CN201414818Y - Bi-sack tube for nasal cavity haemostasis - Google Patents
Bi-sack tube for nasal cavity haemostasis Download PDFInfo
- Publication number
- CN201414818Y CN201414818Y CN2009201538139U CN200920153813U CN201414818Y CN 201414818 Y CN201414818 Y CN 201414818Y CN 2009201538139 U CN2009201538139 U CN 2009201538139U CN 200920153813 U CN200920153813 U CN 200920153813U CN 201414818 Y CN201414818 Y CN 201414818Y
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- nasal cavity
- hollow
- air bag
- breather
- end connects
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Abstract
The utility model discloses a bi-sack tube for nasal cavity haemostasis, which can solve the problem in prior art of pain of patients in the nasal cavity haemostasis process. The bi-sack tube comprises a compressing air bag penetrated with a hollow vent pipe two ends of the hollow part of which are communicated with the atmosphere; a gas injection pipe of the compressing air bag, which is connected with the compressing air bag at one end and is connected with a gas injection cap with a one-way air valve at the other end; a positioning air bag installed on a predetermined position on the frontsection of the hollow vent pipe; a gas injection pipe of the positioning air bag, which is connected with the positioning air bag at one end and is connected with a gas injection cap with a one-way air valve at the other end. The utility model sufficiently utilizes the inner structure of the nasal cavity to perform compressing haemostasis on the affected part with an inflated compressing air bag and; the inflated positioning air bag is put in the nasal vestibule to be supported on the wing of the nose and the columella nasi so as to fix the compressing air bag fastened with the position air bag in the nasal cavity.
Description
Technical field
This utility model relates to a kind of nasal cavity hemostasis device, the two capsule pipes of particularly a kind of nasal cavity hemostasis.
Background technology
At present, for the treatment of preceding, middle part epistaxis, clinical adopt " prenaris tamps the hemostasis art " more.Material is a vaseline gauze, and the postoperative patient misery is bigger, can cause headache, heavy, the discomforts such as tear, dry pharynx nasal obstruction of overflowing of head.Clinical someone once attempts to place the nasal cavity hemostasis by compression with air bag, water pocket, but all can not be successful because of being difficult for reason such as fixing, and this way can not be improved nasal airflow.
The utility model content
For overcoming above-mentioned defective, the purpose of this utility model is to provide a kind of simple in structure, easy to use, the two capsule pipes of nasal cavity hemostasis that can control the position of compression bladder in nasal cavity preferably.
In order to achieve the above object, the two capsule pipes of nasal cavity hemostasis of the present utility model comprise:
Compression bladder is equipped with the hollow breather in the middle, and these hollow breather hollow bulb two ends are connected with atmosphere; The compression bladder air injection pipe, the one end connects described compression bladder, and the other end connects a gas injection medicated cap that has Non-return air valve; Also comprise: positioning gasbag is installed in the precalculated position of hollow breather leading portion; The positioning gasbag air injection pipe, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve.
In order to achieve the above object, the two capsule pipes of nasal cavity hemostasis of the present utility model comprise:
Compression bladder is equipped with the hollow breather in the middle, and these hollow breather hollow bulb two ends are connected with atmosphere; The compression bladder air injection pipe, the one end connects described compression bladder, and the other end connects a gas injection medicated cap that has Non-return air valve; Also comprise: positioning gasbag, be equipped with internal diameter and the suitable sleeve pipe of hollow breather external diameter in the middle, described casing pipe sleeve is located at the leading portion outer surface of described hollow breather; The positioning gasbag air injection pipe, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve; Location structure is arranged between described sleeve pipe and the hollow breather, is used for sleeve pipe is fixed on the hollow breather.
Preferably, described location structure is: the precalculated position at described internal surface of casing and hollow breather outer surface is provided with suitable screw thread, and described sleeve pipe and hollow breather are by being threaded.
Preferably, described location structure is: be provided with annular or some shape depression at described internal surface of casing, and the corresponding position of described hollow breather outer surface is provided with annular or point-like projection.
Preferably, the end at described positioning gasbag air injection pipe and/or the close gas injection medicated cap of compression bladder air injection pipe is provided with pressure demonstration air bag.
Preferably, on the sidewall of described hollow breather near-end, be provided with a plurality of hollow out passages
Above-mentioned this utility model makes full use of the internal structure of nasal cavity, utilizes the compression bladder after the inflation to come the affected part hemostasis by compression on the one hand; Then will inflate the back positioning gasbag on the other hand, be positioned in the nasal vestibule, support to arrive on the wing of nose and nose pillar, thereby the compression bladder that will be fixed together with it be fixed on nasal cavity.Overall structure is comparatively simple, and is easy to use, and consumables cost is cheap, can alleviate the patient suffering.
Description of drawings
Fig. 1 is the structural representation of the two capsule pipes of this utility model nasal cavity hemostasis.
The specific embodiment
Below in conjunction with accompanying drawing the two capsule pipes of nasal cavity hemostasis of the present utility model are further described.
As shown in Figure 2, the two capsule pipes of nasal cavity hemostasis of the present utility model comprise compression bladder 1 (for the state after the gas injection), are equipped with hollow breather 2 in the middle, and these hollow breather 2 hollow bulb two ends are connected with atmosphere; Air injection pipe 3, one end connect described compression bladder 1, and the other end connects a gas injection medicated cap 4 that has Non-return air valve; Positioning gasbag 5 is installed in the precalculated position of hollow breather leading portion; Positioning gasbag air injection pipe 6, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve.This structure is comparatively simple, can make full use of the internal structure of nasal cavity, utilizes the compression bladder after inflating to come the affected part hemostasis by compression on the one hand; Then will inflate the back positioning gasbag on the other hand and be positioned in the nasal vestibule, support to arrive on the wing of nose and nose pillar, thereby the nearly air bag of the pressure that will be fixed together with it be fixed on nasal cavity.Overall structure is comparatively simple, and is easy to use.
In the said structure, the relative position between positioning gasbag and compression bladder is fixed, bad adaptability, and another embodiment of this utility model is specially:
As shown in Figure 1, comprising: compression bladder 1, be equipped with hollow breather 2 in the middle, these hollow breather hollow bulb two ends are connected with atmosphere; Compression bladder air injection pipe 3, the one end connects described compression bladder, and the other end connects a gas injection medicated cap 4 that has Non-return air valve; Also comprise: positioning gasbag 5, be equipped with internal diameter and the suitable sleeve pipe of hollow breather external diameter in the middle, described casing pipe sleeve is located at the leading portion outer surface of described hollow breather; Positioning gasbag air injection pipe 6, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve; Location structure is arranged between described sleeve pipe and the hollow breather, is used for sleeve pipe is fixed on the hollow breather.In this structure, positioning gasbag 5 is located on the hollow breather by casing pipe sleeve, so can do certain axially-movable along the hollow breather, makes compression bladder 1 can do relative fine setting with the spacing between the positioning gasbag 5, to be fit to different people's demand.
The mode of above-mentioned location structure is varied, and for example: can be provided with suitable screw thread in the precalculated position of described internal surface of casing and hollow breather outer surface, described sleeve pipe and hollow breather are by being threaded.Like this, can pass through relative revoling tube, sleeve pipe can be moved forward or backward; Can also be provided with annular or some shape depression at described internal surface of casing, and the corresponding position of described hollow breather outer surface is provided with annular or point-like projection.Rely on the cooperation of these annulars or some shape depression and projection to make sleeve pipe and the clamping of hollow breather then, but the strength of this clamping is less relatively, does not influence sleeve pipe and moves forward or backward, adjusts.Certainly also can adopt other can adjust other structure of positioning gasbag and compression bladder.
Above-mentioned air injection pipe 3 can directly be connected with compression bladder; Also can be as shown in the figure, with air injection pipe 3 in an end stealth of nearly compression bladder in hollow breather 2, an end that is air injection pipe 3 nearly compression bladders is positioned at the hollow breather, and is connected with compression bladder 1 with passage between the compression bladder 1 by the hollow breather.Can prevent from like this when pullling airway, compression bladder to be pulled open.The using method of the two capsule pipes of nasal cavity hemostasis of the present utility model:
When 1, using, can earlier vaseline be applied to the compression bladder surface of unaerated, hemorrhage powder such as YUNNAN BAIYAO or Sanguis Draxonis are attached to the compression bladder surface.
2, then, the end that hand-held hollow breather exposes is sent the compression bladder of unaerated into the bleeding part of nasal cavity, then by syringe from the gas injection medicated cap to the compression bladder gas injection, compression bladder is expanded, with hemostasis by compression place, only get final product to blood.
3, the sleeve pipe of positioning gasbag is put precalculated position to the nasal vestibule, then by syringe from the gas injection medicated cap to the positioning gasbag gas injection, positioning gasbag is expanded, support to arrive between the nose pillar and the wing of nose and get final product.In practical operation, the position of positioning gasbag can be finely tuned on marginal not gas limit.
For the ease of when affected part is fully recovered, compression bladder being taken out, and be convenient to adjust pressure in the compression bladder, improve further, also can on described air injection pipe, be with and be connected with a vent valve as of the present utility model.In order to make overall structure simple, words with good conditionsi also can be produced on vent valve with check valve, gas injection medicated cap.
For can be after compression bladder is placed on affected part, the doctor can understand the pressure size in its compression bladder, with the decision aeration quantity, improves further as of the present utility model, also is provided with a pressure and shows air bag 7 between described Non-return air valve and air injection pipe.Because pressure shows that air bag 7 is connected by air injection pipe with compression bladder, therefore, the doctor can show air bag 7 by pinching pressure pressure, shows air bag 7 internal pressures with sensed pressure, to understand the pressure size that nasal cavity is positioned at the compression bladder of affected part.Therefore, in processing during this utility model, above-mentioned pressure shows that the material of air bag 7 is similar that the thickness of airbag wall should be with compression bladder, so that can show the pressure of air bag 7 perception nasal cavity compression bladders better from pressure.
In order to adapt to the shape of different patient's nasal cavity inside, the cross section of above-mentioned hollow breather 2 can be circle, ellipse even rectangle etc.
In order to prevent patient Foreign body aspiration from the hollow breather, improve further as of the present utility model, also on the sidewall of described hollow breather near-end, be provided with a plurality of hollow out passages 9, as shown in Figure 2.Can certainly solve as shown in Figure 1 by an artificial nose medicated cap 8 that be provided with drainage screen in hollow breather front portion.
In sum, this utility model makes full use of the internal structure of nasal cavity, utilizes the compression bladder industry after inflating that affected part is carried out hemostasis by compression on the one hand; Then will inflate the back positioning gasbag on the other hand, be positioned in the nasal vestibule, support to arrive on the wing of nose and nose pillar, thereby the compression bladder that will be fixed together with it be fixed on nasal cavity.This utility model can be applicable to the hemostasis by compression of common nasal bleeding and various surgery of nasal cavity.Above-mentioned this utility model not only can be applied to preceding, the middle part hemostasis of nasal cavity, also can be applicable to the hemostasis of nasal cavity rear portion as required.Overall structure is comparatively simple, and is easy to use, and consumables cost is cheap, can alleviate the patient suffering.
Obviously, those skilled in the art can carry out various changes and not break away from spiritual scope of the present utility model structure of the present utility model.If therefore these changes belong in this utility model claims and the equivalent technologies scope thereof, then this utility model also is intended to contain these changes.
Claims (6)
1, the two capsule pipes of a kind of nasal cavity hemostasis comprise:
Compression bladder is equipped with the hollow breather in the middle, and these hollow breather hollow bulb two ends are connected with atmosphere;
The compression bladder air injection pipe, the one end connects described compression bladder, and the other end connects a gas injection medicated cap that has Non-return air valve;
It is characterized in that, also comprise:
Positioning gasbag is installed in the precalculated position of hollow breather leading portion;
The positioning gasbag air injection pipe, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve.
2, the two capsule pipes of a kind of nasal cavity hemostasis comprise:
Compression bladder is equipped with the hollow breather in the middle, and these hollow breather hollow bulb two ends are connected with atmosphere;
The compression bladder air injection pipe, the one end connects described compression bladder, and the other end connects a gas injection medicated cap that has Non-return air valve;
It is characterized in that, also comprise:
Positioning gasbag is equipped with internal diameter and the suitable sleeve pipe of hollow breather external diameter in the middle, and described casing pipe sleeve is located at the leading portion outer surface of described hollow breather;
The positioning gasbag air injection pipe, the one end connects described positioning gasbag, and the other end connects a gas injection medicated cap that has Non-return air valve;
Location structure is arranged between described sleeve pipe and the hollow breather, is used for sleeve pipe is fixed on the hollow breather.
3, the two capsule pipes of nasal cavity hemostasis as claimed in claim 2, it is characterized in that: described location structure is: the precalculated position at described internal surface of casing and hollow breather outer surface is provided with suitable screw thread, and described sleeve pipe and hollow breather are by being threaded.
4, the two capsule pipes of nasal cavity hemostasis as claimed in claim 2, it is characterized in that: described location structure is: be provided with annular or some shape depression at described internal surface of casing, and the corresponding position of described hollow breather outer surface is provided with annular or point-like projection.
5, as claim 2, the two capsule pipes of 3 or 4 described nasal cavity hemostasis, it is characterized in that: the end at described positioning gasbag air injection pipe and/or the close gas injection medicated cap of compression bladder air injection pipe is provided with pressure demonstration air bag.
6, as claim 2, the two capsule pipes of 3 or 4 described nasal cavity hemostasis, it is characterized in that: on the sidewall of described hollow breather near-end, be provided with a plurality of passages.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2009201538139U CN201414818Y (en) | 2009-05-06 | 2009-05-06 | Bi-sack tube for nasal cavity haemostasis |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2009201538139U CN201414818Y (en) | 2009-05-06 | 2009-05-06 | Bi-sack tube for nasal cavity haemostasis |
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CN201414818Y true CN201414818Y (en) | 2010-03-03 |
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CN2009201538139U Expired - Fee Related CN201414818Y (en) | 2009-05-06 | 2009-05-06 | Bi-sack tube for nasal cavity haemostasis |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102551836A (en) * | 2012-01-13 | 2012-07-11 | 西安交通大学 | Multifunctional shape-adaptability therapeutic device for nose |
CN102579098A (en) * | 2012-03-07 | 2012-07-18 | 陈春英 | Bagged controllable nasal-cavity hemostasis apparatus convenient for breath of patient |
CN102599959A (en) * | 2012-03-07 | 2012-07-25 | 邱兆芳 | Nosebleed stopping controllable device convenient for mental patients to breathe |
CN102599958A (en) * | 2012-03-07 | 2012-07-25 | 陈圣霞 | Nasal cavity bleeding hemostasis controllable device for mental patients |
CN104783857A (en) * | 2015-05-09 | 2015-07-22 | 无锡市人民医院 | Nasal cavity double-bag adjustable pump |
CN107624053B (en) * | 2015-05-07 | 2022-01-14 | 创意气球有限公司 | Nasal or sinus packing |
-
2009
- 2009-05-06 CN CN2009201538139U patent/CN201414818Y/en not_active Expired - Fee Related
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102551836A (en) * | 2012-01-13 | 2012-07-11 | 西安交通大学 | Multifunctional shape-adaptability therapeutic device for nose |
CN102551836B (en) * | 2012-01-13 | 2014-04-23 | 西安交通大学 | Multifunctional shape-adaptability therapeutic device for nose |
CN102579098A (en) * | 2012-03-07 | 2012-07-18 | 陈春英 | Bagged controllable nasal-cavity hemostasis apparatus convenient for breath of patient |
CN102599959A (en) * | 2012-03-07 | 2012-07-25 | 邱兆芳 | Nosebleed stopping controllable device convenient for mental patients to breathe |
CN102599958A (en) * | 2012-03-07 | 2012-07-25 | 陈圣霞 | Nasal cavity bleeding hemostasis controllable device for mental patients |
CN107624053B (en) * | 2015-05-07 | 2022-01-14 | 创意气球有限公司 | Nasal or sinus packing |
CN104783857A (en) * | 2015-05-09 | 2015-07-22 | 无锡市人民医院 | Nasal cavity double-bag adjustable pump |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100303 Termination date: 20120506 |