CN219183960U - Disposable femoral artery compression hemostat - Google Patents
Disposable femoral artery compression hemostat Download PDFInfo
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- CN219183960U CN219183960U CN202223005194.3U CN202223005194U CN219183960U CN 219183960 U CN219183960 U CN 219183960U CN 202223005194 U CN202223005194 U CN 202223005194U CN 219183960 U CN219183960 U CN 219183960U
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- femoral artery
- hole
- balloon
- disposable
- compression hemostat
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
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Abstract
The utility model discloses a disposable femoral artery compression hemostat which comprises a compression part, an adhesive part and a lining plate, wherein a first through hole is formed in the lining plate, the compression part can penetrate out of the first through hole, a second through hole is formed in the adhesive part, the first through hole corresponds to the second through hole, and the compression part and the lining plate can be adhered and fixed by the adhesive part. The disposable femoral artery compression hemostat is used for being used when an arterial puncture point is closed after femoral artery interventional operation, the compression part is fully transparent, the affected part pressed by the compression air bag is convenient to observe, a patient does not need to keep a certain prone position with special requirements, the comfort level of the user is improved, in addition, the disposable femoral artery compression hemostat is fixedly bonded with a human body by adopting an adhesive tape, and compared with a conventional fixing mode, complicated winding and fixing are avoided, and the disposable femoral artery compression hemostat is more beneficial to the use of special people.
Description
Technical Field
The utility model relates to a disposable femoral artery compression hemostat.
Background
Existing hemostats-femoral hemostats; the hemostasis is achieved by rotating the adjusting screw to adjust the pressure of the flexible pressure pad, and the fixing method adopts a fixing belt winding mode to fix the pressure pad, and generally comprises the flexible pressure pad, the pressure adjusting disc, a fixing belt back-threading fastener, a fixing belt, the adjusting screw, a fastening screw disc and the like. Some existing products are haemostats through screwing and pressurizing, the materials of the compression wound part are silicon rubber, the compression is uneven, the comfortableness is low, the wound cannot be observed, the fixing mode adopts a mode that a fixing belt winds the waist and the legs, the fixing is troublesome, and the haemostat is not suitable for people who are too fat or too thin.
Disclosure of Invention
The utility model provides a disposable femoral artery compression hemostat for overcoming the defects of the prior art.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the disposable femoral artery compression hemostat comprises a compression part, a sticky part and a lining plate, wherein a first through hole is formed in the lining plate, the compression part can penetrate out of the first through hole, a second through hole is formed in the sticky part, the first through hole corresponds to the second through hole, and the compression part and the lining plate can be fixed by the sticky part in a pasting mode.
Further, the pressing part includes a balloon, a pressure plate, a connector, and a balloon tube, which can input gas into the balloon.
Further, the pressing member is made of a transparent material.
Further, the balloon tube includes a connection tube and a check valve that can prevent the gas inside the balloon from flowing to the outside.
Further, the center of the pressure plate is provided with a connecting piece, an L-shaped air inlet channel is arranged on the connecting piece, and the air bag pipe can be communicated with the air inlet channel.
Further, the adhesive member is cross-shaped and includes a transverse adhesive portion and a longitudinal adhesive portion.
Furthermore, the lining plate is in a shape like a Chinese character 'yi', the lining plate can be adhered to the transverse adhesive part, and centrifugal paper is arranged at two ends of the transverse adhesive part.
Further, the lining plate is provided with a buckle, and the buckle can be used for connecting the transverse adhesive part and the longitudinal adhesive part.
Further, two buckles are symmetrically arranged on the lining plate.
Further, the balloon catheter also comprises annular centrifugal paper which can be sleeved around the balloon
In summary, the disposable femoral artery compression hemostat is used after femoral artery interventional operation and when an arterial puncture point is closed, the compression part is fully transparent, the affected part pressed by the compression air bag is convenient to observe, a patient does not need to keep a certain prone position with special requirements, the comfort level of the user is improved, in addition, the disposable femoral artery compression hemostat is adhered and fixed with a human body by adopting an adhesive tape, and compared with a conventional fixing mode, complicated winding and fixing are avoided, and the disposable femoral artery compression hemostat is more beneficial to the use of special people.
Drawings
Fig. 1 is a schematic structural diagram of the present utility model.
Fig. 2 is a schematic structural diagram of the second embodiment of the present utility model.
Fig. 3 is a schematic diagram of a split structure of the present utility model.
Fig. 4 is a schematic structural view of a lining board according to the present utility model.
Fig. 5 is a schematic view of the structure of the adhesive member of the present utility model.
Fig. 6 is a schematic view of the pressing member of the present utility model.
Fig. 7 is a schematic cross-sectional structure of a pressure plate according to the present utility model.
Detailed Description
In order to enable those skilled in the art to better understand the present utility model, the following description will make clear and complete descriptions of the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model.
As shown in fig. 1-7, the disposable femoral artery compression hemostat comprises a compression part 1, an adhesive part 2 and a lining plate 3, wherein a first through hole 31 is formed in the lining plate 3, the compression part 1 can penetrate out of the first through hole 31, a second through hole 21 is formed in the adhesive part 2, the positions of the first through hole 31 and the second through hole 21 correspond to each other, the compression part 1 and the lining plate 3 can be adhered and fixed by the adhesive part 2, and preferably, the compression part 1 is made of transparent materials. The disposable femoral artery compression hemostat is used for closing an arterial puncture point after femoral artery interventional operation, the compression part is fully transparent, the affected part pressed by the compression air bag is convenient to observe, a patient does not need to keep a certain prone position with special requirements, and the comfort level of the user is improved. When using non-adhesive fixing bands, people with over-fatness, over-thinness and the like are likely to have the conditions that the products cannot be used due to unsuitable length. In addition, the utility model adopts the transparent air sac compression hemostasis structure, is softer and more comfortable than the conventional silicone rubber hemostasis mode, and adopts the fixing plate and the air sac which are made of PC and TPU transparent materials, so that the wound condition can be observed in the hemostasis process, and the medical staff can conveniently and better treat.
The compression member 1 includes a balloon 11, a pressure plate 12, a connecting member 13, and an air bag tube 14, the air bag tube 14 being capable of inputting air into the balloon 11, the balloon 11 and the pressure plate 12 being welded by a high-frequency welding machine, the pressure plate 12 being provided at the center thereof with the connecting member 13, the connecting member 13 being provided with an L-shaped air intake passage 15, the air bag tube 14 being capable of communicating with the air intake passage 15. In addition, the balloon tube 14 includes a connection tube 141 and a check valve 142, and the check valve 142 can prevent the gas inside the balloon 11 from flowing to the outside. The balloon 11 is semicircular in shape in an inflated state, and before the balloon is used, the internal gas is completely extracted and clings to the pressure plate 12, and the balloon 11 is made of PVC soft and comfortable materials. In the initial state of the utility model, the balloon 11 is flat, gas is slowly filled into the balloon 11 through the balloon tube 14, and the balloon 11, the pressure plate 12, the connecting piece 13 and the balloon tube 14 are all made of full transparent materials, so that medical staff can more conveniently and more comprehensively observe the situation near a wound of a patient in the inflation process, and the balloon 11 is filled with more proper gas. In addition, the balloon tube 14 includes a connection tube 141 and a check valve 142; the inflated gas can only enter the balloon 11 and cannot flow out of the balloon 11, so that the product is disposable and safer and more sanitary.
The adhesive part 21 is cross-shaped and comprises a transverse adhesive part 22, a longitudinal adhesive part 23 and a central adhesive part 24, the lining plate 3 is in a shape of a straight line, the lining plate 3 can be adhered to the transverse adhesive part 22, centrifugal paper 4 is arranged at two ends of the transverse adhesive part 22, the centrifugal paper 4 can isolate the adhesive, and the disposable femoral artery compression hemostat disclosed by Bi Ben is convenient to tear from a patient after being used. The balloon tube 14 is located above the adhesive part 21, the balloon 11 and the pressure plate 12 are located below the adhesive part 21, the pressure plate 12 can be adhered to the central adhesive part 24 of the adhesive part 21, the lining plate 3 can be adhered to the transverse adhesive part 22, the lining plate 3 is provided with the buckles 32, the buckles 32 are arranged at the junction of the transverse adhesive part and the longitudinal adhesive part, preferably, the lining plate 3 is symmetrically provided with the two buckles 32, and the buckles 32 can further strengthen the structure. In addition, since the diameter of the first through hole 31 is larger than that of the second through hole 21, the structure is used for facilitating the installation of the pressing part 1, and therefore, the device further comprises annular centrifugal paper 5, and the annular centrifugal paper 5 can be sleeved around the balloon 11 and just covers the central adhesive part 24 of the adhesive part 21, and covers the place which cannot be adhered to the pressing part 1 or the lining plate 3, so that the adhesion between the central adhesive part 24 and the skin of a patient is avoided. In general, the disposable femoral artery compression hemostat of the utility model is of a cross structure, the lining plate 3 is transversely arranged, the longitudinal adhesive part 23 can be directly contacted with the skin of a patient, the lining plate 3 and the compression part are fixed, after the balloon 11 is inflated, the lining plate 3 can play a supporting role, the lining plate 3 has certain flexibility, can deform to a certain extent along with the inflation of the balloon 11, can also support the inflated balloon 11, and after the disposable femoral artery compression hemostat is used, the disposable femoral artery compression hemostat can be easily removed from the body of the patient by tearing the centrifugal paper 4 at the end part of the transverse adhesive part 22.
It will be apparent that the described embodiments are only some, but not all, embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the present utility model without making any inventive effort, shall fall within the scope of the present utility model.
Claims (10)
1. Disposable femoral artery hemostasis by compression ware, its characterized in that: including oppression part, viscidity part and welt, be provided with first through-hole on the welt, oppression part can wear out from first through-hole, is provided with the second through-hole on the viscidity part, and first through-hole and second through-hole position are corresponding, and oppression part and welt homoenergetic are pasted fixedly by viscidity part.
2. The disposable femoral artery compression hemostat of claim 1, wherein: the compression component comprises a balloon, a pressure plate, a connecting piece and an air sac tube, and the air sac tube can input air into the balloon.
3. The disposable femoral artery compression hemostat of claim 1, wherein: the pressing component is made of transparent materials.
4. The disposable femoral artery compression hemostat of claim 2, wherein: the balloon tube includes a connection tube and a check valve that can prevent the gas inside the balloon from flowing to the outside.
5. The disposable femoral artery compression hemostat of claim 2, wherein: the center of the pressure plate is provided with a connecting piece, an L-shaped air inlet channel is arranged on the connecting piece, and the air bag pipe can be communicated with the air inlet channel.
6. The disposable femoral artery compression hemostat of claim 2, wherein: the adhesive member is cross-shaped and includes a transverse adhesive portion, a longitudinal adhesive portion, and a central adhesive portion.
7. The disposable femoral artery compression hemostat of claim 4, wherein: the lining board is in a shape like a Chinese character 'yi', the lining board can be adhered to the transverse adhesive part, and centrifugal paper is arranged at two ends of the transverse adhesive part.
8. The disposable femoral artery compression hemostat of claim 4, wherein: the lining plate is provided with a buckle, and the buckle is arranged at the junction of the transverse adhesive part and the longitudinal adhesive part.
9. The disposable femoral artery compression hemostat of claim 4, wherein: two buckles are symmetrically arranged on the lining plate.
10. The disposable femoral artery compression hemostat of claim 2, wherein: the balloon catheter also comprises annular centrifugal paper which can be sleeved around the balloon.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223005194.3U CN219183960U (en) | 2022-11-11 | 2022-11-11 | Disposable femoral artery compression hemostat |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202223005194.3U CN219183960U (en) | 2022-11-11 | 2022-11-11 | Disposable femoral artery compression hemostat |
Publications (1)
Publication Number | Publication Date |
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CN219183960U true CN219183960U (en) | 2023-06-16 |
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CN202223005194.3U Active CN219183960U (en) | 2022-11-11 | 2022-11-11 | Disposable femoral artery compression hemostat |
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CN (1) | CN219183960U (en) |
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2022
- 2022-11-11 CN CN202223005194.3U patent/CN219183960U/en active Active
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