AU5956499A - A mask and a vent assembly therefor - Google Patents

A mask and a vent assembly therefor Download PDF

Info

Publication number
AU5956499A
AU5956499A AU59564/99A AU5956499A AU5956499A AU 5956499 A AU5956499 A AU 5956499A AU 59564/99 A AU59564/99 A AU 59564/99A AU 5956499 A AU5956499 A AU 5956499A AU 5956499 A AU5956499 A AU 5956499A
Authority
AU
Australia
Prior art keywords
mask
vent assembly
orifice
insert
conduit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
AU59564/99A
Other versions
AU724360B2 (en
Inventor
Philip Rodney Kwok
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Resmed Pty Ltd
Original Assignee
Resmed Pty Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Resmed Pty Ltd filed Critical Resmed Pty Ltd
Priority to AU59564/99A priority Critical patent/AU724360B2/en
Publication of AU5956499A publication Critical patent/AU5956499A/en
Application granted granted Critical
Publication of AU724360B2 publication Critical patent/AU724360B2/en
Anticipated expiration legal-status Critical
Expired legal-status Critical Current

Links

Landscapes

  • Respiratory Apparatuses And Protective Means (AREA)

Description

I i S F Ref: 404582D1
AUSTRALIA
PATENTS ACT 1990 COMPLETE SPECIFCATION FOR A STANDARD PATENT a.
a
ORIGINAL
Name and Address of Applicant: Actual Inventor(s): Address for Service: Invention Title: ResMed Limited 97 Waterloo Road North Ryde NSW 2113
AUSTRALIA
Phillip Rodney Kwok Spruson Ferguson, Patent Attorneys Level 33 St Martins Tower, 31 Market Street Sydney, New South Wales, 2000, Australia A Mask and a Vent Assembly Therefor I The following statement is a full description of this invention, including the best method of performing it known to me/us:- 5845 A MASK AND A VENT ASSEMBLY THEREFOR FIELD OF THE INVENTION The present invention relates to a mask and a vent assembly therefor.
The mask and vent assembly according to the invention have been developed primarily for the venting of washout gas in the application of continuous positive airway pressure (CPAP) treatment in conjunction with a system for supplying breathable gas pressurised above atmospheric pressure to a human or animal. Such a :i system is used, for example, in the treatment of obstructive sleep apnea (OSA) and 10 similar sleep disordered breathing conditions. However, the invention is also suitable for other purposes including, for example, the application of assisted ventilation or respiration.
The term "mask" is herein intended to include face masks, nose masks, mouth masks, nasal pillows, appendages in the vicinity of any of these devices and the like.
15 BACKGROUND OF THE INVENTION Treatment of OSA by CPAP flow generator systems involves the continuous delivery of air (or other breathable gas) pressurised above atmospheric pressure to a patient's airways via a conduit and a mask.
For either the treatment of OSA or the application of assisted ventilation, the 20 pressure of the gas delivered to a patient can be at a constant level, bi-level (ie. in synchronism with patient inspiration and expiration) or automatically adjusting in level to match therapeutic need. Throughout this specification the reference to CPAP is intended to incorporate a reference to any one of, or combinations of, these forms of pressure delivery.
The masks used in CPAP treatment generally include a vent for washout of the gas to atmosphere. The vent is normally located in the mask or in the gas delivery conduit adjacent the mask. The washout of gas through the vent is essential for removal of exhaled gases from the breathing circuit to prevent carbon dioxide "rebreathing" or build-up, both of which represent a health risk to the mask wearer.
Adequate gas washout is achieved by selecting a vent size and configuration that will allow a minimum safe gas flow at the lowest operating CPAP pressure, which, typically can be as low as around 4 cm H 2 0 for adults and 2 cm H 2 0 in paediatric applications.
[R:\LIBD]0094 I.doc:DMB:MFF Prior art masks are generally comprised of a rigid plastic shell which covers the wearer's nose and/or mouth. A flexible or resilient rim (or cushion) is attached to the periphery of the shell which abuts and seals against the wearer's face to provide a gas-tight seal around the nose and/or mouth.
A prior art washout vent utilized one or more holes or slits in the rigid shell or in a rigid portion of the delivery conduit to allow the washout gas to vent to atmosphere. In some masks, the holes or slits were formed during the moulding process. In others, they were drilled or cut as a separate step after the shell or conduit had been moulded.
10 The flow of gas out the holes or slits in the shell or conduit to atmosphere creates noise and turbulence at the hole or slit outlet as the delivered gas, and upon expiration, the patient-expired gas (including CO 2 exits. Bi-level and autosetting gas delivery regimes tend to generate more noise than a constant level gas delivery regime.
This is thought to be due to the extra turbulence created by the gas accelerating and 15 decelerating as it cycles between relatively low and relatively high pressures. The noise adversely affects patient and bed-partner comfort.
Another prior art vent included hollow rivets or plugs manufactured from stainless steel or other rigid materials attached to openings in the rigid shell. The outer edges of the rivets were rounded to help reduce noise. However, this approach was 20 expensive, required an extra production step and did not prove effective in reducing noise.
Another approach to reduce noise involved the use of sintered filters at the gas outlet of the mask shell. However, the filters were prone to blocking, especially in the presence of moisture. Accordingly, sintered filters were impractical for use in CPAP treatment as they were easily blocked by the moisture from the patient's respiratory system or humidifiers or during the necessary regular cleaning of the mask and associated componentry.
Foam filters wrapped around the air outlets in the shell were also attempted.
However, they also suffered from the disadvantages of being prone to blocking, difficult to clean and requiring constant replacement.
Remote outlet tubes have been used to distance the noise source from the patient. However, these tubes are difficult to clean, are prone to entanglement by the patient and/or their bed partner and suffer the further disadvantage that a volume of exhausted gas is retained in the tube adjacent the mask.
[R:\LIBD]00941.doc:DMBMFF It is an object of the present invention to substantially overcome or at least ameliorate the prior art disadvantages and, in particular, to reduce the noise generated by gas washout through a mask.
SUMMARY OF THE INVENTION Accordingly, the invention, in a first aspect, discloses a mask for use with a system for supplying breathable gas pressurised above atmospheric pressure to a human or animal's airways, the mask includes a mask shell which is, in use, in fluid communication with a gas supply conduit; and a gas washout vent assembly, the gas washout vent assembly includes at least one gas washout orifice extending from a first 10 side of the vent assembly positioned, in use, adjacent the human or animal's face and a second side positioned, in use, adjacent the atmosphere and the cross-sectional area of the orifice at the first side is larger than the cross-sectional area of the orifice at the second side.
In a second aspect, the invention discloses a vent assembly for the washout of 15 gas from a mask or conduit used with a system for supplying breathable gas pressurized above atmospheric pressure to a human or animal, the vent assembly includes at least one gas washout orifice extending from a first side of the vent assembly placed, in use, adjacent the human or animal's face to a second side placed, in use, adjacent the atmosphere, the cross-sectional area of the orifice at the first side is larger than the cross-sectional area of the orifice at the second side.
Preferably, the orifice includes a first substantially cylindrical portion adjacent the first side, a second cylindrical portion adjacent the second side and a tapering portion between the first and second substantially cylindrical portions.
Preferably also, the second substantially cylindrical portion and the tapering portion are of approximately equal thickness in the axial direction of the orifice and are thicker than the first substantially cylindrical portion.
Desirably, the vent assembly includes a plurality of said orifices therethrough.
Desirably also, each of said orifices is separated from the other(s) of said orifices by at least the diameter of the orifice at the second side.
BRIEF DESCRIPTION OF THE DRAWINGS Preferred embodiments of the invention will now be described, by way of examples only, with reference to the accompanying drawings in which: Fig. 1 is a perspective view of a first embodiment; [R:\LIBD]00941 .doc:DMB:MFF Fig. 2 is a perspective view of a second embodiment; Fig. 3 is a perspective view of a third embodiment; Fig. 4 is a perspective view of a fourth embodiment; Fig. 5 is a perspective view of a fifth embodiment; Fig. 6 is a perspective view of a sixth embodiment; Fig. 7 is a perspective view of a seventh embodiment; Fig. 8 is a partial cross-sectional view of the first embodiment along the line 8- 8 of Fig. 1; Fig. 9 is a perspective view of an eighth embodiment; Fig. 10 is a plan view of the insert of the third embodiment; Fig. 11 is a cross-sectional view of the third embodiment insert along the line 11-11 of Fig. 10; and Fig. 12 is a partial cross-sectional view of the third embodiment insert along the line 12-12 of Fig. S 15 DESCRIPTION OF THE PREFERRED EMBODIMENTS Referring firstly to Fig. 1, there is shown a mask 10 for use with a system (not shown) for supplying breathable gas pressurised above atmospheric pressure to a human o*oo• or animal's airways. The mask includes a rigid plastics shell 12 having an inlet tube 14 for connection to a supply conduit to communicate breathable gas from a flow generator 20 (not shown) to the nasal passages of the mask wearer. The mask shell 12 also includes a flexible sealing membrane 16 which is used to provide a gas tight seal between the face of the wearer and the interior of the shell 12. The shell 12 also includes lugs 18 for connecting the mask 10 to a head strap (not shown) to retain the mask in place.
The mask includes a Silastic M insert 20 through which is provided an orifice 22 for gas washout. As best shown in Figure 8, the insert 20 has a recess or groove 24 around its periphery. A correspondingly sized opening 26 bounded by a rim 28 is provided in the shell 12 to enable the insert 20 to be retained in place in the fashion of a grommet. The opening 26 can be moulded in the shell 12 or drilled or punched as a post-moulding step. The flexibility of the Silastic T M allows the insert 20 to be initially squeezed through the opening 26 before resiliently expanding to the configuration shown in Fig. 8 and engaging the rim 28.
Figs. 2 to 7 show further embodiments in which corresponding reference numerals are used to indicate like features. In all these embodiments the insert 20 has [R:\L1BD]00941.doc.DMB:MFF an external groove or recess 24 which engages the rim 28 of a corresponding shaped opening 26 in the mask shell 12 to retain the insert 20 in place.
In the embodiment shown in Figs. 2 to 5 and 7 the insert 20 includes more than one orifice 22. In the embodiment shown in Fig. 6, two inserts 20 are provided in the shell 12.
In the embodiment shown in Fig. 9, the insert 20 is provided in a gas supply conduit Figs. 10 to 12 show the insert 20 of the third embodiment of Fig. 3. The dimensions 32, 34, 36, 38, 40, 42 and 45 are approximately diameter 1.73 mm, diameter 3.30 mm, 28.80 mm, 19.00 mm, 1.20 mm, 1.20 mm and 3.60 mm ~respectively.
The side 44 of the insert 20 faces the patient's face in use and the side 46 faces atmosphere.
The mask shell 12 is manufactured from polycarbonate. Other rigid plastics 15 materials can equally be used. The insert 20 can be manufactured from an elastomer sold as Silasti TM (produced by the Dow Corning Corporation) or a thermoplastic elastomer sold as SantopreneM (produced by Monsanto). Other flexible elastomeric materials can be used also.
The mask 10 produces less noise than an identical mask having a similar sized and shaped orifice(s) formed directly in the mask shell 12 instead of formed in the flexible insert 20. It is thought that the noise reduction occurs due to the flexible insert damping vibrations caused by air passage through the orifice(s) 22 which produce vibrations or similar in the mask shell 12.
A prototype of the embodiment of the invention shown in Figure 3 has been tested over a range of constant and bi-level CPAP treatment pressures. For comparison purposes, an identical mask to that shown in Fig. 3 but formed entirely from polycarbonate and having six identical arcuately spaced holes 22 drilled directly through the mask shell was also tested. In both masks the six holes had a diameter of 1.7 mm. The results of the test are summarised in the Tables below: [R:\LIBD]0094 I.doc:DMB:MFF o.
~5 0 a a a a a a a. TABLE 1 Constant level gas delivery Pressure Noise levels lm from mask (dBA) (cm
H
2 0) With flexible insert Without flexible insert 4 26.8 35.2 33.4 43.1 18 39.3 49.2 TABLE 2 Bi-level gas delivery Pressure Noise levels Im from mask (dBA) (cm With flexible insert Without flexible insert 10 30.8 38.5 37.2 43.0 15 38.6 43.7 42.9 47.9 As the results show, the mask shown in Figure 3 produced less radiated noise than a similar mask not including the flexible elastomeric insert 20 representing a significant advantage in terms of the comfort of the mask wearer and their bed partner.
In addition to the noise reduction discussed above, the masks 10 possesses other advantages over those of the prior art. Firstly, the insert 20 is very easy to install into the mask shell 12 during either assembly of the mask which, is often supplied in kit form, or before and after cleaning which is regularly required and often carried out in the home environment. Secondly, the mask shell 12 may be produced with a single size of opening 26 and provided with a range of different inserts 20 which allows the outlet size to be "tuned" to give an optimum gas washout rate for a particular patient's treatment pressure level.
Although the invention has been described with reference to specific examples, it will be appreciated by those skilled in the art, that the invention may be embodied in many other forms.
[R:\LIBD]00941.doc:DMB:MFF

Claims (14)

1. A mask for use with a system for supplying breathable gas pressurised above atmospheric pressure to a human or animal's airways, the mask includes a mask shell which is, in use, in fluid communication with a gas supply conduit; and a gas washout vent assembly, the gas washout vent assembly includes at least one gas washout orifice extending from a first side of the vent assembly positioned, in use, adjacent the human or animal's face and a second side positioned, in use, adjacent the atmosphere and the cross-sectional area of the orifice at the first side is larger than the cross-sectional area of the orifice at the second side. I
2. A mask as claimed in claim 1, wherein the orifice includes a first substantially cylindrical portion adjacent the first side, a second cylindrical portion adjacent the second side and a tapering portion between the first and second substantially cylindrical portions.
3. A mask as claimed in claim 2, wherein the second substantially S.0: 15 cylindrical portion and the tapering portion are of approximately equal thickness in the 0 *0axial direction of the orifice and are thicker than the first substantially cylindrical portion.
4. A mask as claimed in claim 1,2 or 3, wherein the vent assembly includes a plurality of said orifices therethrough. 20 5. A mask as claimed in claim 4, wherein each of said orifices is separated from the other(s) of said orifices by at least the diameter of the orifice at the second side.
6. A mask as claimed in any one of the preceding claims, wherein the mask shell and/or conduit is formed from a relatively rigid material and the vent assembly is an insert of relatively flexible elastomeric material and is attachable to the mask shell or conduit.
7. A mask as claimed in claim 6, wherein the mask shell and/or conduit is formed from polycarbonate and the insert is formed from Silastic M or Santoprene M
8. A mask as claimed in claim 6 or 7, wherein the insert includes a groove around its periphery, the groove adapted to locate the insert against a correspondingly sized rim of an opening formed in the mask shell or conduit.
9. A mask as claimed in claim 6, 7 or 8, wherein the insert is substantially crescent shaped. A vent assembly for the washout of gas from a mask or conduit used with a system for supplying breathable gas pressurized above atmospheric pressure to a [R:\LIBD]00941 I.doc:DMB:MFF -8- human or animal, the vent assembly includes at least one gas washout orifice extending from a first side of the vent assembly placed, in use, adjacent the human or animal's face to a second side placed, in use, adjacent the atmosphere, the cross-sectional area of the orifice at the first side is larger than the cross-sectional area of the orifice at the second side.
11. A vent assembly as claimed in claim 10, wherein the orifice includes a first substantially cylindrical portion adjacent the first side, a second cylindrical portion adjacent the second side and a tapering portion between the first and second substantially cylindrical portions. S 10 12. A vent assembly as claimed in claim 11, wherein the second substantially cylindrical portion and the tapering portion are of approximately equal thickness in the axial direction of the orifice and are thicker than the first substantially elsecylindrical portion.
13. A vent assembly as claimed in claim 10, 11 or 12, wherein the vent 15 assembly includes a plurality of said orifices therethrough.
14. A vent assembly as claimed in claim 13, wherein each of said orifices is separated from the other(s) of said orifices by at least the diameter of the orifice at the .:O.Oi second side. 5*5555 A vent assembly as claimed in any one of the claims 10 to 14, wherein 20 the mask shell and/or conduit is formed from a relatively rigid material and the vent assembly is an insert of relatively flexible elastomeric material and is attachable to the mask shell or conduit.
16. A vent assembly as claimed in claim 15, wherein the mask shell and/or conduit is formed from polycarbonate and the insert is formed from Silastic' or Santoprene T M
17. A vent assembly as claimed in claim 15 or 16, wherein the insert includes a groove around its periphery, the groove adapted to locate the insert against a correspondingly sized rim of an opening formed in the mask shell or conduit.
18. A vent assembly as claimed in claim 15, 16 or 17, wherein the insert is substantially crescent shaped. DATED this Eighteenth Day of November, 1999 ResMed Limited Patent Attorneys for the Applicant/Nominated Person SPRUSON FERGUSON [R:\LIBD]0094 .doc DMB'MFF
AU59564/99A 1997-02-10 1999-11-19 A mask and a vent assembly therefor Expired AU724360B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU59564/99A AU724360B2 (en) 1997-02-10 1999-11-19 A mask and a vent assembly therefor

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AUPO5045 1997-02-10
AU59564/99A AU724360B2 (en) 1997-02-10 1999-11-19 A mask and a vent assembly therefor

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
AU53019/98A Division AU712236B2 (en) 1997-02-10 1998-02-09 A mask and a vent assembly therefor

Publications (2)

Publication Number Publication Date
AU5956499A true AU5956499A (en) 2000-02-17
AU724360B2 AU724360B2 (en) 2000-09-21

Family

ID=3744812

Family Applications (1)

Application Number Title Priority Date Filing Date
AU59564/99A Expired AU724360B2 (en) 1997-02-10 1999-11-19 A mask and a vent assembly therefor

Country Status (1)

Country Link
AU (1) AU724360B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6851425B2 (en) 2001-05-25 2005-02-08 Respironics, Inc. Exhaust port assembly for a pressure support system

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8028698B2 (en) 2006-09-18 2011-10-04 Invacare Corporation Breathing mask

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1395391A (en) * 1972-04-14 1975-05-29 Vickers Ltd Medical face masks
GB2267648A (en) * 1992-06-12 1993-12-15 Mel A face mask incorporating breathing equipment for aircrew

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6851425B2 (en) 2001-05-25 2005-02-08 Respironics, Inc. Exhaust port assembly for a pressure support system
US7568482B2 (en) 2001-05-25 2009-08-04 Ric Investments, Llc Exhaust port assembly for a pressure support system
US8061355B2 (en) 2001-05-25 2011-11-22 Ric Investments, Llc. Exhaust port assembly for a pressure support system

Also Published As

Publication number Publication date
AU724360B2 (en) 2000-09-21

Similar Documents

Publication Publication Date Title
AU712236B2 (en) A mask and a vent assembly therefor
US7845354B2 (en) Mask and vent assembly therefor
EP1152787B1 (en) An anti-asphyxia valve
US8517022B2 (en) Minimally invasive nasal cannula
US20220096768A1 (en) Exhaust arrangement for patient interface device and patient interface including same
AU744593B2 (en) An anti-asphyxia valve
EP2281597A1 (en) Respiratory nasal mask with a rotatable gas connector having one or several venting ports
AU724360B2 (en) A mask and a vent assembly therefor
US20230398317A1 (en) Exhaust diffuser arrangement and cpap mask including same
WO2023237368A1 (en) Exhaust diffuser arrangement and cpap mask including same

Legal Events

Date Code Title Description
FGA Letters patent sealed or granted (standard patent)