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EP 0 984 820 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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22.08.2001 Bulletin 2001/34 |
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Date of filing: 19.05.1998 |
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International Patent Classification (IPC)7: A63B 23/18 |
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International application number: |
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PCT/GB9801/310 |
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International publication number: |
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WO 9852/651 (26.11.1998 Gazette 1998/47) |
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RESPIRATORY MUSCLE TRAINING DEVICE
TRAINIERVORRICHTUNG DES ATEMMUSKELS
DISPOSITIF D'ENTRAINEMENT POUR MUSCLES RESPIRATOIRES
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Designated Contracting States: |
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AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE |
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Priority: |
21.05.1997 GB 9710306 18.07.1997 GB 9715070 27.10.1997 GB 9722565
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Date of publication of application: |
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15.03.2000 Bulletin 2000/11 |
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Proprietor: Carlyle, James William |
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Cambridgeshire PE13 1HY (GB) |
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Inventor: |
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- Carlyle, James William
Cambridgeshire PE13 1HY (GB)
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Representative: Shaw, Laurence |
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5th Floor,
Metropolitan House,
1 Hagley Road,
Edgbaston Birmingham B16 8TG Birmingham B16 8TG (GB) |
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References cited: :
EP-A- 0 513 712 US-A- 3 695 608
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GB-A- 2 278 545 US-A- 4 739 987
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] This invention relates to respiratory muscle training devices.
[0002] In US patent no. 4770413 is disclosed a respiratory muscle training device comprising
a mouthpiece attached to a tubular body with a resistor sleeve coaxial with the body
tube and having a number of resistance openings which align with a body tube opening
and a selective one way flap exhaust valve which can be rotated 180 degrees to provide
for inspiratory or expiratory training. This arrangement has a number of drawbacks:
1) The design makes it expensive to injection mould.
2) The nature of its construction and components makes it difficult to disassemble,
clean and reassemble.
3) The size of the resistance opening is not infinitely and continuously variable,
fine adjustments to its size not being possible, whilst the process of selecting a
particular resistance setting might be problematic for an elderly population with
impaired dexterity.
4) The immediacy with which the exhaust valve shuts on commencing inhalation places
a disproportionately high load on the respiratory muscles at the commencement of inhalation
requiring them to 'jerk' into action, which:
- is potentially damaging to the respiratory muscles, particularly those of the elderly
population for whom the device is largely prescribed, and
- is unfavourable to some users, particularly sports people, who prefer the load to
be experienced at a fractionally later stage during the inhalation process.
[0003] US-A-4739987 discloses a respiratory exercise device to promote inhalation and exhalation
resistance. The device comprises a mouthpiece connected to a tubular body portion,
having at each end a controlled opening, one being for inhalation and the other for
exhalation. The openings comprise an inner plate having a single hole and an outer
rotary plate having a range of holes of different diameters. One plate is rotated
with respect to the other for stepwise adjustments.
[0004] GB-A-2278545 discloses an inspiratory muscle training device comprising a branched
tube arrangement having a mouthpiece and a spring loaded inlet vale and a one-way
exhaust valve on separate branches. Rotating of a sleeve on the inlet branch can be
used to load the inlet valve.
[0005] It is an object of the present invention to provide an improved device which is made
of plastics, is simpler and safer to use, of greater benefit to healthier users and
allows for the finest of adjustments to the size of the aperture even by those with
impaired dexterity. It is also an object to make such a device which is easier to
disassemble and clean, whilst the simplicity and robustness of its components suggest
that it should last a lifetime.
[0006] Accordingly, the invention provides a respiratory muscle training device comprising
a mouthpiece connected to a tubular body portion having a one way exhaust valve in
communication with an adjustable resistance opening in the body portion, a one way
exhaust valve being present in the body portion to open and close connection through
an exhaust opening and a coaxial sleeve arranged to move in co-operation with a screw
thread arrangement between the sleeve and the body whereby rotation of the sleeve
at the body portion moves one linearly with respect to the other in the direction
of the longitudinal axis of the body portion to provide a continuously variable obscuring
of the resistance opening between the fully obscured and the non-obscured positions.
[0007] In one embodiment the exhaust valve is a ball valve contained in an adjustable housing
whereby the distance the valve has to travel to seal off the exhaust opening during
inhalation by a user of the mouthpiece is adjustable. Thus, in this embodiment the
device comprises a one way exhaust valve, wherein the distance that the ball of the
ball valve is required to travel in order to seal the exhaust aperture during inspiratory
training is adjustable. It is also possible for said distance to be reduced to zero,
such that the exhaust aperture is permanently though reversibly sealed, so allowing
for expiratory training.
[0008] In a preferred embodiment a tubular sleeve is mounted to be movable on the body portion,
the body portion having guide means to enable the position of the sleeve to move relative
to the body portion whereby the resistance opening can be obscured to a greater or
lesser extent by the sleeve, the degree of obscurement being continuously variable
between the fully obscured and the not obscured positions of the sleeve.
[0009] The guide means may consist of a screw thread arrangement between the tubular body
portion and the sleeve whereby rotation of the sleeve or tubular body portion moves
them linearly with respect to each other in the direction of the longitudinal axis
of the body portion. The screw thread preferably extends on the outer surface of the
tubular body containing the resistance opening. Thus the body portion can be engaged
to and co-operable with a corresponding thread on the inner surface of the sleeve
such that when the sleeve is rotated it moves in a controlled and linear fashion backwards
and forwards over the resistance opening.
[0010] In one embodiment the device may be of generally T' shape with the tubular body portion
providing the cross-bar of the T' and the mouthpiece and its connection to the body
portion providing the tail of the T'. In this embodiment the resistance opening may
be on one arm of the cross-bar of the T' and the exhaust valve on the other arm of
the cross-bar of the T'. The means to obscure the resistance opening may be a threaded
sleeve in the form of an end-cap on the arm of the cross-bar of the T'.
[0011] In another embodiment the device may be generally linear with the mouthpiece at one
end, the exhaust valve at the other end and the resistance opening located between
them.
[0012] Specific embodiments of the invention will now be described by way of example with
reference to the accompanying drawings in which:
Figure 1 shows a plan view of one device of the invention from above, in the fully
closed position;
Figure 2 shows the device of Figure 1 opened and ready for use;
Figure 3 shows in cross-section the device as depicted in Figure 1;
Figure 4 is a similar view to Figure 2 of a second device of the invention; and
Figure 5 shows in cross-section the upper half of the device depicted in Figure 4
as viewed from below.
[0013] Referring to Figure 1 the device 10 comprises a T-shaped tube arrangement, portion
11 of which serves as the mouthpiece through which the user breathes and tubular body
portion 12 of which remains external to the mouth serving to control the flow of air
through the device during inhalation and exhalation.
[0014] Referring to Figure 2 the restriction placed on the flow of air through the device
during inhalation is adjusted by means of the screwcap 13 on one end of body portion
12. Unscrewing the screwcap 13 reveals an aperture 14 through which air enters during
inhalation; the more of the screwcap 13 is unscrewed the greater the effective size
of the aperture 14. Increasing the effective size of the aperture 14 reduces the load
on the inspiratory muscles during inhalation making inhalation easier whilst reducing
the effective size of the aperture 14 increases the load making inhalation harder.
The thread of the screwcap 13 is sufficiently fine so as to ensure that fine adjustments
to the effective size of the aperture 14 are possible.
[0015] During exhalation the air leaves the device primarily through the apertures 15 which
are of a fixed size and collectively much larger than the aperture 14 so ensuring
that the user can exhale freely.
[0016] Referring to Figure 3 the cross-section reveals the ball valve system which controls
the flow of air through the apertures 15 during inhalation and exhalation. During
inhalation air is drawn through the mouthpiece 11 in the direction of the arrow 16,
so decreasing the pressure in the chamber 17 inside the tubular body. Whilst this
momentarily causes some air to be drawn through the apertures 15, air which is drawn
in through a small hole 18, in an end-cap 22 threaded on to the opposite end of body
portion 12 to cap 13, soon forces a lightweight plastic ball 19 placed inside end-cap
22 in the direction of the arrow 20. The exhaust aperture 21 defined by annular shoulder
21A in the body portion is thereby sealed. The exhaust aperture might also feature
a rubber washer to improve the seal. This sealing effect ensures that the air entering
the mouthpiece is subsequently limited to that passing through the aperture 14. The
momentary delay in the action of the ball valve in sealing the exhaust aperture 21
allows the user, on commencing inhalation, to gain some momentum before the resistance
is met, this providing for both a safer and more pleasant experience. The duration
of this delay may be increased by unscrewing the screwcap 22: the more the screwcap
22 is unscrewed, the greater the distance the ball 19 has to travel in order to seal
the exhaust aperture 21 and so the greater the delay experienced before the resistance
is met.
[0017] On exhaling through the device the pressure in the chamber 17 increases causing the
ball 19 to return to its starting position as depicted in Figure 3 thereby allowing
the air to escape freely through both the aperture 14 and the larger apertures 15.
[0018] Referring to Figure 4 the device comprises a generally linear tubular body 30 having
an end portion 31 being connected to a rubber mouthpiece (not shown) through which
the user breathes and a portion 32 remaining external to the mouth and serving to
control the flow of air through the device during inhalation and exhalation. The restriction
placed on the flow of air through the device during inhalation is adjusted by means
of a threaded sleeve 33 coaxial to the tubular body which, being engaged to and co-operable
with a corresponding thread 34 on the surface of the tubular body, when rotated clockwise
or anticlockwise, adjustably obstructs an aperture 35 cut into the tubular body through
which air enters during inhalation. Increasing the effective size of the aperture
35 reduces the load on the inspiratory muscles during inhalation making inhalation
easier whilst reducing the effective size of the aperture 35 increases the load making
inhalation harder. The thread of the sleeve 33 is sufficiently fine to ensure that
fine adjustments to the effective size of the aperture 35 are possible.
During exhalation the air leaves the device both through the aperture 35 and an aperture
36 which is of a sufficient size to ensure the user is able to exhale freely.
[0019] Referring to Figure 5, the cross-section reveals the ball valve system which controls
the flow of air through the aperture 36 during inhalation and exhalation. During inhalation
air is drawn through the mouthpiece 31 in the direction of the arrow 37, so decreasing
the pressure in the chamber 38. Whilst this momentarily causes some air to be drawn
through the aperture 36, air which is drawn in through the holes 39 in a screw-threaded
end-cap 43 soon forces lightweight plastic ball 40 in the body in the direction of
the arrow 41 thereby sealing the exhaust aperture 42 defined by an annular shoulder
42A and ensuring that the air entering the mouthpiece is subsequently limited to that
passing through the aperture 35.
[0020] The duration of the momentary delay in the action of the ball valve in sealing the
exhaust aperture 42 which determines the degree of momentum achieved in the inhalation
process before the resistance is met, may be increased by unscrewing the threaded
screwcap 43 which is engaged to a corresponding thread 44 on the surface of portion
32: the more the screwcap 43 is unscrewed, the greater the distance the ball 40 has
to travel in order to seal the exhaust aperture 42 and so the greater the delay experienced
before the resistance is met. This ability to increase the delay is again important
since it helps guard against the possibility of overstressing or jerking' the respiratory
muscles at the commencement of inspiration.
[0021] On exhaling through the device the pressure in the chamber 38 increases causing the
ball 40 to return to its starting position as depicted in Figure 5 abutting a pin
45 in end-cap 43 thereby allowing the air to escape freely through both the aperture
35 and the larger aperture 36.
[0022] It will be noted that the inclusion of the one way exhaust valve is not essential
to the device. The device might just include the sleeve 33 and aperture 35 arrangement
with the end of the tubular body being sealed in which case the user, during inspiratory
training, would be required to exhale through their nose.
[0023] The device may also be used for expiratory muscle training. To do so the cap 43 is
rotated so as to cause the plastic ball 40 to seal the exhaust aperture. The user
then breathes in through the nose and out through the device, the expiratory resistance
being varied by adjustably obstructing the aperture 35 by rotating the sleeve 33 as
described above.
[0024] The device may be prescribed for persons with respiratory problems, or anybody wishing
to develop the strength and endurance of their respiratory muscles e.g. singers, athletes,
divers.
1. A respiratory muscle training device (10; 30) comprising a mouthpiece (11; 31) connected
to a tubular body portion (12; 30) having a one way exhaust valve (19, 40) in communication
with an adjustable resistance opening (14; 35) in the body portion, the one way exhaust
valve (19; 40) being present in the body portion to open and close connection through
an exhaust opening (21; 39) and a coaxial sleeve (13; 33) arranged to move in co-operation
with a screw thread arrangement between the sleeve and the body whereby rotation of
the sleeve (13; 33) or the body portion (12; 30) moves one linearly with respect to
the other in the direction of the longitudinal axis of the body portion to provide
a continuously variable obscuring of the resistance opening (14; 35) between the fully
obscured and the non-obscured positions.
2. A device according to Claim 1, wherein the screw thread (14; 34) extends on the outer
surface of the tubular body portion (12; 30) in the region containing the resistance
opening (14; 35).
3. A device according to any Claim 1 or 2, in the moveable sleeve (13; Figures 1 to 3)
is an end-cap (13) fitted to one end of the body portion (12) which has a lateral
mouthpiece (11) whereby the body portion is of generally T-shape.
4. A device according to any preceding Claim, including a ball valve (19; 40) contained
in an adjustable housing (22; 43) and wherein the distance the ball has to travel
to seal off the exhaust opening (15; 36) during inhalation by a user of the mouthpiece
is adjustable.
5. A device according to Claim 4, wherein the ball valve (19; 40) is arranged to abut
against an annular shoulder (21A; 42A) inside the body portion (12; 30).
6. A device according to Claim 4, wherein the distance is adjustable to cause a delay
before the ball valve (19; 40) seals the exhaust aperture (15; 36) whereby the user
on commencing inhalation can gain some momentum before resistance is met.
7. A device (Figure 4; 5) according to Claim 4, 5 or 6, wherein the distance the ball
(19) has to travel can be adjusted to zero, whereby the device can be used for expiratory
training.
1. Trainingsvorrichtung für den Atemmuskel (10; 30), die ein Mundstück (11; 31) angeschlossen
an einen röhrenförmigen Körperteil (12; 30) mit einem Rückschlagablaßventil (19, 40)
in Verbindung mit einer einstellbaren Widerstandsöffnung (14; 35) in dem Körperteil
aufweist, wobei das Rückschlagablaßventil (19; 40) in dem Körperteil zum Öffnen und
Schließen einer Verbindung durch eine Ablaßöffnung (21; 39) und eine koaxiale Hülse
(13; 33) vorliegt, die für Bewegung in Zusammenarbeit mit einer Schraubgewindeeinrichtung
zwischen der Hülse und dem Körper angeordnet ist, wodurch Drehung der Hülse (13; 33)
oder des Körperteils (12, 30) die eine linear hinsichtlich des anderen in die Richtung
der Längsachse des Körperteils bewegt, um eine kontinuierlich veränderbare Abdeckung
der Widerstandsöffnung (14; 35) zwischen der vollständig abgedeckten und der nicht
abgedeckten Position bereitzustellen.
2. Vorrichtung nach Anspruch 1, bei der das Schraubgewinde (14; 34) sich an der Außenfläche
des röhrenförmigen Körperteils (12; 30) in dem Bereich erstreckt, der die Widerstandsöffnung
(14; 35) enthält.
3. Vorrichtung nach einem der Ansprüche 1 oder 2, bei der in der bewegbaren Hülse (13;
Figuren 1 bis 3) eine Endkappe (13) an einem Ende des Körperteils (12) befestigt ist,
der ein seitliches Mündstück (11) aufweist, wodurch der Körperteil allgemein T-förmig
ist.
4. Vorrichtung nach einem vorhergehenden Anspruch, die ein Kugelventil (19; 40) enthalten
in einem einstellbaren Gehäuse (22; 43) umfaßt, und bei der der Abstand eingestellt
werden kann, den die Kugel zum Verschließen der Ablaßöffnung (15; 36) während Einatmen
durch einen Benutzer des Mundstücks zurücklegen muß.
5. Vorrichtung nach Anspruch 4, bei der das Kugelventil (19; 40) angeordnet ist, um gegen
eine ringförmige Schulter (21A, 42A) innerhalb des Körperteils (12; 30) anzuliegen.
6. Vorrichtung nach Anspruch 4, bei der der Abstand zum Verursachen einer Verzögerung
einstellbar ist, bevor das Kugelventil (19; 40) die Ablaßöffnung (15; 36) verschließt,
wodurch der Benutzer zu Beginn des Einatmens etwas Schwung holen kann, bevor er auf
Widerstand trifft.
7. Vorrichtung (Figur 4; 5) nach Anspruch 4, 5 oder 6, bei der der Abstand, den die Kugel
(19) zurücklegen muß, bei null eingestellt werden kann, wodurch die Vorrichtung für
Ausatmungstraining verwendet werden kann.
1. Appareil d'entraînement des muscles respiratoires (10 ; 30) comprenant une embouchure
(11 ; 31) liée à un corps tubulaire (12 ;30) constitué d'une valve d'évacuation d'air
unidirectionnelle (19 ; 40) qui communique avec une ouverture à résistance réglable
(14 ; 35) à l'intérieur du corps, la valve d'évacuation d'air unidirectionnelle étant
prévue dans le corps afin d'ouvrir et de fermer le passage de l'air au travers d'une
ouverture servant à l'évacuer (21 ; 39) et d'une douille coaxiale (13 ; 33) conçue
pour se déplacer grâce à un filetage disposé entre la douille et le corps, la rotation
de ladite douille (13 ; 33) ou du corps(12 ; 30) s'effectuant de façon linéaire d'un
élément par rapport à l'autre dans le sens de l'axe longitudinal du corps afin de
provoquer un effacement progressif et continu de l'ouverture à résistance (14 ; 35)
entre les deux positions totalement fermée et totalement ouverte.
2. Appareil selon la revendication 1, dans lequel le filet (14 ; 34) s'étend sur la surface
externe du corps tubulaire (12 ; 30) dans la région contenant l'ouverture à résistance(14
; 35).
3. Appareil selon l'une des revendications 1 ou 2 qui contient, à l'intérieur de la douille
amovible un bouchon (13) disposé à l'une des extrémités du corps (12) comportant une
embouchure latérale (11) lui procurant une forme générale de T.
4. Appareil selon l'une quelconque des revendications précédentes, comprenant une valve
en forme de boule (19 ; 40) contenue dans une enveloppe réglable (22 ; 43) permettant
de régler la distance que la boule doit parcourir pour fermer l'ouverture d'évacuation
de l'air pendant l'inhalation d'un utilisateur par l'embouchure.
5. Appareil selon la revendication 4, dans lequel la valve en forme de boule (19 ; 40)
est conçue pour venir en butée contre un épaulement annulaire (21A ; 42A) à l'intérieur
du corps (12 ; 30).
6. Appareil selon la revendication 4, dans lequel on peut régler la distance afin de
retarder le moment où la valve en forme de boule (19 ; 40) fermera l'ouverture servant
à évacuer l'air (15 ; 36) par laquelle l'utilisateur peut gagner, au début de l'inhalation,
quelques instants avant d'atteindre le niveau de résistance.
7. Appareil selon l'une des revendications 4, 5 ou 6, dans lequel le déplacement de la
boule (19) doit parcourir peut être réglé à zéro, correspondant à une utilisation
de l'appareil pour un travail d'expiration.