CN222708320U - A coronary heart disease interventional hemostasis device via distal radial artery - Google Patents

A coronary heart disease interventional hemostasis device via distal radial artery Download PDF

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Publication number
CN222708320U
CN222708320U CN202421242379.2U CN202421242379U CN222708320U CN 222708320 U CN222708320 U CN 222708320U CN 202421242379 U CN202421242379 U CN 202421242379U CN 222708320 U CN222708320 U CN 222708320U
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bandage
hemostasis
heart disease
coronary heart
radial artery
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CN202421242379.2U
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Chinese (zh)
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张新月
徐冬梅
许丹丹
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Jiangsu Province Hospital
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Jiangsu Province Hospital
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Abstract

本实用新型公开了一种冠心病经远桡动脉介入加压止血装置,包括绷带,绷带一端设有卡嵌装置,绷带另一端设有连接装置,绷带表面设有固定机构,固定机构包括活动安装在绷带表面的一字带,一字带一端设有魔术贴,魔术贴与一字带一侧相适配,一字带表面设有透明带,透明带分散均匀的安装在一字带表面,固定机构下方适配设有止血装置,通过上述结构相互配合,达到操作方便、便于观察伤口和便于对穿刺处进行加压解压便于更好的对虎口处进行止血的目的。

The utility model discloses a pressurized hemostasis device for interventional treatment of coronary heart disease via distal radial artery, comprising a bandage, one end of the bandage being provided with a snap-in device, the other end of the bandage being provided with a connecting device, a fixing mechanism being provided on the surface of the bandage, the fixing mechanism comprising a straight belt movably mounted on the surface of the bandage, one end of the straight belt being provided with a Velcro, the Velcro being matched with one side of the straight belt, a transparent belt being provided on the surface of the straight belt, the transparent belt being evenly dispersedly mounted on the surface of the straight belt, a hemostasis device being adapted below the fixing mechanism, and the mutual cooperation of the above structures can achieve the purposes of convenient operation, convenient wound observation, convenient pressurization and decompression of the puncture site, and better hemostasis of the base of the thumb.

Description

Coronary heart disease is through far radial artery intervention pressurization hemostasis device
Technical Field
The utility model relates to the technical field of coronary heart disease, in particular to a coronary heart disease via remote radial artery intervention compression hemostasis device.
Background
Under normal conditions, coronary arteries are the main blood vessel for supplying blood to the heart, and under certain conditions, coronary artery stenosis or blockage causes coronary heart disease symptoms such as chest pain, angina pectoris or myocardial infarction, and radial artery puncture has become a routine puncture path for interventional therapy of coronary heart disease patients, but the occurrence of radial artery occlusion limits the repeated use of radial artery on the operative side of the patient.
The diagnosis and treatment (dTRA) of coronary intervention through distal radial artery is to take the strongest point of radial artery pulsation in the dorsal anatomy 'nasopharynx pot' area of thumb and index finger palm as a puncture point, and through coronary intervention operation, a doctor can directly enter coronary artery to perform operations of vasodilation and blood flow restoration, and the occurrence of radial artery occlusion can be obviously reduced through the diagnosis and treatment (dTRA) of coronary intervention through distal radial artery.
At present, the existing clinical common compression hemostasis mode of the puncture site adopts a doctor to fold 2 times of medical gauze blocks with the length of 7.5cm to compress the puncture site for 15min, then uses an elastic bandage (the length is 1.5 times of the circumference of the palm of a patient) to perform 3 circles of annular compression hemostasis on the puncture site, but still has the risks that the puncture site is inconvenient to decompress, wounds are difficult to observe, and the pressurized gauze is easy to slip, so that the coronary heart disease radial artery intervention compression hemostasis device which is convenient to operate and meets the medical use requirements is provided based on the problems.
Disclosure of utility model
The utility model aims to provide a coronary heart disease transdistal radial artery intervention compression hemostasis device, which aims to solve the problems in the background technology.
The utility model provides a pressure hemostasis device for coronary heart disease via radial artery intervention, which comprises a bandage, wherein one end of the bandage is provided with a clamping device, the other end of the bandage is provided with a connecting device, the surface of the bandage is provided with a fixing mechanism, and a hemostasis device is arranged under the fixing mechanism in an adapting way.
Further, the fixing mechanism comprises a character belt movably arranged on the surface of the bandage, one end of the character belt is provided with a magic tape, the magic tape is matched with one side of the character belt, the surface of the character belt is provided with a transparent belt, and the transparent belt is uniformly dispersed and arranged on the surface of the character belt.
Furthermore, the surface of the bandage is uniformly provided with heat dissipation holes, and the surface of the bandage is symmetrically provided with connecting grooves.
Further, the connecting groove is matched with the straight strip.
Further, the clamping and embedding device comprises a fixing plate, one end of the fixing plate, which is fixed to the bandage, forms a fixing groove, and a clamping panel is movably arranged in the fixing groove.
Further, connecting device includes the adaptation and installs the connecting plate at the bandage other end, and the connecting plate internal fixation is equipped with the connecting rod, and connecting plate one side is fixed to be equipped with and connects the inserted bar, connects inserted bar and card panel looks adaptation.
Further, the hemostatic device comprises a hemostatic air bag which is arranged on the surface of the straight belt in an adapting mode, and an air valve is arranged on the surface of the hemostatic air bag in an adapting mode.
Preferably, in order to meet the requirement that the tightness can be conveniently adjusted according to the use requirement when the bandage is used, a fixing mechanism is arranged on the surface of the bandage in an adaptation mode.
Preferably, in order to enable the redundant straight belts to be repeatedly fixed, the stability during fixing is ensured, and the surfaces of the bandages are symmetrically provided with connecting grooves.
Preferably, transparent belts are arranged on the surface of the straight belt in a stepwise manner for conveniently observing the condition of the puncture wound, and the transparent belts are uniformly distributed on the surface of the straight belt.
Preferably, in order to better stop bleeding at the puncture site, the hemostatic device is better attached to the skin at the tiger mouth, the hemostatic device is provided with an air bag, and the air bag is pressurized to be in an outwards protruding shape, so that the hemostatic device is favorable for being fully attached to the skin recessed at the tiger mouth.
Compared with the prior art, the utility model has the beneficial effects that:
(1) When the novel wrist strap is used, the bandage is wound on the wrist joint, the length of the bandage is adjusted according to the use requirement, one end of the bandage is adjusted according to the connecting plate and the connecting rod, the bandage is wound on the connecting rod to be fixed, then the connecting inserting rod is connected with the clamping panel, the connecting inserting rod is inserted in the clamping panel, the bandage is fixed on the wrist joint, then one end of the straight strap is wound in the connecting groove, the straight strap is connected in the connecting groove on the surface of the bandage at the wrist after passing through the tiger mouth along the palm, the straight strap is reversely folded on the surface of the straight strap to be connected after passing through the connecting groove, and the redundant straight strap can be wound in the remaining connecting groove of the bandage, so that the stability of fixation is improved.
(2) In order to better stop bleeding at the puncture site, the hemostatic device is better attached to the skin at the tiger mouth, the hemostatic device is arranged as a hemostatic air bag, and the hemostatic air bag is pressurized in a gas supplementing way through a gas valve, so that the hemostatic air bag is pressurized to be in an outwards protruding shape, is fully attached to the skin at the tiger mouth, and better stops bleeding at the puncture site.
Drawings
FIG. 1 is a schematic diagram of a device for hemostasis by coronary heart disease via distal radial artery intervention;
FIG. 2 is a schematic diagram showing a device for hemostasis by coronary heart disease via distal radial artery intervention;
fig. 3 is a schematic diagram showing the split structure of a bandage of a device for hemostasis by coronary heart disease via radial artery intervention.
1, Bandage; 2, a clamping device, 3, a connecting device, 4, a fixing mechanism, 5, a hemostatic device, 101, a heat dissipation hole, 102, a connecting groove, 103, a fixing groove, 201, a fixing plate, 202, a clamping panel, 301, a connecting plate, 302, a connecting rod, 303, a connecting inserting rod, 401, a straight belt, 402, a transparent belt, 403, a magic tape, 501, a hemostatic air bag, 502 and an air valve.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Embodiment one:
Referring to fig. 1-3, the present utility model provides a technical solution: A coronary heart disease intervention compression hemostasis device via far radial artery comprises a bandage 1, wherein heat radiation holes 101 are uniformly formed on the surface of the bandage 1, connecting grooves 102 are symmetrically formed on the surface of the bandage 1, a clamping and embedding device 2 is arranged at one end of the bandage 1, the clamping and embedding device 2 comprises a fixing plate 201, the fixing plate 201 fixes one end of the bandage 1 to form a fixing groove 103, a clamping and embedding plate 202 is movably arranged in the fixing groove 103, a connecting device 3 is arranged at the other end of the bandage 1, the connecting device 3 comprises a connecting plate 301 which is adaptively arranged at the other end of the bandage 1, a connecting rod 302 is fixedly arranged in the connecting plate 301, a connecting inserting rod 303 is fixedly arranged at one side of the connecting plate 301, the connecting inserting rod 303 is matched with the clamping and embedding plate 202, a fixing mechanism 4 is arranged on the surface of the bandage 1, the fixing mechanism 4 comprises a straight belt 401 movably arranged on the surface of the bandage 1, the straight belt 401 is made of rubber material and can be adjusted according to the shape of hands, so as to provide better fitting degree and comfort, and can recover after being stressed, meanwhile, the rubber also has wear resistance and durability, the service life is prolonged, one end of the straight strap 401 is provided with a magic tape 403, the magic tape 403 is matched with one side of the straight strap 401, the surface of the straight strap 401 is provided with a transparent strap 402, the transparent strap 402 is uniformly and dispersedly arranged on the surface of the straight strap 401, the condition of a wound at a puncture part is easy to observe, the connecting groove 102 is matched with the straight strap 401, the hemostatic device 5 is arranged under the fixing mechanism 4, when in use, one end of the bandage 1 is adjusted according to the length of the connecting plate 301 and the connecting rod 302 by winding the bandage 1 around the connecting rod 302, then the connecting insert 303 is connected with the clamp panel 202, the connecting inserting rod 303 is inserted into the card panel 202, the bandage 1 is fixed at the wrist joint, then one end of the straight strap 401 is wound in the connecting groove 102, the straight strap 401 is connected in the connecting groove 102 on the surface of the bandage 1 at the wrist after passing through the tiger mouth along the palm, the straight strap 401 is connected by passing through the connecting groove 102 and then reversely folding the magic tape 403 on the surface of the straight strap 401, and the redundant straight strap 401 can be wound in the remaining connecting groove 102 of the bandage 1, so that the fixing stability is improved.
Embodiment two:
Referring to fig. 1-3, the technical scheme provided by the utility model is that the device comprises a bandage 1, wherein a clamping device 2 is arranged at one end of the bandage 1, a connecting device 3 is arranged at the other end of the bandage 1, a fixing mechanism 4 is arranged on the surface of the bandage 1, a hemostatic device 5 is arranged under the fixing mechanism 4 in an adapting way, the hemostatic device 5 comprises a hemostatic air bag 501 which is arranged on the surface of a straight belt 401 in an adapting way, an air valve 502 is arranged on the surface of the hemostatic air bag 501 in an adapting way, the hemostatic device 5 is better attached to the skin at a tiger mouth in order to better stop bleeding at a puncture position, the hemostatic device 5 is arranged as the hemostatic air bag 501, the hemostatic air bag 501 is subjected to gas supplementing pressurization through the air valve 502, the hemostatic air bag 501 is enabled to be in an outwards protruding shape in a pressurizing way and fully attached to the skin sunken at the tiger mouth, and the puncture position is better stopped.
The operation principle is that the length of the bandage 1 is adjusted according to the use requirement by winding the bandage 1 on the wrist joint, one end of the bandage 1 is adjusted according to the length of the connecting plate 301 and the connecting rod 302, the bandage 1 is fixed on the wrist joint, then one end of the straight strap 401 is wound in the connecting groove 102, the straight strap 401 is connected in the connecting groove 102 on the surface of the bandage 1 on the wrist after passing through the tiger mouth along the palm, the straight strap 401 passes through the connecting groove 102, the magic tape 403 is reversely folded on the surface of the straight strap 401 for connection, the hemostatic air bag 501 is pressurized by the air valve 502 to make the hemostatic air bag 501 take an outward convex shape, and the hemostatic air bag 501 is fully attached to the skin recessed on the tiger mouth.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The coronary heart disease radial artery intervention pressurizing hemostasis device comprises a bandage (1) and is characterized in that one end of the bandage (1) is provided with a clamping and embedding device (2), the other end of the bandage (1) is provided with a connecting device (3), the surface of the bandage (1) is provided with a fixing mechanism (4), and a hemostasis device (5) is adapted below the fixing mechanism (4);
the fixing mechanism (4) comprises a straight strip (401) movably mounted on the surface of the bandage (1), a magic tape (403) is arranged at one end of the straight strip (401), the magic tape (403) is matched with one side of the straight strip (401), a transparent strip (402) is arranged on the surface of the straight strip (401), and the transparent strips (402) are uniformly dispersed and mounted on the surface of the straight strip (401).
2. The coronary heart disease radial artery intervention compression hemostasis device is characterized in that radiating holes (101) are uniformly formed in the surface of the bandage (1), and connecting grooves (102) are symmetrically formed in the surface of the bandage (1).
3. The device for coronary heart disease transradial intervention compression hemostasis as claimed in claim 2, wherein the connecting groove (102) is adapted to the ribbon (401).
4. The device for hemostasis by radial artery intervention via coronary heart disease of claim 1, wherein the clamping device (2) comprises a fixing plate (201), the fixing plate (201) is fixed to one end of the bandage (1), a fixing groove (103) is formed in one end of the bandage (1), and a clamping panel (202) is movably arranged in the fixing groove (103).
5. The device for coronary heart disease transradial artery intervention compression hemostasis according to claim 4, wherein the connecting device (3) comprises a connecting plate (301) which is adaptively arranged at the other end of the bandage (1), a connecting rod (302) is fixedly arranged in the connecting plate (301), a connecting inserting rod (303) is fixedly arranged at one side of the connecting plate (301), and the connecting inserting rod (303) is adaptive to the clamping panel (202).
6. The device for coronary heart disease transradial artery intervention compression hemostasis according to claim 1, wherein the hemostasis device (5) comprises a hemostasis air bag (501) which is adapted to be installed on the surface of the straight belt (401), and an air valve (502) is adapted to the surface of the hemostasis air bag (501).
CN202421242379.2U 2024-06-03 2024-06-03 A coronary heart disease interventional hemostasis device via distal radial artery Active CN222708320U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421242379.2U CN222708320U (en) 2024-06-03 2024-06-03 A coronary heart disease interventional hemostasis device via distal radial artery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421242379.2U CN222708320U (en) 2024-06-03 2024-06-03 A coronary heart disease interventional hemostasis device via distal radial artery

Publications (1)

Publication Number Publication Date
CN222708320U true CN222708320U (en) 2025-04-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421242379.2U Active CN222708320U (en) 2024-06-03 2024-06-03 A coronary heart disease interventional hemostasis device via distal radial artery

Country Status (1)

Country Link
CN (1) CN222708320U (en)

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