CN209734076U - Pressure air bag hemostatic bandage for arteriopuncture part - Google Patents

Pressure air bag hemostatic bandage for arteriopuncture part Download PDF

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Publication number
CN209734076U
CN209734076U CN201821763002.6U CN201821763002U CN209734076U CN 209734076 U CN209734076 U CN 209734076U CN 201821763002 U CN201821763002 U CN 201821763002U CN 209734076 U CN209734076 U CN 209734076U
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China
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inflating
bandage
hose
bag
air
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CN201821763002.6U
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Chinese (zh)
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赵磊
刘刚
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FIRST HOSPITAL OF HEBEI MEDICAL UNIVERSITY
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FIRST HOSPITAL OF HEBEI MEDICAL UNIVERSITY
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Abstract

The utility model provides an artery puncture position pressure gasbag hemostasis bandage belongs to medical instrument technical field, and it is heavy and complicated to aim at solving current radial artery hemostasis utensil structural design, has the risk of bleeding again among the practical clinical application, awkward problem. The bandage body is characterized in that an embedded inflating bag and an adhesive tape are respectively arranged on a belt body, a bandage main body connected with 3-5 continuous-row hooks is arranged at the tail part of the belt body, a hose is arranged on the inflating bag of the bandage main body, a inflating and deflating inflating valve is connected to the hose, a branch hose is connected to any one of an inflating and deflating inflating valve, an air pressure gauge and an inflating device connected with the branch hose and respectively connected with an air pressure gauge and an inflating control valve, and a binding paper tape is arranged on the bandage main body. The novel hemostatic bag has the advantages of novel and practical structure, simple operation, time and labor saving, convenient use, and suitability for radial artery hemostasis and the like.

Description

Pressure air bag hemostatic bandage for arteriopuncture part
Technical Field
The utility model belongs to a radial artery hemostatic device in the technical field of medical instruments.
Background
With the continuous development and progress of medical devices and medical technologies, the technical requirements on radial artery hemostatic bandages in medical devices are higher and higher. Because coronary artery interventional therapy has become the main means of coronary heart disease treatment, the radial artery puncture technology is mostly adopted for interventional therapy in clinic, and radial artery hemostasis after interventional therapy is also the key problem in clinical work. In the known technology, the existing radial artery hemostatic bandage mainly used clinically is added with gauze, adhesive tape and the like, which is a radial artery hemostatic method that medical workers press fingers and use an elastic bandage to pressurize, but the operation process is greatly influenced by human factors, if the pressure fluctuation of hemostasis is large, the pressure is too heavy, which easily causes the hand ischemia and edema of a patient to be serious, and even causes the ischemic ulceration or necrosis of local tissues; too small compression degree can easily cause puncture artery bleeding and hematoma; meanwhile, after the bandage is bound for hemostasis for a certain time, bandage pressure needs to be released, and the operation is trivial, labor-consuming, time-consuming and labor-consuming; the radial artery hemostat is applied, but is limited by the structure of the hemostatic apparatus, the structural design is complicated, the wrist of a patient cannot be uniformly stressed after long-time wearing hemostasis in clinical practical application, the radial/ulnar nerve of the forearm is frequently compressed, the displacement of the hemostasis compression part is also generated, the risk of re-bleeding is caused, and the inconvenience is brought to the practical application.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the radial artery hemostatic instrument solves the problems of complicated structural design, risk of rebleeding and inconvenient use in practical clinical application of the conventional radial artery hemostatic instrument. The utility model aims at providing a novel-type radial artery hemostasis utensil of structure practicality, the operation is simple and easy, labour saving and time saving, can avoid the puncture artery to bleed the risk again effectively, and oppression and the degree of release can be controlled, convenient to use.
The utility model provides a technical scheme that above-mentioned problem adopted is:
An arterial puncture site pressure balloon hemostatic bandage comprising: the bandage comprises a bandage body, an inflatable bag, a hose, an inflatable valve, a barometer binding paper tape and an inflatable control valve, wherein the bandage body is provided with the inflatable bag which is embedded, an adhesive tape and a bandage main body which is connected with 3-5 continuous hooks at the tail part of the bandage body, the hose is arranged on the inflatable bag of the bandage main body, the hose is connected with the inflatable valve and a branch hose, the branch hose is connected with the inflatable valve, the barometer and the branch hose, and any one of inflatable mechanisms in inflatable appliances with the barometer and the barometer binding paper tape are respectively connected with the branch hose, and the bandage main body is provided with the binding paper tape.
According to the pressure air bag hemostatic bandage for the arterial puncture part, the inflating device is any one of a hand-held inflating saccule and a miniature electric inflating pump.
The pressure air bag hemostatic bandage for the arterial puncture part is characterized in that the back surface of the air pressure gauge body is also connected with a timing meter.
The pressure air bag hemostatic bandage for the arteriopuncture part is characterized in that the miniature electric inflator pump is directly connected with an air pressure gauge and a timing meter arranged on the back of the air pressure gauge.
When the utility model is used, according to the actual needs of the patients, the binding paper tape of the hemostatic bandage is opened, the embedded inflatable bag filled with the set pressure is pressed and wrapped on the artery puncture part of the patients, then the bandage is wound on the wrist parts of the patients, and the adhesive tape and the tail part row-connecting hook are adhered and fixed, thus completing the operation of hemostasis by compression; during medical work, when the artery puncture compression part needs to be decompressed in a proper amount at proper time, a set timing meter is watched, the inflating and deflating inflating valve or the inflating control valve is controlled, the deflating and decompressing operation of the inflatable bag is carried out, the pressure and the decompressing degree in the inflatable bag are measured and controlled through the air pressure gauge, or the actual clinical needs of a patient are met, and then the inflatable bag is inflated.
Because the utility model discloses an adopted above-mentioned technical scheme, it is numerous and complicated to have solved current radial artery hemostasis utensil structural design effectively, has the risk of bleeding again in the practical clinical application, awkward problem. The result of having tried through clinical trial for a number of times shows that it has the novel practicality of structure, and the operation is simple and easy, and labour saving and time saving is comfortable with human laminating, can avoid the risk that the puncture artery bleeds again effectively, and oppresses and the degree of release can be controlled, advantages such as convenient to use are applicable to radial artery hemostasis etc..
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Fig. 1 is a schematic view of the embodiment of the present invention, namely, the bandage main body, wherein the hose is connected with an inflation/deflation valve.
Fig. 2 is a schematic view of the embodiment of fig. 1 with an air pressure gauge attached to the hose of the bandage body.
FIG. 3 is a schematic view of the embodiment of FIG. 1 showing a hand-held inflatable balloon with an inflation control valve and a barometer attached to the hose of the bandage body and the bandage body in an expanded configuration.
Fig. 4 is an enlarged rear view of the air pressure gauge of the embodiment of fig. 3, namely, a timing meter attached to the back surface of the gauge body.
Fig. 5 is a schematic view of the bandage body 1 of fig. 1 with a hose having a directly attached air pressure gauge and a miniature electric inflator pump connected to an inflation control valve.
Fig. 6 is a schematic view of the embodiment of fig. 1, in which a miniature electric inflator pump having a pressure gauge and an inflation control valve is attached to a hose of the bandage main body 1.
The reference numbers in the drawings are as follows: 1, a bandage main body; 2, inflating the air bag; 3 inflating and deflating the inflating valve; 4, a flexible pipe; 5 binding the paper tape; 6, a barometric pressure gauge; 7 hand-held inflatable balloon; 8, an inflation control valve; 9, sticking a tape; 10 rows of hooks; 11 timing a timer; 12 micro electric inflator pump.
Detailed Description
As the embodiment shown in the attached figure 1, the utility model comprises: the bandage comprises a bandage body 1, an inflatable bag 2, a hose 4 and an inflation and deflation valve cock 3, wherein the bandage body 1 is a bandage main body which is provided with the embedded inflatable bag 2 and an adhesive tape 9 respectively on the belt body and is provided with 3 continuous row hooks 10 at the tail part of the belt body, the hose 4 is arranged on the inflatable bag 2 of the bandage main body 1, the hose 4 is provided with the inflation and deflation valve cock 3, and a binding paper tape 5 is assembled on the bandage main body 1.
referring to fig. 2, the hose 4 of the inflatable bag 2 in the bandage body 1 of the present embodiment is connected with a branch hose which is respectively connected with an inflation/deflation valve 3 and a pressure gauge 6.
Referring to fig. 3-4, the hose 4 of the inflatable bag 2 in the bandage body 1 of the present embodiment is connected with a branch hose, and the branch hose is respectively connected with an air pressure gauge 6 and a hand-held inflatable balloon 7 with an inflation control valve 8, and the back of the gauge body of the air pressure gauge 6 is also connected with a timing meter 11.
Referring to fig. 5, the hose 4 of the air-filled bag 2 in the bandage body 1 of the present embodiment is connected with an air-filling control valve 8 and a miniature electric air-filling pump 12 with a pressure gauge 6.
Referring to fig. 6, the hose 4 of the inflatable bag 2 in the bandage body 1 of the present embodiment is connected with a branch pipe which is respectively connected with an air pressure gauge 6, an inflation control valve 8 and a micro electric inflator pump 12.

Claims (4)

1. A pressure air bag tourniquet bandage for an artery puncture part comprises a bandage body and is characterized by further comprising an air bag inflating bag (2), a hose (4), an air inflating and deflating valve nozzle (3), a binding paper tape (5) of an air pressure gauge (6) and an air inflating control valve (8), wherein the bandage body is provided with the embedded air bag inflating bag (2), a sticky tape (9) and a bandage main body (1) which is provided with 3-5 continuous hooks (10) at the tail part of the bandage body respectively, the hose (4) is arranged on the air bag inflating bag (2) of the bandage main body (1), the hose (4) is provided with the air inflating and deflating valve nozzle (3) and is connected with a branch hose which is respectively provided with the air inflating and deflating valve nozzle (3), the air pressure gauge (6) and any one of inflating mechanisms in inflating devices with the air pressure inflating and control valve (8), and a binding paper tape (5) is assembled on the bandage main body (1).
2. The arterial puncture site pressure balloon tourniquet bandage according to claim 1, wherein the inflation means is any of a hand-held inflatable balloon (7) and a miniature electric inflator pump (12).
3. The tourniquet bandage of claim 1, wherein the barometer (6) is further connected to a timing meter (11) on the back of the body.
4. The tourniquet bandage according to claim 2, wherein the pneumatic gauge (6) and the timing gauge (11) are directly attached to the micro-electric inflator (12).
CN201821763002.6U 2018-10-29 2018-10-29 Pressure air bag hemostatic bandage for arteriopuncture part Active CN209734076U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821763002.6U CN209734076U (en) 2018-10-29 2018-10-29 Pressure air bag hemostatic bandage for arteriopuncture part

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821763002.6U CN209734076U (en) 2018-10-29 2018-10-29 Pressure air bag hemostatic bandage for arteriopuncture part

Publications (1)

Publication Number Publication Date
CN209734076U true CN209734076U (en) 2019-12-06

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CN201821763002.6U Active CN209734076U (en) 2018-10-29 2018-10-29 Pressure air bag hemostatic bandage for arteriopuncture part

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111528952A (en) * 2020-05-01 2020-08-14 哈尔滨医科大学 Disposable arterial pressure time alarm

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111528952A (en) * 2020-05-01 2020-08-14 哈尔滨医科大学 Disposable arterial pressure time alarm

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GR01 Patent grant
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Zhao Lei

Inventor after: Liu Gang

Inventor after: Zhao Gengye

Inventor after: Zheng Ye

Inventor after: Zheng Mingqi

Inventor before: Zhao Lei

Inventor before: Liu Gang

CB03 Change of inventor or designer information