GB2432325A - Heat and moisture exchanger for use with tracheostomy tube - Google Patents

Heat and moisture exchanger for use with tracheostomy tube Download PDF

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Publication number
GB2432325A
GB2432325A GB0424583A GB0424583A GB2432325A GB 2432325 A GB2432325 A GB 2432325A GB 0424583 A GB0424583 A GB 0424583A GB 0424583 A GB0424583 A GB 0424583A GB 2432325 A GB2432325 A GB 2432325A
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GB
United Kingdom
Prior art keywords
gas
treatment device
hme
tube
treatment
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
GB0424583A
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GB0424583D0 (en
GB2432325B (en
Inventor
Eric Pagan
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Smiths Group PLC
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Smiths Group PLC
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Filing date
Publication date
Application filed by Smiths Group PLC filed Critical Smiths Group PLC
Publication of GB0424583D0 publication Critical patent/GB0424583D0/en
Publication of GB2432325A publication Critical patent/GB2432325A/en
Application granted granted Critical
Publication of GB2432325B publication Critical patent/GB2432325B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/10Preparation of respiratory gases or vapours
    • A61M16/1045Devices for humidifying or heating the inspired gas by using recovered moisture or heat from the expired gas
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/04Tracheal tubes
    • A61M16/0402Special features for tracheal tubes not otherwise provided for
    • A61M16/0427Special features for tracheal tubes not otherwise provided for with removable and re-insertable liner tubes, e.g. for cleaning
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/04Tracheal tubes
    • A61M16/0465Tracheostomy tubes; Devices for performing a tracheostomy; Accessories therefor, e.g. masks, filters
    • A61M16/047Masks, filters, surgical pads, devices for absorbing secretions, specially adapted therefor

Abstract

An HME 3 for a tracheostomy tube 1 has a flexible outer housing 30 of a gas-permeable material containing an HME element of discrete particles 42, grannules or the like of a hygroscopic material. The particles 42 are contained between the outer housing 30 and an inner wall 35 of a foam. The inner wall 35 has a ciliated surface 36 facing the end of the tube, which acts to distributr gas over the surface of the HME element. The HME is attached to a flange 23 on an inner cannula 2 by means of a removable adhesive. The HME may include a suction port 151 through a self-closing aperture 151 (Fig 3), which makes a wiping seal with a suction catheter inserted in the tube.

Description

<p>1 2432325</p>
<p>GAS-TREATMENT DEVICES</p>
<p>This invention relates to gas-treatment devices.</p>
<p>The invention is more particularly concerned with heat and moisture exchangers (HIVIEs) or the like for use with tracheostomy tubes.</p>
<p>In normal breathing, inhaled air passes through the nose where it is warmed and moistened before passing to the trachea and bronchial passages. Where a patient breathes via a tracheal tube or laryngeal mask, gas is supplied directly to the trachea, by-passing the nose.</p>
<p>The gas is, therefore, preferably warmed and moistened to prevent discomfort and damage to the lining of the trachea. This is often achieved by a heat and moisture exchange device or HME connected to the tracheal tube to receive both exhaled and inhaled gases. The HME has a moisture-absorbing element, such as of a treated paper or foam, that absorbs moisture in exhaled gases and transfers a major part of this to the inhaled gases. The element also warms inhaled gas in the same way. HMEs are sold by Portex Limited of Hythe, England under the trade mark Therrnovent. Examples of TiMEs are described in: GB 2303307; GB 2321600; GB 2277689; GB 2268496; GB2267840; GB 2233904; EP 535016; EP 533644; EP 387220: EP 265163; EP 413127; US 4516573; US 4090513; US 4771770; US 4200094; and US 4048993. The HME may also include a filter for removing particles, bacteria and viruses from gas supplied to or from the patient.</p>
<p>Conventional HMEs have an exchange element within a rigid housing that is coupled to the machine end of the tracheal tube. This can be relatively bulky and is a particular problem where the patient is breathing unaided via a tracheostomy tube since it is preferable for this to be as unobtrusive as possible.</p>
<p>It is an object of the present invention to provide an alternative gas-treatment device and assembly.</p>
<p>According to one aspect of the present invention there is provided a gas-treatment device for connection to the machine end of a patient breathing tube, the device being conformable.</p>
<p>The device preferably includes a flexible outer housing and a gas-treatment element that is substantially conformable to the shape of the outer housing. The outer housing is preferably of a gas-permeable material, such as a fabric. The device preferably includes an HME element. The HME element may include a discrete material, such as in the form of particles, granules or small balls. The HMB element may include a zeolite. The device may include a flexible outer housing, a conformable gas-treatment element within the housing and gas-dispersion means within the housing arranged to disperse gas over the gas-treatment element. The gas-dispersion means may include a ciliated surface. The patient breathing tube is preferably a tracheostomy tube. The gas-treatment device may be supported on a flange of the tube and is preferably removably attached with the flange, such as by means of an adhesive. The breathing tube preferably has a coupling extending within the gas-treatment device, the coupling having at least one side port. The gas-treatment device may include a self-sealing port arranged to be aligned with the machine end of the breathing tube such as to enable an elongate member to be inserted through the port and the device, into the tube. The port is preferably arranged to make a wiping seal with the elongate member.</p>
<p>According to another aspect of the present invention there is provided a gas-treatment device including a port for connection to a patient breathing tube and a gas-treatment element, the device including an outer wall of gas-permeable material such that gas passes to and from the patient breathing tube via the port, the gas-treatment element and through the outer wall.</p>
<p>The wall may be of a fabric and the gas-treatment element may be an HME element.</p>
<p>The HME element may include a discrete material, such as in the form of particles, granules or small balls.</p>
<p>According to a further aspect of the present invention there is provided an assembly of a breathing tube and a gas-treatment device according to the above one or other aspect of the invention.</p>
<p>The breathing tube preferably includes an outer tube and a removable inner cannula inserted within the outer tube, the gas-treatment device being mounted at the machine end of the inner cannula.</p>
<p>A tracheostomy tube assembly including an HME, in accordance with the present invention, will now be described, by way of example, with reference to the accompanying drawing, in which: Figure 1 is a perspective view of the assembly; Figure 2 is a partly cross-sectional view of a part of the assembly showing the HME; and Figure 3 is a partly cross-sectional view of a part of an alternative assembly having a modified HME.</p>
<p>With reference first to Figures 1 and 2, the assembly comprises an outer, tracheostomy tube 1, a removable inner cannula or liner 2 and an I-lIME gas-treatment device 3 connected to the machine end of the cannula. When inserted, the inner cannula 2 is considered to form a part of the tracheostomy tube 1.</p>
<p>The tracheostomy tube 1 is conventional having a shaft 10 curved to the anatomy of the patient so that, in use, its patient end 11 is directed caudally within the trachea. The machine end 12 of the tube 1 terminates flush with a laterally-extending flange 13 shaped to lie flat on the patient's skin to either side of the tracheostomy.</p>
<p>The cannula 2 has a shaft 20 curved to the same shape as the tracheostomy tube 1 and its external diameter is such that it is a close sliding fit within the tracheostomy tube. The cannula 2 also has a flange 23 at its machine end 22 of the same shape as the flange 13 of the tracheostomy tube so that the two flanges lie close to one another when assembled. A short cylindrical coupling 24 projects from the rear, machine side of the flange 23. The coupling 24 has a tapered female bore adapted to receive a 15mm male coupling and it also has a number of side ports 25 equally spaced around its circumference. The side ports 25 are arranged so that they will be occluded when a male coupling or 1 5mm cormector is inserted.</p>
<p>The HME 3 is fitted over the coupling 24 and is attached to the flange 23. The HME 3 has an outer wall or housing 30 of a bonded-fibre fabric or other gas-permeable flexible material, such as a perforated material. The housing 30 has a generally rectangular shape, when viewed along the axis of the cannula 2, that follows approximately the outline of the flange 23. Alternatively, the housing could be oval or elliptical viewed along the axis of the cannula. In section, as shown in Figure 2, the housing 30 is oval. Centrally in one side of the housing 30 there is a circular aperture 31 the diameter of which is approximately equal to the external diameter of the coupling 24. A region 32 on the outside of the housing 30 around the aperture 31 has a low-tack adhesive, which forms a secure, gas-tight seal with the machine side of the flange 23. The HME could be attached to the cannula in other ways, such as by a mechanical clasp or by hook-and-loop fabric. The coupling 24 projects through the aperture 31 into a central cavity 33 within the housing 30. The cavity 33 is enclosed by a porous foam sponge wal] or insert 35 having multiple fingers 36 projecting inwardly towards the aperture 31 to provide a ciliated surface 37 to the cavity.</p>
<p>The HME 3 is completed by an HME element 38 located between the wall 30 and the foam insert 35. The element 38 extends along the machine-end face 39 of the housing 30 and the edges 40 but not along the major part of the patient-end face 41 in the region 32 because contact with the flange 23 in this region prevents passage of gas. The HME element 38 is of a discrete material, that is, it is formed of separate discrete pieces so that it can conform freely to the shape of the housing 30. Tn particular, the element 38 is formed from particles 42 of zeolites, which act as molecular sieves, or small balls of foam or paper treated with a hygroscopic material of the kind commonly used in HME paper elements.</p>
<p>The RME 3, therefore, has a soft, conformable nature of the same kind as a bean bag and can be laid substantially flat over the machine side of the flange 23.</p>
<p>In use, the cannula 2 is inserted in the tracheostomy tube 1 of a patient who is breathing spontaneously. The two flanges 13 and 23 are secured together to hold the cannula 2 in position. When the patient exhales, air flows along the bore of the inner cannula 2, through the coupling 24, via its open end and the side ports 25, into the cavity 33 within the HME 3. The fingers 36 of the sponge element 35 distribute the air over the entire surface of the HME element 38 for maximum efficiency so that the major part of the heat and moisture in the exhaled breath is transferred to the element. The foam member 35 also takes some part in absorbing the heat and moisture. The gas then flows out through the wall 30 of the HME 3 over a relatively large area. When the patient inhales, air flows in through the wall 30, through the element 38 and the foam 35 taking up the major part of the heat and moisture absorbed in these parts. The warmed and moistened air then flows through the coupling 24 along the tracheostomy tube 1, via the inner canriula 2, to the patient.</p>
<p>The arrangement of the present invention enables a low profile TiME to be provided, which is inconspicuous, does not interfere with bedding and clothing and produces less leverage on the tube to which it is connected. The TiME presents a conformable external surface, which also makes it comfortable where it comes into contact with the skin. The porous nature of the wall acts as a coarse filter preventing inhalation of larger particles and insects etc. Because the air flows in and out over a large area there is a reduced risk of occlusion.</p>
<p>The inner caimula with the HME is removed and replaced periodically when secretions start to collect, it will be appreciated, however, that the HME could be attached directly to the flange of the tracheostomy tube where an inner cannula is not used, the HME being removed and replaced as necessary. If access is needed to the coupling 24, such as to connect the patient to a ventilator or resuscitator, the HME can be readily removed by pulling apart the adhesive join at the region 32.</p>
<p>The HME could be modified to allow use of a suction catheter, endoscope or other elongate member, as shown in Figure 3 where similar components have been given the same reference number with the addition of 100. The housing 130 is of a similar shape to the housing 30 shown in Figure 2 but it has a second aperture 151 located directly opposite the aperture 131 in which the coupling 124 is received. The second aperture 151 differs from the first in that it is normally closed, being formed by a passage through the foam member 135, which is extended to the wall 130 around the aperture. The aperture 151 is closed resiliently by the nature of the foam but can be opened when it is necessary to insert a suction catheter or the like along the tracheostomy tube simply by pushing the catheter through the aperture. The foam member 135 around the aperture 151 contacts the catheter 200 around its circumference to provide a wiping seal that restricts the escape of gas through the aperture around the outside of the catheter.</p>
<p>The invention, in some of its aspects, is not confined to HMEs but could be used with other gas-treatment devices such as filters.</p>

Claims (1)

  1. <p>CLAIMS</p>
    <p>1. A gas-treatment device for coimection to the machine end of a patient breathing tube, wherein the device is conformable.</p>
    <p>2. A gas-treatment device according to Claim I, wherein the device includes a flexible outer housing and a gas-treatment element that substantially conforms to the shape of the outer housing.</p>
    <p>3. A gas-treatment device according to Claim 2, wherein the outer housing is of a gas-permeable material.</p>
    <p>4. A gas-treatment device according to Claim 3, wherein the outer housing is of a fabric.</p>
    <p>5. A gas-treatment device according to any one of the preceding claims, wherein the device includes an HME element 6. A gas-treatment device according to Claim 5, wherein the HME element includes a discrete material.</p>
    <p>7. A gas-treatment device according to Claim 6, wherein the discrete material is in the form of particles, granules or small balls.</p>
    <p>8. A gas-treatment device according to any one of Claims 5 to 7, wherein the HME element includes a zeolite.</p>
    <p>9. A gas-treatment device according to any one of the preceding claims including a flexible outer housing, a conformable gas-treatment element within the housing and gas-dispersion means within the housing arranged to disperse gas over the gas-treatment element.</p>
    <p>10. A gas-treatment device according to Claim 9, wherein the gas-dispersion means includes a ciliated surface.</p>
    <p>11. A gas-treatment device according to any one of the preceding claims, wherein the patient breathing tube is a tracheostomy tube.</p>
    <p>12. A gas-treatment device according to any one of the preceding claims, wherein the gas-treatment device is supported on a flange of the tube.</p>
    <p>13. A gas-treatment device according to Claim 12, wherein the gas-treatment device is removably attached with the flange.</p>
    <p>14. A gas-treatment device according to Claim 12 or 13, wherein the gas-treatment device is attached with the flange by means of an adhesive.</p>
    <p>15. A gas-treatment device according to any one of the preceding claims, wherein the breathing tube has a coupling extending within the gas-treatment device, and wherein the coupling has at least one side port.</p>
    <p>16. A gas-treatment device according to any one of the preceding claims, including a self-sealing port arranged to be aligned with the machine end of the breathing tube such as to enable an elongate member to be inserted through the port and the device, into the tube.</p>
    <p>17. A gas-treatment device according to Claim 16, wherein the port is arranged to make a wiping seal with the elongate member.</p>
    <p>18. A gas-treatment device including a port for connection to a patient breathing tube and a gas-treatment element, wherein the device includes an outer wall of gas-permeable material such that gas passes to and from the patient breathing tube via the port, the gas-treatment element and through the outer wall.</p>
    <p>19. A gas-treatment device according to Claim 18, wherein the wall is of a fabric.</p>
    <p>20. A gas-treatment device according to Claim 18 or 19, wherein the gas-treatment element is an HME element.</p>
    <p>21. A gas-treatment device according to Claim 20, wherein the HME element includes a discrete material.</p>
    <p>22. A gas-treatment device according to Claim 21, wherein the discrete material is in the form of particles, granules or small balls.</p>
    <p>23. An HME substantially as hereinbefore described with reference to Figures 1 and 2 of the accompanying drawings.</p>
    <p>24. An HME substantially as hereinbefore described with reference to Figures 1 and 2 as modified by Figure 3 25. An assembly of a breathing tube and a gas-treatment device according to any one of the preceding claims.</p>
    <p>26. An assembly according to Claim 25, wherein the breathing tube includes an outer tube and a removable inner cannula inserted within the outer tube, and wherein the gas-treatment device is mounted at the machine end of the inner cannula.</p>
    <p>27. An assembly of a tracheostomy tube and an HME substantially as hereinbefore described with reference to Figures 1 and 2 of the accompanying drawings.</p>
    <p>28. An assembly of a tracheostomy tube and an HME substantially as hereinbefore described with reference to Figures 1 and 2 as modified by Figure 3 of the accompanying drawings.</p>
    <p>29. Any novel and inventive feature or combination of features as hereinbefore described.</p>
GB0424583A 2003-12-18 2004-11-08 Heat and moisture exchanger for use with tracheostomy tube Expired - Fee Related GB2432325B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GBGB0329297.6A GB0329297D0 (en) 2003-12-18 2003-12-18 Gas-treatment devices

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GB0424583D0 GB0424583D0 (en) 2004-12-08
GB2432325A true GB2432325A (en) 2007-05-23
GB2432325B GB2432325B (en) 2008-06-25

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GB0424583A Expired - Fee Related GB2432325B (en) 2003-12-18 2004-11-08 Heat and moisture exchanger for use with tracheostomy tube

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GB (2) GB0329297D0 (en)

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US8714154B2 (en) 2011-03-30 2014-05-06 Covidien Lp Systems and methods for automatic adjustment of ventilator settings
US10362967B2 (en) 2012-07-09 2019-07-30 Covidien Lp Systems and methods for missed breath detection and indication
US9808591B2 (en) 2014-08-15 2017-11-07 Covidien Lp Methods and systems for breath delivery synchronization
US9950129B2 (en) 2014-10-27 2018-04-24 Covidien Lp Ventilation triggering using change-point detection
GB201610715D0 (en) 2016-06-18 2016-08-03 Smiths Medical Int Ltd Heat and moisture exchange devices
WO2019222258A1 (en) 2018-05-14 2019-11-21 Covidien Lp Systems and methods for respiratory effort detection utilizing signal distortion
US11752287B2 (en) 2018-10-03 2023-09-12 Covidien Lp Systems and methods for automatic cycling or cycling detection
GB202103529D0 (en) 2021-03-15 2021-04-28 Smiths Medical International Ltd Gas-treatment devices
GB202105159D0 (en) 2021-04-12 2021-05-26 Smiths Medical International Ltd HME devices
GB202107383D0 (en) 2021-05-24 2021-07-07 Smiths Medical International Ltd Heat and moisture exchange devices, elements and assemblies

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Also Published As

Publication number Publication date
GB0424583D0 (en) 2004-12-08
US20050133028A1 (en) 2005-06-23
US7363925B2 (en) 2008-04-29
GB0329297D0 (en) 2004-01-21
GB2432325B (en) 2008-06-25

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Legal Events

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AT Applications terminated before publication under section 16(1)
ERR Erratum

Free format text: PATENT APPLICATION GB0424583.3 WAS ANNOUNCED AS TERMINATED (BEFORE PUBLICATION) IN PDJ NUMBER 6121 DATED 20060913, THIS TERMINATION WAS MADE IN ERROR AND THE APPLICATION HAD NOW BEEN REINSTATED UNDER THE PROVISION OF RULE 100.

PCNP Patent ceased through non-payment of renewal fee

Effective date: 20161108