushion and the oral cushion,
wherein the wall is disposed in the hollow interior of the joint.
23 . The patient interface of claim 1 , wherein the cushion assembly is configured such that, in use, the nasal chamber is pressurized in a range of 8 to 14 cmH 2 O above ambient air pressure while the oral chamber is pressurized in a range of 4 to 7.5 cmH 2 O above ambient air pressure.
24 . The patient interface of claim 1 , wherein the cushion assembly is configured such that, in use, the nasal chamber is pressurized in a range of 14 to 20 cmH 2 O above ambient air pressure while the oral chamber is pressurized in a range of 7.5 to 10.5 cmH 2 O above ambient air pressure.
25 . The patient interface of claim 1 , further comprising a positioning and stabilizing structure to provide a force to hold the seal-forming structure in a therapeutically effective position on the patient's head, the positioning and stabilising structure being constructed and arranged so that at least a portion overlies a region of the patient's head superior to an otobasion superior of the patient's head in use.
26 . The patient interface of claim 1 , wherein, in use, the first surface of the wall is configured to impede passage of the flow of air from the nasal chamber to the oral chamber, only allowing the flow of air to pass through the plurality of holes formed in the wall.