AU2006225083B2

Respiratory mask assembly with magnetic coupling to headgear assembly

Abstract

A respiratory mask assembly for delivering breathable gas to a patient includes a frame (420) and a headgear assembly (480) which are adapted to being remove ably magnetically coupled to one another at a desired angular orientation therebetween.

AU2006225083B2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 16 March 2026, 0.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

37 claims: 24 independent, 13 dependent

  1. 1
    [00242] Figs. 47A-47C show one arrangement of a clip assembly 600 where the first magnetic element includes a positional magnet 606 and a directional magnet 608. As shown in the Figures, the facing surfaces of the respective magnets 606, 608 are disposed in substantially perpendicular planes. The connector 602 is provided with a use surface 610 in a first plane and an adjustment surface 612 in a second plane. The use surface 610 and the adjustment surface 612 are selectively engageable with the positional magnet 606 as shown in Figs. 47B and 47C. The connector 602, with reference to Fig. 47A, has its magnetic element 614 disposed at an end thereof. [00243] In use, the connector magnetic element 614 is operatively engaged with the directional magnet 608 to secure the connector 602 to the connector receptor 604 when the use surface 610 is engaged with the positional magnet 606. The magnetic element 614 is disengaged from the directional magnet 608 when the.adjustment surface 612 is engaged with the positional magnet 606 as shown in Fig. 47C. This allows physical rotation of the connector 602 within connector receptor 604 whilst still engaged. When the desired rotation is achieved, connector surface 610 can once again engage with WO 2006/096924 PCT/AU2006/000350 the positional magnet 606 causing the magnetic element 614 to engage with the directional magnet 608 which is, in this embodiment; a series of directional magnets located in series around the connector receptor 604. [00244] To remove the connector 602 from the connector receptor 604, surface 612 engages with magnet 606 by pivoting of connector 602 into the cavity of the connector receptor 604. This allows release of the connector 602 from magnet 606 and connector receptor 604. [00245] The ring 616 is mechanically rotationally adjustable within the receptor 604 to various positions of ring 616 and therefore also of the first magnetic element 618. [00246] Fig. 48 is a schematic view of an alternative configuration where the connector receptor 604 is an adjustable ring 616. The first magnetic element 618 is disposed in the adjustable ring 616 such that a position of the magnetic element 618 is dependent on a position of the adjustable ring 616. The connector 602 is shaped to engage the inside diameter of the adjustable ring 616, and the second magnetic element 620 is positioned on the connector 602 to engage the first magnetic element 618 and thereby secure the connector 602 in the connector receptor 604. The ring 616 allows rotational adjustment, and the attractive forces of the respective magnets 618, 620 enable the connector 602 to automatically align itself in the ring 616. [00247] Figs. 49A and 49B illustrate yet another alternative clip assembly. In this arrangement, the first magnetic element is a ring magnet 622 having alternating poles oriented in segments on an inside diameter and an insert magnet 624 sized to fit in a central opening of the ring magnet 622. The insert magnet 624 is selectively insertable in the central opening via a lever 626 operated via a pushbutton 628 or the like. The connector 602 has its magnetic element 630 positioned on the connector 602 to engage the ring magnet 622 and connect the connector 602 to the connector receptor 604. [00248] The ring magnet 622 may be optionally biased toward a first position via any suitable means, e.g., a spring, magnets, and/or resiliency of lever 626, in which the connector magnetic element 630 is oppositely poled relative to a facing segment on the ring magnet 622. When the insert magnet 624 is inserted into the ring magnet central WO 2006/096924 PCT/AU2006/000350 opening via the lever assembly 626, 628, the ring magnet 622 is caused to rotate against the bias by the magnetic field toward a second position in which the connector magnetic element 630 has a same pole relative to a facing segment on the ring magnet 622 to thereby release the connector 602 from the connector receptor 604. [00249] In still another alternative arrangement, with reference to Figs. 50A-50C, the connector 602 may be provided with a lever assembly 632 that is selectively operable to disconnect the engagement between the connector magnetic element 634 and the connector receptor magnetic element 636. Preferably, the lever assembly 632 includes a pair of opposing levers 638 operable via respective pushbuttons 640. The lever assembly 632 is configured such that depressing the pushbuttons 640 causes the opposing levers 638 to disconnect the engagement between the respective magnetic elements 634, 636. The mechanical leverage of the lever assembly 632 interferes with the magnetic attraction between the magnetic elements 634, 636 until the magnetic field is void. [00250] A related variation is illustrated in Figs. 51A and 51B. In this context, the connector receptor magnetic element 642 is set within a raised area 644 on the connector receptor 604. The connector magnetic element 646 is set within a recess in the connector 602, which recess is sized to fit over the raised area 644 to thereby engage the respective magnetic elements 642, 646. The lever 648 in this embodiment is preferably constructed to lift the connector recess from the connector receptor raised area 644. [00251] An alternative clip assembly is illustrated in Figs. 52A and 52B. The assembly includes a connector 650 which is coupled with the headgear assembly. A rocker switch 652 is attached to the mask 654 and is rockable between a lock position (shown in Fig. 52B) and a release position (shown in Fig. 52A). A first magnet 656 is disposed on the mask 654, and a second magnet 658 is disposed on a leg of the rocker switch 652 as shown. The first and second magnets are disposed in a facing relation when the rocker switch 652 is in the lock position. In a preferred arrangement, the first magnet 656 and the second magnet 658 are aligned with same poles in facing relation when the rocker switch 652 is in the lock position. This clip assembly utilizes the magnets to locate the clip and geometry to lock the clip in place. With the facing like WO 2006/096924 PCT/AU2006/000350 pole magnets 656, 658, the attachment is biased open. When the connector 650 is placed between the rocker switch 652 and the mask 654 both magnets 658 and 656 are attracted to the material of 650 thus negating their same pole repulsion, and, the rocker switch 652 can be pivoted to the lock position where a pin 660 on the rocker switch 652 engages an aperture 662 on the connector 650. [00252] The use of magnetic elements may also facilitate engagement of headgear straps. Figs. 53A and 53B illustrate a strap 664 of a headgear assembly including a magnetic clip 666 at an end thereof. The magnetic clip 666 may be engageable with a magnetic housing 668 or the like to secure the mask to a patient’s face. That is, when the clip 666 engages with the magnetic housing 668, due to embedded magnetic material that becomes active when a magnetic force is applied when the clip is engaged, the strap in the headgear aligns and forms a rigid structure conforming to the user’s facial features. [00253] In a related context, with reference to Figs. 54A and 54B, the straps 664 of the headgear assembly may include diamagnetic and paramagnetic materials embedded therein enabling automatic tensioning of the headgear assembly using a magnetic dial 670 with varying strength of magnetic field, e.g., north to south. The diamagnetic and paramagnetic materials embedded within the headgear material become active when exposed to a magnetic field resulting in attraction or repulsion of the elements within the material that enable automatic tensioning of the headgear. . [00254] It will be appreciated that where reference is made to diamagnetic or paramagnetic materials, other types of magnetic materials may be used instead of or in addition to these, and such materials are intended to be encompassed herein. [00255] Appendix A of incorporated U.S. Provisional Application of Moore et al., Serial No. 60/402,509, includes various pictures of the mask system according to one preferred embodiment of the present invention. Appendix A also includes various pictures of the mask system according to other embodiments of the present invention. For example, an embodiment of the frame is provided that illustrates a frame having oxygen or pressure ports. See, e.g. Fig. 41. Further details of oxygen or pressure ports in a frame are included in U.S. Patent Application No. 09/504,234, the entirety of which is WO 2006/096924 PCT/AU2006/000350 hereby incorporated by reference. Appendix A also includes instructional information for the mask system. Appendix B of incorporated U.S. Provisional Application of Moore et al., Serial No. 60/402,509, includes pictures of two prior art masks discussed in the present invention. Appendix C of incorporated U.S. Provisional Application of Moore et al., Serial No. 60/402,509, includes pictures of two testing models (A + B) with widely varying nose and facial features, and the mask assembly of the present invention as well as one prior art mask connected to each model. Appendix C also includes a series of pictures comparing one embodiment of the present invention to a prior art cushion used for the MIRAGE® mask. See, e.g., U.S. Patent No. 6,112,746 to Kwok et al., incorporated herein by reference. Generally speaking, the mask assembly of the present invention generally conformed to both nose models even though the sizes and shapes were vastly different. The mask cushion 40 also was able to successfully accommodate the deformity on model B. The mask assembly of the prior art tended not to fit the shape of the nose models, especially the shape of the smaller nose model where significant gaps are.seen. One prior art model (see U.S. Patent No. 5,724,965) was relatively unstable and tended to rock on the cheeks of the models, especially the smaller nose model. [00256] It is intended that the components, elements and features of the various above-described embodiments can be used together in any desired combination or permutation to create new mask embodiments. For example, while the invention has been described in relation to a nasal mask, the teachings are also applicable to oro-nasal and full-face masks as well. [00257] While the invention has been described in connection with what is presently considered to be the most practical and preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiment, but on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims. 2006225083 16 Mar 2006 1. A respiratory mask assembly, comprising:a frame adapted to fit over at least the nose of a patient and including a main body and a member on each lateral side of the main body, each member having a retaining structure to retain a first magnet and at least one tooth;a mask cushion provided to the frame to rest on the patient’s face;a swivel elbow, provided to said frame between the first magnets, the elbow including at least one vent opening for washout of exhaled carbon dioxide;and a headgear assembly to secure the frame to the head of the patient, the headgear assembly comprising a plurality of straps including at least one left side strap and at least one right side strap, wherein each of the left side strap and the right side strap includes a connector having at least one recess into which the at least one tooth of the respective members can be inserted to rotationally lock the connectors with respect to the members, wherein each connector further including an aperture leading to a bore, wherein each bore includes either a second magnet or a ferrous metal piece secured therein, wherein each connector is magnetically attachable to the respective members, by magnetic attraction.
  2. 2
    A respiratory mask assembly for delivering breathable gas to a patient, comprising:a frame having a main frame body and side frame members provided on each respective lateral side of the main frame body;2006225083 16 Mar 2006 a headgear assembly, including a pair of connection pieces for connection with respective ones of the side frame members;a magnetic coupling assembly operatively associated with said frame and headgear assembly to allow the frame and headgear assembly to be removeably attachable one to another at a desired angular orientation therebetween, wherein the magnetic coupling assembly includes a two-part magnetic coupler system, wherein a first part of said two-part magnetic coupler system is associated with said side frame members, and wherein a second part of said two-part magnetic coupler system is associated with said connection pieces;a boss provided to each of the side frame members that defines a recess having the first part of the two-part magnetic coupler system, and wherein the connection pieces each include a connector puck which includes the second part of said two-part magnetic coupler system, wherein each connector puck is sized and configured to be inserted within a respective recess of said side frame members and thereby magnetically couple said first and second parts of said two-part magnetic coupler system, wherein each connector puck defines one or more spaces, and wherein each recess comprises at least one stop tooth engageable with a selected one of the spaces so as to establish said desired angular orientation between said frame and said headgear assembly.
  3. 3
    A respiratory mask assembly for delivering a flow of breathable gas to a patient, the respiratory mask assembly comprising:a frame adapted to fit over at least the nose of the patient, the frame including a bore for the introduction of the breathable gas into the mask and two cylindrical bosses, 2006225083 16 Mar 2006 wherein the two cylindrical bosses are provided on opposite sides of the bore and each cylindrical boss defines a cylindrical recess;a mask cushion provided to the frame to sealingly engage the patient’s face in use;a swivel connected to said frame at the bore and between the two cylindrical bosses, the swivel including at least one vent opening for washout of exhaled carbon dioxide;a headgear assembly to secure the frame to the head of the patient, the headgear assembly comprising a plurality of straps including at least one left side strap and at least one right side strap, wherein each of the left side strap and the right side strap includes a connection piece attached to the strap, each connection piece having a cylindrical connector puck configured to be received in a respective cylindrical recess of a respective cylindrical boss;and a magnetic coupling assembly configured to couple the headgear assembly to the frame, the magnetic coupling assembly comprising two first magnets and two second magnets, each first magnet being provided in a respective cylindrical boss and each second magnet being provided in a respective cylindrical connector puck, wherein each connection piece is coupled to the frame by insertion of the respective cylindrical connector pucks into the respective cylindrical recesses and magnetic attraction between the respective first and second magnets.
  4. 5
    A connection assembly for releasably securing a respiratory mask to a headgear assembly, the respiratory mask comprising a frame having at least one recess defined on the frame's outer surface, the headgear assembly having at least one strap, wherein the connection assembly comprises:at least one first magnet mounted in or on the recess;at least one connector joined to the at least one strap by a receiving slot mounted on a first end of the connector and a first protrusion on an opposed end;and a second magnet mounted in or on the first protrusion, wherein the first magnet is attracted and secured to the second magnet, when in use, and the first protrusion is adapted to be received and secured by the recess.
  5. 8
    A connection assembly according to any one of claims 5-7, further comprising a second protrusion mounted on the frame proximal to the recess and adapted to engage a mating portion on the at least one connector. 2006225083 16 Mar 2006
  6. 9
    A connection assembly for releasably securing a respiratory mask to a headgear assembly, the connection assembly comprising:a first connector;and a second connector, wherein the first connector and the second connector are joined and secured by a magnetic coupling comprising at least one magnet positioned in one of the first connector and the second connector to magnetically interact with the other of the first connector and the second connector, and a mechanical coupling comprising at least one protrusion from a surface of the first connector adapted to securably engage a receiving portion located on the second connector.
  7. 12
    A connection assembly according to any one of claims claim 9-11, wherein the first and second connectors include magnets. 2006225083 16 Mar 2006
  8. 13
    A connection assembly according to any one of claims 9-12, wherein the magnets are at least partially embedded within the first and second connectors.
  9. 14
    A connection assembly according to any one of claims 9-13, wherein the first connector is mounted on a frame of the respiratory mask and the second connector is mounted on a strap of the headgear assembly.
  10. 15
    A respiratory mask assembly for delivering breathable gas to a patient comprising:a mask frame comprising a left first connector portion and a right first connector portion, each first connector portion including a retaining structure retaining cylindrical shaped magnet;a mask cushion attached to the mask frame;a headgear assembly comprising a left second connector portion and a right second connector portion adapted for interconnection with said left and right first connector portions of the mask frame, respectively, each of said left and right second connector portions having a magnet, wherein, once the left and right second connector portions are magnetically connected with the left and right first connector portions, they are locked or constrained against rotation such that they may not rotate relative to one another.
  11. 21
    21/64 WO 2006/096924 PCT/AU2006/000350
  12. 22
    22/64 co 362 . 360 co FIG. 18b FIG. 18c WO 2006/096924 PCT/AU2006/000350
  13. 23
    23/64 FIG. 18d FIG. 18e WO 2006/096924 PCT/AU2006/000350
  14. 24
    24/64 CM I σ CK L-D6L Old WO 2006/096924 PCT/AU2006/000350
  15. 25
    25/64 CN I Q CN O LL_ OI _Q <O G. 19b-l WO 2006/096924 PCT/AU2006/000350
  16. 26
    26/64 EXHAUST FIG. 19c-l WO 2006/096924 PCT/AU2006/000350
  17. 27
    27/64. ο co FIG. 20 FIG. 21 FIG. 22 WO 2006/096924 PCT/AU2006/000350
  18. 28
    28/64 FIG. 22d 380 Ο CM CM o WO 2006/096924 PCT/AU2006/000350
  19. 29
    29/64 380 CO CN O LL. PCT/AU2006/000350
  20. 30
    30/64 WO 2006/096924 FIG. 24α FIG. 24b WO 2006/096924 PCT/AU2006/000350
  21. 31
    31/64 FIG. 24c FIG. 24d WO 2006/096924 PCT/AU2006/000350
  22. 32
    32/64 255 FIG. 24e WO 2006/096924 PCT/AU2006/000350
  23. 33
    33/64 FIG. 24f FIG. 24g 264 WO 2006/096924 PCT/AU2006/000350
  24. 34
    34/64 FIG. 25α FIG. 25b WO 2006/096924 PCT/AU2006/000350
  25. 35
    35/64 200 FIG. 25c FIG. 25d WO 2006/096924 PCT/AU2006/000350
  26. 36
    36/64 Φ LO CN O LL. WO 2006/096924 PCT/AU2006/000350
  27. 37
    37/64 WO 2006/096924 PCT/AU2006/000350 FIG. 26 PCT/AU2006/000350 39/64 WO 2006/096924 ¥40 FIG. 27α PCT/AU2006/000350 40/64 WO 2006/096924 CM FIG. 27d FIG. 27e FIG. 28 WO 2006/096924 PCT/AU2006/000350 41/64 WO 2006/096924 PCT/AU2006/000350 42/64 •<r FIG. 29c FIG. 29d WO 2006/096924 PCT/AU2006/000350 43/64 PCT/AU2006/000350 44/64 WO 2006/096924 ud K od PCT/AU2006/000350 45/64 WO 2006/096924 I CO t O 04 CO o LiWO 2006/096924 PCT/AU2006/000350 46/64 ! CN CO o i r WO 2006/096924 PCT/AU2006/000350 47/64 σ urj r—— 04 XI to σ o 04 CM u CM CO O LX. I kJ CM CO <2 L±_ WO 2006/096924 PCT/AU2006/000350 48/64 FIG. 32d WO 2006/096924 PCT/AU2006/000350 49/64 FIG. 32e WO 2006/096924 PCT/AU2006/000350 FIG. 33 480 480 FIG. 34 WO 2006/096924 PCT/AU2006/000350 51/64 480 420b FIG. 36 WO 2006/096924 PCT/AU2006/000350 52/64 420b FIG. 37 WO 2006/096924 PCT/AU2006/000350 53/64 40α FIG. 38A FIG. 38C WO 2006/096924 PCT/AU2006/000350 FIG. 39C FIG. 39D WO 2006/096924 PCT/AU2006/000350 55/64 FIG.40 FIG. 41 WO 2006/096924 PCT/AU2006/000350 56/64 / FIG.42 WO 2006/096924 PCT/AU2006/000350 57/64 500 504 FIG.45 510 WO 2006/096924 PCT/AU2006/000350 58/64 FIG. 46 614 WO 2006/096924 PCT/AU2006/000350 59/64 FIG. A7B 602 WO 2006/096924 PCT/AU2006/000350 60/64 FIG. 49 A WO 2006/096924 PCT/AU2006/000350 61/64 602 50B 604 FIG.50C WO 2006/096924 PCT/AU2006/000350 62/64 FIG.5IB 604 WO 2006/096924 PCT/AU2006/000350 63/64 FIG.52B WO 2006/096924 PCT/AU2006/000350 64/64 670
Independent claims27