WO2009036148A1 - Medical drain tube - Google Patents

Medical drain tube Download PDF

Info

Publication number
WO2009036148A1
WO2009036148A1 PCT/US2008/075987 US2008075987W WO2009036148A1 WO 2009036148 A1 WO2009036148 A1 WO 2009036148A1 US 2008075987 W US2008075987 W US 2008075987W WO 2009036148 A1 WO2009036148 A1 WO 2009036148A1
Authority
WO
WIPO (PCT)
Prior art keywords
tip end
balloon
guidance element
guidance
end part
Prior art date
Application number
PCT/US2008/075987
Other languages
English (en)
French (fr)
Inventor
Yasuyuki Baba
Original Assignee
Tyco Healthcare Group Lp
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 Tyco Healthcare Group Lp filed Critical Tyco Healthcare Group Lp
Publication of WO2009036148A1 publication Critical patent/WO2009036148A1/en

Links

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
    • A61M25/00Catheters; Hollow probes
    • A61M25/10Balloon catheters

Definitions

  • the present disclosure relates to a medical tube which is inserted into the alimentary canal inside the body and used for drainage and removal of residue which has collected in the alimentary canal.
  • Tubes which are used in this kind of procedure are those in which an internal lumen is formed for discharging the internal residue, and which is provided with a guidance element of a prescribed weight at a tip end part.
  • the guidance element includes a plurality of spherical bodies which are provided with a through-hole, and a guide wire can be inserted into each of the through-holes of the plurality of spherical bodies. Consequently, when this catheter is inserted into lhe nose of the patient from the guidance element side and pushed forwards towards the alimentary canal, the guidance element progresses inside the alimentary canal in accordance with its weight and the changes of orientation of the patient's body.
  • a medical drainage tube which includes a tube main body defining a main lumen extending from a base end part to a tip end part of the tube main body.
  • the main lumen communicates with a suction hole formed on the tip end part of the tube main body.
  • a plurality of secondary lumens extend from the base end part to the tip end part of the tube main body.
  • a guidance element is provided at the tip end part of the tube main body, and a through-hole is formed in the guidance element and communicates with a first one of the plurality of secondary lumens.
  • a rear balloon is provided on the outer peripheral surface on the tip end part of the tube main body. The rear balloon is inflated by supplying liquid or air through a second of the plurality of secondary lumens.
  • a front balloon is provided at a tip end of the guidance element. The front balloon is inflated at the tip end of the guidance element by supplying liquid or air through the first of the plurality of secondary lumens and the through-hole.
  • the guidance element is substantially rod-shaped and the through- hole is formed along the central axial part of the guidance element.
  • the front balloon is provided at the tip end of the guidance element such that the front balloon can cause closure of a tip end side of the through-hole.
  • the front balloon includes a bag-shaped inflating and deflating part having a base end part which is linked to an outer peripheral surface at the tip end side of the guidance element.
  • a support rod is arranged inside the through-hole of the guidance element such that the support rod is mobile in the axial direction.
  • a tip end part of the support rod is linked to an inner surface of a tip end of the inflating and deflating part.
  • an engagement structure is provided for preventing the support rod from coming out of the guidance element.
  • the engagement structure is formed on a rear end portion of the support rod and engages the tip end portion of an inner peripheral surface of the through-hole of the guidance element.
  • the support rod is flexible.
  • the cross-sectional shape orthogonal to a direction of movement of the front balloon when the front balloon is inflated is non-circular and a space is created between the front balloon and walls of an alimentary canal.
  • FIG. 1 is a side view of one embodiment of the presently disclosed medical drainage tube
  • FIG. 2 is a cross-sectional view taken along section lines 2-2 of FIG. 1 ;
  • FIG 3a is an elongated side view of the distal end of the medical drainage tube shown in FIG. 1 in a deflated state;
  • FIG. 3b is a front view of the distal end of the medical drainage tube shown in FIG. 1 in a deflated state;
  • FIG. 4a is an elongated side view of the distal end of the medical drainage tube shown in FIG. 1 in an inflated state
  • FIG. 4b is a front view of the distal end of the medical drainage tube shown in FIG. 4a in an inflated state
  • FIG. 5a is an elongated side view of the distal end of an alternate embodiment of the presently disclosed medical drainage tube in an inflated state
  • FIG. 5b is a front view of the distal end of the medical drainage tube shown in FlG. 5a in an inflated state.
  • FIG. 1 shows a medical drainage tube 10 pertaining to the first embodiment of the disclosure.
  • Medical tube 10 is used for removing residue and gas etc. from the body which has accumulated in a blocked part or around a blocked part of a patient's intestines.
  • the medical tube 10 is provided with a tube main body 1 1 which comprises a long, narrow tube which can be made of resin, four branch pipes 12, 13, 14, 15 which can be made of resin which branch out from a base end part 1 1 a of the tube main body 1 1 , and a guidance clement 16 which is provided at the tip end part of the tube main body 1 1.
  • An irrigation-side hole I Ib is formed on the peripheral surface of the tip end portion of the tube main body 1 1. Furthermore, a plurality of suction-side holes 1 1 c which act as the suction holes of the present disclosure are formed along the axial direction at different positions in the peripheral direction, in the area around the rear of the irrigation-side hole 1 Ib on the peripheral surface of the tube main body 1 1.
  • a peristalsis balloon 17 which acts as the rear balloon of the present disclosure and can inflate and deflate is provided to the rear of the irrigation-side hole 1 Ib (base end side of the tube main body 1 1) on the peripheral surface of the tube main body 1 1.
  • a large-diameter main lumen 1 Id is formed at the centre, inside the tube main body 1 1 , with three small secondary lumens 1 1 e, 1 1 f, 1 Ig being formed around the main lumen 1 Id.
  • an imaging line comprising an agent which is impermeable to X-rays is formed between the tip end side and the base end side of the tube main body 1 1 , although this is not depicted.
  • the base end part 1 Ia of the tube main body 1 1 is provided with four flow channels which are in communication with the main lumen 1 1 d and the secondary lumens 1 1 e, 1 1 f, 1 1 g, respectively.
  • the main lumen 1 Id extends from the flow channel formed at the centre of the base end part 1 Ia to the tip end side of the tube main body 1 1, and is in communication with each of the suction-side holes l ie.
  • the rear end part of the main lumen 1 Id is in communication with the branch pipe 12 via a flow channel inside the base end part 1 Ia.
  • the branch pipe 12 is configured as a tube which has approximately the same diameter as the tube main body 1 1.
  • a connecting part 12a of somewhat larger diameter is formed at the rear end part of the branch pipe 12.
  • a storage vessel such as a liquid discharge bag or a suction device such as an aspirator may be connected to connecting part 12a.
  • the secondary lumen 1 I e (FlG. 2) extends from a prescribed flow channel formed in the base end part 1 1 a to the tip end side of the tube main body 1 1 to link with the irrigation-side hole 1 Ib. Furthermore, the rear end part of the secondary lumen 1 1 e is in communication with the branch pipe 13 via a prescribed flow channel inside the base end part 1 1 a.
  • the branch pipe 13 includes a tube of smaller diameter than the branch pipe 12, and an attachment part 13a formed at its rear end part. A non-return valve 18 is attached to the attachment part 13 a.
  • the flow of air or liquid from the outside towards the inside of the branch pipe 13 passes through the non-return valve 18, but the valve is configured so that air or liquid etc. does not pass from inside the branch pipe 13 to the outside.
  • the secondary lumen 11 e and the irrigation-side hole 1 Ib are provided to supply air so that the walls of the alimentary canal do not adhere to the suction-side holes 1 Ic when aspiration is performed by the suction device via the main lumen 1 Id, by means of the release inside the body of air supplied from the branch pipe 13, and in order to inject contrast agent into the alimentary canal. Residue inside the patient's intestines are prevented from being released to the outside via the irrigation-side hole 1 Ib, secondary lumen 1 Ie and branch pipe 13 because of the non-return valve 18.
  • the secondary lumen 1 1 f (FIG. 2) extends from a prescribed flow channel formed in the base end part 1 Ia to the tip end side of the tube main body 1 1, and is in communication with the peristalsis balloon 17.
  • the rear end part of the secondary lumen 1 I f is in communication with the branch pipe 14 via a flow channel inside the base end part 1 Ia.
  • the branch pipe 14 includes a tube having approximately the same diameter as the branch pipe 13, and a connecting part 14a of somewhat larger diameter formed at its rear end part.
  • a supply device such as a syringe for sending water to the peristalsis balloon 17 is connected to said connecting part 14a.
  • the peristalsis balloon 17 can be caused to inflate to a suitable degree by means of the operation of the supply device.
  • the peristalsis balloon 17 is in a state of close contact with the outer peripheral surface of the tube main body 1 1 when it is deflated, but becomes fusiform when it is inflated.
  • the secondary lumen 1 1 g extends from the remaining flow channel formed in the base end part 1 Ia to the tip end side of the tube main body 1 1, and is in communication with the guidance element 16. Furthermore, the rear end part of the secondary lumen 1 Ig is in communication with the branch pipe 15 via a flow channel inside the base end part 1 Ia.
  • the branch pipe 15 includes a tube having the same shape as the branch pipe 14, and an air supply device for supplying air to a guidance balloon 20 via the guidance element 16. Balloon acts as the front balloon of the present disclosure (to be described later). Branch pipe 15 is connected to a large-diameter connecting part 15a formed at its rear end part.
  • the guidance balloon 20 can be caused to inflate to a suitable degree by means of the operation of the air supply device.
  • the guidance element 16 has a pipe-shaped support pipe part 16b which is inserted through the through-holes of a plurality of weights 16a which in one embodiment are made of metal and in which through-holes are formed running through the central part, and the outer peripheral surface of the weights 16a is covered by a film layer (not depicted) comprising a resin material (see Figures 3 and 4).
  • the support pipe part 16b is provided with a flow channel which acts as a through-hole, and which communicates with the secondary lumen 1 Ig of the tube main body 1 1.
  • the film layer covering the outer peripheral surface of the weights 16a is configured from the same or a similar resin material as the resin material which configures the tube main body 1 1.
  • the film layer and the tube main body 1 1 are integrally formed.
  • the guidance balloon 20 which is made of resin is provided at the tip end part of the guidance element 16.
  • the guidance balloon 20 includes a bag-shaped inflating and deflating part 21 which is able to inflate and deflate, and a support rod 22 which comprises a flexible rod body.
  • the base end part of the inflating and deflating part 21 is in communication with the outer periphery of the support pipe part 16b at the tip end side.
  • the inflating and deflating part 21 covers the tip end portion of the support pipe part 16b in a state of close contact.
  • the inflating and deflating part 21 is inflated, as shown in Figure 4, the inflating and deflating part 21 inflates to a spherical shape at the tip end of the support pipe part 16b.
  • the support rod 22 is arranged so as to be mobile inside the support pipe part 16b in a state in which a space enabling air or liquid to pass between the inner peripheral surface of the support pipe part 16b and the rod 22.
  • the tip end part of the support rod 22 is in communication with the inner peripheral surface of the inflating and deflating part 21 at the tip end thereof.
  • the support rod 22 may be a solid rod or a hollow or cylindrical rod.
  • the support rod 22 retreats inside the support pipe part 16b due to the deflation force of the inflating and deflating part 21 , as shown in Figure 3. Furthermore, when the inflating and deflating part 21 is inflated, the support rod 22 is pulled to the tip end part of the inflating and deflating part 21, and, as shown in Figure 4, the rod protrudes at the tip end side of the support pipe part 16b. The support rod 22 maintains the shape of the inflating and deflating part 21 when it is inflated, preventing the inflating and deflating part 21 from inverting.
  • the support rod 22 can bend to follow the curved parts of the intestines, and the inflating and deflating part 21 can pass smoothly through the curved parts of the intestines.
  • the medical tube 10 is used together with a guide wire, although this is not depicted.
  • the medical tube 10 in the state shown in Figure 1 is first of all inserted from the guidance element 16 side into the nose. Then, when the guidance element 16 of the medical tube 10 arrives inside the stomach, the guide wire is inserted from the branch pipe 12 up to the tip end side of the tube main body 1 1. Then, when the medical tube 10 is further inserted and the guide element 16 has reached the duodenum or the small intestine, water is supplied from the supply device to inside the peristalsis balloon 17 via the branch pipe 14 and the secondary lumen 1 If, thereby inflating the peristalsis balloon 17. By virtue of this, the peristalsis balloon 17 is pulled inside the body due to peristalsis of the alimentary canal, and the medical tube 10 is successively inserted into the body.
  • an operation is performed in which the patient's body is irradiated with X- rays, and the position of the imaging line formed in the tube main body 1 1 is ascertained by visualizing the imaging line. Furthermore, the contrast agent is injected inside the parts of the alimentary canal including the stomach and intestines from the branch pipe 13, via the secondary lumen 1 Ie and the irrigation-side hole 1 Ib, and the position and shape thereof are ascertained.
  • the guidance element 16 reaches the pylorus, constituting the boundary between the stomach and the intestines, and becomes caught in the curved parts of the alimentary canal or the creases in the walls of the alimentary canal, air is supplied from the air supply device to inside the guidance balloon 20, via the through-hole of the secondary lumen 1 1 g and the support pipe part 16b, causing the inflation of the inflating and deflating part 21 of the guidance balloon 20.
  • the support rod 22 of the guidance balloon 20 protrudes forwards from the tip end part of the support pipe part 16b, so as to maintain the shape and the positioning of the inflating and deflating part 21 (FIG. 4).
  • the inflating and deflating part 21 proceeds inside the intestines without becoming caught on the walls of the stomach or intestines and without inverting.
  • the guidance balloon 20 and guidance part 16 have passed through the pylorus, the guide wire is pulled out from the medical tube 10 and the medical tube 10 is further inserted.
  • the storage vessel is connected to the connecting part 12a of the branch pipe 12.
  • the non-return valve 18 prevents residue in the intestines from flowing back through the branch pipe 13 and from being released to the outside.
  • the practitioner waits for the intestinal obstruction to improve, and removes the medical tube 10 from the patient's body.
  • the water inside the peristalsis balloon 17 and also the air inside the guidance balloon 20 are drawn out to deflate the balloons 17 and 20, so that the medical tube 10 can be removed from inside the body by pulling it.
  • the peristalsis balloon 17 is provided at the rear part portion of the guidance element 16 on the outer peripheral surface of the tube main body 1 1. Consequently, when the guidance element 16 reaches a prescribed portion in the alimentary canal, the peristalsis balloon 17 moves inside the alimentary canal due to peristalsis of the alimentary canal, even if the medical tube 10 is not pushed inside the body, by means of the inflation of the peristalsis balloon 17. Furthermore, the guidance element 16 is provided with weights 16a which can be made of metal and are of a prescribed weight, and therefore the peristalsis balloon 17 moves more smoothly inside the alimentary canal by changing the orientation of the patient's body so that the direction of advance of the guidance element 16 is downwards.
  • the guidance balloon 20 is provided at the tip end of the guidance element 16. Consequently, when the guidance element 16 reaches the pylorus between the stomach and the intestines, the guidance balloon 20 and the guidance element 16 can progress smoothly, due to the inflation of the guidance balloon 20. As a result, the physical load for the patient and the practitioner can be lessened.
  • the guidance balloon 20 is configured by the inflating and deflating part 21 of which the base end part is linked to the outer periphery of the tip end portion of the support pipe part 16b, and the support rod 22 which is arranged inside the through-hole of the support pipe part 16b so as to be mobile, the tip end part of which is linked to the inner surface tip end of the inflating and deflating part 21.
  • the inflating and deflating part 21 when the inflating and deflating part 21 is inflated, it is supported on the support pipe part 16b via the support rod 22, and the guidance balloon 20 is prevented from inverting or being crushed to make insertion easier. Furthermore, the support rod 22 is flexible, and therefore the guidance balloon 20 bends appropriately in accordance with the curved parts etc. of the intestines. Consequently, the medical tube 10 can move smoothly inside the twists and bends of the intestines.
  • Figure 5 shows the main parts of a medical tube pertaining to a second Embodiment of the present disclosure.
  • the shape of a guidance balloon 30 when an inflating and deflating part 31 is inflated is not spherical, but it is formed with a circular shape when seen from the side, and approximately panduriform when seen from the front (the surface seen from the tip end).
  • the shape seen from the front when the inflating and deflating part 31 is inflated is a shape which is provided with respective recessed parts 3 Ia, 3 Ib on both sides of a circular shape.
  • the structural components other than this of the medical rube which is provided with the guidance balloon 30 are the same as those of the medical tube 10 of the first Embodiment described above. Accordingly, the same components carry the same reference numbers and a description of them will be omitted.
  • the inner diameter at the tip end side of the through-hole provided in the guidance element 16 smaller than the inner diameter of the other portions, and also to make the diameter of the rear end portion of the support rod 22 greater than the diameter of the other portions, so that the rear end portion of the support rod 22 can engage with the inner peripheral surface at the tip end side of the through-hole.
  • the guidance balloons 20, 30 can be inflated to a prescribed size.
  • the medical tube pertaining to the present disclosure is not limited to the embodiments described above, and appropriate modifications may be implemented.
  • water is supplied to inside the peristalsis balloon 17 in order to inflate the peristalsis balloon 17, and air is supplied to inside the guidance balloons 20, 30 in order to inflate the guidance balloons 20, 30.
  • air may be supplied to inside the peristalsis balloon 17, and water may be supplied to inside the guidance balloons 20, 30.
  • water may be supplied to both the peristalsis balloon 17 and the guidance balloons 20, 30, or air may be supplied to both.
  • another liquid which is not harmful to the human body may be supplied instead of water, and a gas which is not harmful to the human body other than air may be supplied instead of air.
  • the peristalsis balloon 17 is fusiform when it is inflated, but it may be bale-shaped, spherical or elliptical.
  • the weights 16a may also be made of rubber, plastic or ceramics.
  • the shape of the inflating and deflating part 31 when it is inflated and seen from the front is approximately panduriform, but it may be any shape provided that it creates a space between the inflating and deflating part 31 and the walls of the intestines, e.g., it may be polygonal, triangular, quadrilateral, etc.
  • the through-hole runs through the central part of the weights 16a.
  • a flow channel which acts as the through-hole of the present disclosure may be provided in a portion close to the outer periphery of the guidance element 16 to communicate with the secondary lumen I Ig.
  • the guidance balloon is provided at the tip end opening side of the through-hole which communicates with the secondary lumen 1 Ig.
  • the guidance balloon in this case may have an annular structure which is formed around the tip end opening side of the guidance element, or it may include a plurality of spherical structures which communicate with one another and are arranged around the tip end opening side of the guidance element.
  • the guidance balloon may be configured by the bag- shaped inflating and deflating part and the support rod.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Engineering & Computer Science (AREA)
  • Biophysics (AREA)
  • Pulmonology (AREA)
  • Child & Adolescent Psychology (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Hematology (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Media Introduction/Drainage Providing Device (AREA)
PCT/US2008/075987 2007-09-11 2008-09-11 Medical drain tube WO2009036148A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2007-235274 2007-09-11
JP2007235274A JP5117800B2 (ja) 2007-09-11 2007-09-11 医療用チューブ

Publications (1)

Publication Number Publication Date
WO2009036148A1 true WO2009036148A1 (en) 2009-03-19

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2008/075987 WO2009036148A1 (en) 2007-09-11 2008-09-11 Medical drain tube

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JP (1) JP5117800B2 (ja)
WO (1) WO2009036148A1 (ja)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8818380B2 (en) 2004-07-09 2014-08-26 Israel Feldman System and method for geographically locating a cellular phone
WO2017132423A1 (en) * 2016-01-26 2017-08-03 Travis Nicholas Richard Insertable device to prevent aspiration of stomach contents during ventilation and intubation

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103054706B (zh) * 2013-01-14 2014-09-17 肖国红 肠道防粘连引流装置
CN114474706B (zh) * 2022-04-15 2022-06-21 常州江苏大学工程技术研究院 一种基于中心偏差测量装置的光学镜片镀膜输送系统

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020169414A1 (en) * 2000-02-01 2002-11-14 Kletschka Harold D. Embolic protection device having expandable trap
US20070083224A1 (en) * 2005-06-16 2007-04-12 Hively Robert L Gastric bariatric apparatus with selective inflation and safety features

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08112351A (ja) * 1994-10-14 1996-05-07 Terumo Corp バルーンカテーテル
JP2002126087A (ja) * 2001-12-03 2002-05-08 Yuki Kamiizumi 医療用バルーン付きカテーテル
WO2007094374A1 (ja) * 2006-02-15 2007-08-23 Sekisui Chemical Co., Ltd. バルーンカテーテル

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020169414A1 (en) * 2000-02-01 2002-11-14 Kletschka Harold D. Embolic protection device having expandable trap
US20070083224A1 (en) * 2005-06-16 2007-04-12 Hively Robert L Gastric bariatric apparatus with selective inflation and safety features

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8818380B2 (en) 2004-07-09 2014-08-26 Israel Feldman System and method for geographically locating a cellular phone
WO2017132423A1 (en) * 2016-01-26 2017-08-03 Travis Nicholas Richard Insertable device to prevent aspiration of stomach contents during ventilation and intubation
US10456542B2 (en) 2016-01-26 2019-10-29 Nicholas Richard Travis Insertable device to prevent aspiration of stomach contents during ventilation and intubation

Also Published As

Publication number Publication date
JP2009066049A (ja) 2009-04-02
JP5117800B2 (ja) 2013-01-16

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