Pressing hemostasis device for cardiology department nursing

By incorporating components such as an air pump, pressure sensor, and binding strap into the intelligent pressure-based hemostasis device, the problems of inconvenient pressure adjustment and poor stability of existing devices have been solved. This enables precise pressure application to the patient's wound and stable wearing, improving the comfort and stability of use.

CN223601499UActive Publication Date: 2025-11-28JIAXING NO 1 HOSPITAL
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Patent Information

Application Number
CN202422535027.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-11-28
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

Existing pressure-based hemostasis devices for cardiology nursing cannot intelligently adjust the pressure value, resulting in excessive or insufficient pressure when worn, inconvenient adjustment, and easy dislodgement from the patient's body, making them unstable.

Method used

It adopts an intelligent pressure hemostasis component, including an air pump, pressure sensor, microcontroller, display and binding strap, etc. The pressure is regulated by the air pump and electric valve, and it is fixed to the patient with Velcro and reinforcement straps to achieve precise pressure control and stable wearing.

Benefits of technology

It achieves precise pressure on the patient's wound, stable control of the pressure value, avoids problems of excessive or insufficient pressure, and ensures that the device is not easily dislodged during use, thus improving the stability and comfort of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a pressing hemostasis device for cardiology nursing, which belongs to the technical field of food ingredient processing and comprises a protection box, an intelligent pressing hemostasis component and a fixing component, the intelligent pressing hemostasis component comprises an air pump arranged at one end of the inner wall of the protection box, and one side of the air pump is hermetically communicated with a conveying pipe. The end of the conveying pipe penetrates through the protection box and is communicated with a one-way valve in a sealed mode, one side of the one-way valve is communicated with a conveying box in a sealed mode, and one side of the conveying box is communicated with an electric valve in a sealed mode. Therefore, the pressing air bag can be stable in the wearing process, and the situation that the pressing air bag slides downwards to cause unstable pressing of the wound is not prone to occurring.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the medical technical field, and specifically relates to a pressing hemostasis device for cardiology department nursing. BACKGROUND

[0002] The cardiology department is a clinical department set in a large internal medicine department of various levels of hospitals for diagnosis and treatment of cardiovascular diseases, and treats diseases including angina pectoris, hypertension, sudden death, arrhythmia, heart failure, premature beat, arrhythmia, myocardial infarction, cardiomyopathy, myocarditis, acute myocardial infarction and other cardiovascular diseases. According to the search, the application number is "CN202221040942.9", and a "pressing hemostasis device for cardiology department nursing" is disclosed, which records "the pressing hemostasis device for cardiology department nursing is driven by the connecting lead screw to press the puncture port with different force, and is limited by the connecting sleeve plate, so that the puncture needle can be conveniently adapted, so that the puncture head can be pulled out after pressing hemostasis, the hemostasis effect is improved, the comfort during pressing is ensured by the pressing air bag, the problem that the existing pressing hemostasis device is prone to causing discomfort of the patient and inconvenient adjustment during pressing is solved, and the applicability and comfort during use of the pressing hemostasis device are improved". The pressing hemostasis device for cardiology department nursing is driven by the connecting lead screw to press the puncture port with different force, and is limited by the connecting sleeve plate, so that the puncture needle can be conveniently adapted, so that the puncture head can be pulled out after pressing hemostasis, the hemostasis effect is improved, the comfort during pressing is ensured by the pressing air bag, the problem that the existing pressing hemostasis device is prone to causing discomfort of the patient and inconvenient adjustment during pressing is solved, and the applicability and comfort during use of the pressing hemostasis device are improved. However, the above comparative document still has the following problems in actual use:

[0003] In actual use, the pressure value cannot be intelligently adjusted, resulting in too large or too small pressure when wearing, inconvenient adjustment, and easy falling off from the patient's body when wearing, which is not stable enough.

[0004] Therefore, it is of high practicality to provide a device capable of intelligently adjusting pressure and being more stable and not easy to fall off. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a pressing hemostasis device for cardiology department nursing, which aims at solving the above technical problems.

[0006] The utility model embodiment provides a pressing hemostasis device for cardiology department nursing, which comprises a protection box, an intelligent pressing hemostasis assembly and a fixing assembly.

[0007] The protection box is made of titanium alloy;

[0008] The intelligent pressing hemostasis assembly comprises an air pump arranged at one end of an inner wall of a protection box, one side of the air pump is in sealed communication with a conveying pipe, an end of the conveying pipe penetrates through the protection box and is in sealed communication with a one-way valve, one side of the one-way valve is in sealed communication with a conveying box, one side of the conveying box is in sealed communication with an electric valve, one end of the conveying box is in sealed communication with a pressing air bag, the other end of the conveying box is fixedly connected with the protection box, one end of the protection box is provided with a display, the top of the protection box is provided with a display strip, one end of an inner wall of the pressing air bag is provided with a pressure sensor, one side of an inner wall of the protection box is provided with a single-chip microcomputer.

[0009] The fixing assembly comprises binding belts arranged on both sides of the protection box, one side of one of the binding belts is provided with a hasp, both ends of the other binding belt are provided with magic tapes, both sides of the top of the protection box are provided with reinforcing belts, day slots are formed in the middle portions of the two reinforcing belts, connecting belts are arranged on the top portions of the two reinforcing belts, the end portions of the two connecting belts are woundly connected with the day slots, and a fixing belt is arranged in the middle portions of the two reinforcing belts.

[0010] In one embodiment of the utility model, the inner wall of the protection box is provided with an isolation plate in the middle portion, and one side of the isolation plate is provided with two fixing strips.

[0011] In one embodiment of the utility model, the inside of the protection box is provided with a storage battery.

[0012] In one embodiment of the utility model, the bottom of one side of the protection box is provided with a plurality of ventilation slots.

[0013] In one embodiment of the utility model, the conveying box is made of polyethylene.

[0014] In one embodiment of the utility model, the binding belt is made of flax.

[0015] In one embodiment of the utility model, the air pump, the electric valve, the display, the pressure sensor and the display strip are electrically connected with the single-chip microcomputer, and the single-chip microcomputer is electrically connected with the storage battery.

[0016] Compared with the prior art, the utility model has the advantages of:

[0017] 1) through the gas pump, convenient when use, singlechip begins initialization, load the pressure value that use personnel preset, pressure sensor continues monitoring the pressure in the pressing air bag, and send real-time data to singlechip, singlechip receives these data, compare with the pressure value that preset, if the pressure in the pressing air bag is lower than the preset value, singlechip sends signal to the gas pump, the gas pump will gas through the delivery pipe and enter the one-way valve and enter the delivery box, and finally enter the pressing air bag with the filling of gas, the pressing air bag gradually expands, exerts pressure on the wound, if the pressure in the pressing air bag exceeds the preset value, singlechip opens the electric valve and bleeds, the pressure in the pressing air bag reaches the preset value, and the display and display bar display the pressure value in the pressing air bag in real time, convenient for medical staff and itself to view, so as to realize the stable control pressure on the wound of patient for accurate pressing;

[0018] 2) through the magic tape, convenient for use personnel to aim the pressing air bag at the waist of the patient, and take the binding belt, make one of the binding belt pass through the mouth buckle, and be fixed by magic tape, when the use personnel fix the binding belt on the patient, control the pressing air bag of intelligent pressing hemostasis assembly to the patient wound air pressure hemostasis, at this time, the use personnel cooperate with the reinforcing belt and the connecting belt, make the connecting belt bind in the shoulder of the patient and pass through the armpit, and pass through the slot fixed, so as to realize that the pressing air bag can be stable in the process of wearing, and the wound is not easy to appear unstable pressing. BRIEF DESCRIPTION OF DRAWINGS

[0019] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, which together with the embodiments of the present application serve to explain the present application, and do not constitute a limitation on the present application. In the drawings:

[0020] Figure 1 It is the structure schematic diagram of the present application;

[0021] Figure 2 It is the structure schematic diagram of one end of the present application;

[0022] Figure 3 It is the structure schematic diagram of the other end of the present application;

[0023] Figure 4 It is the internal structure schematic diagram of the protection box of the present application.

[0024] In the drawing: 100, protection box;

[0025] 200, intelligent pressing hemostasis assembly; 210, gas pump; 220, delivery pipe; 230, one-way valve; 240, delivery box; 250, electric valve; 260, pressing air bag; 270, display; 280, display bar;

[0026] 300, fixing assembly; 310, binding belt; 320, hasp; 330, magic tape; 340, reinforcing belt; 350, connecting belt; 360, fixing belt;

[0027] 400, isolation plate;

[0028] 500, protection box. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0030] EMBODIMENT

[0031] Please refer to Figures 1-4 A press hemostasis device for cardiology nursing, comprising a protection box 100, an intelligent press hemostasis assembly 200 and a fixing assembly 300.

[0032] Specifically, please refer to Figure 1 The protection box 100 is cast from titanium alloy.

[0033] Please refer to Figures 1-4 The intelligent press hemostasis assembly 200 comprises a gas pump 210 arranged at one end of the inner wall of the protection box 100. One side of the gas pump 210 is in sealed communication with a conveying pipe 220. The end of the conveying pipe 220 penetrates the protection box 100 and is in sealed communication with a one-way valve 230. One side of the one-way valve 230 is in sealed communication with a conveying box 240. One side of the conveying box 240 is in sealed communication with an electric valve 250. One end of the conveying box 240 is in sealed communication with a press air bag 260. The other end of the conveying box 240 is fixedly connected with the protection box 100. One end of the protection box 100 is provided with a display 270. The top of the protection box 100 is provided with a display strip 280. One end of the inner wall of the press air bag 260 is provided with a pressure sensor. One side of the inner wall of the protection box 100 is provided with a single-chip microcomputer.

[0034] In a specific embodiment, through the air pump 210, when the single-chip microcomputer starts to initialize, the pressure value preset by the user is loaded, the pressure sensor continuously monitors the pressure in the pressing air bag 260, and sends real-time data to the single-chip microcomputer. After the single-chip microcomputer receives these data, it compares with the preset pressure value. If the pressure in the pressing air bag 260 is lower than the preset value, the single-chip microcomputer sends a signal to the air pump 210, which sends gas into the one-way valve 230 through the conveying pipe 220 and into the conveying box 240, and finally into the pressing air bag 260. With the filling of gas, the pressing air bag 260 gradually expands and exerts pressure on the wound. If the pressure in the pressing air bag 260 exceeds the preset value, the single-chip microcomputer opens the electric valve 250 to release gas, and the pressure in the pressing air bag 260 reaches the preset value. The display 270 and the display bar 280 display the pressure value in the pressing air bag 260 in real time, which is convenient for medical staff and the user to check, so as to realize the purpose of stable control of pressure for precise pressing on the patient's wound.

[0035] Please refer to Figure 2 The fixed assembly 300 includes a binding belt 310 arranged on both sides of the protection box 100. One side of one of the binding belts 310 is provided with a hasp 320, and both ends of the other binding belt 310 are provided with magic tapes 330. The top of the protection box 100 is provided with reinforcing belts 340 on both sides, and the middle of each of the two reinforcing belts 340 is provided with a date slot. The top of each of the two reinforcing belts 340 is provided with a connecting belt 350, and the end of each of the two connecting belts 350 is wound and connected with the date slot. The middle of each of the two reinforcing belts 340 is provided with a fixing belt 360.

[0036] In a specific embodiment, through the magic tape 330, the user can align the pressing air bag 260 with the patient's waist, and hold the binding belt 310. One of the binding belts 310 passes through the hasp 320 and is fixed by the magic tape 330. After the user fixes the binding belt 310 on the patient's body, the intelligent pressing hemostasis assembly 200 controls the pressing air bag 260 to press the patient's wound. At this time, the user cooperates the reinforcing belt 340 with the connecting belt 350, so that the connecting belt 350 is bound on the patient's shoulder and passes through the armpit, and is fixed through the date slot, so that the pressing air bag 260 can be stabilized during wearing, and the purpose of preventing the wound from being pressed unstably due to downward sliding is achieved.

[0037] Please refer to Figure 4 The inner wall of the protection box 100 is provided with a partition plate 400, and one side of the partition plate 400 is provided with two fixed strips.

[0038] In a specific embodiment, the isolation plate 400 is arranged to facilitate isolation of the parts in the protection box 100 during use, thereby avoiding mutual influence during use.

[0039] Referring to Figure 4 The two fixing strips are provided with a protection box 500, and the protection box 500 is internally provided with a storage battery.

[0040] In a specific embodiment, the protection box 500 is arranged to facilitate protection of the storage battery inside, thereby avoiding damage caused by bumps during use, and further improving the stability of the storage battery during use.

[0041] Referring to Figures 1-2 The bottom of one side of the protection box 100 is provided with a plurality of ventilation grooves.

[0042] In a specific embodiment, the ventilation grooves are arranged to facilitate ventilation during use, thereby reducing the temperature inside the protection box 100 and improving the heat dissipation effect.

[0043] Referring to Figure 1 The conveying box 240 is made of polyethylene.

[0044] In a specific embodiment, the polyethylene is arranged to facilitate use of the good wear resistance and tensile resistance of the polyethylene material when the conveying box 240 is used, which means that the conveying box 240 can withstand a large mechanical stress and friction during use. The characteristics of not being easy to damage make the conveying box 240 more solid.

[0045] Referring to Figure 2 The binding belt 310 is made of flax.

[0046] In a specific embodiment, the flax is arranged to facilitate use of the tight flax fiber structure, which has the characteristics of good wear resistance, tear resistance and tensile resistance, so that the binding belt 310 can withstand a large tensile force and friction during use, and is not easy to break.

[0047] Referring to Figures 1-4 The air pump 210, the electric valve 250, the display 270, the pressure sensor and the display strip 280 are electrically connected with the single-chip microcomputer, and the single-chip microcomputer is electrically connected with the storage battery.

[0048] In a specific embodiment, the single-chip microcomputer is arranged to facilitate energization of the electrical equipment when electricity is needed, thereby avoiding the condition that the electrical equipment cannot be energized when electricity is needed, and improving the stability thereof.

[0049] In use, first, through the air pump 210, when using, the single-chip microcomputer starts initialization, loads the pressure value preset by the user, the pressure sensor continuously monitors the pressure in the pressing air bag 260, and sends real-time data to the single-chip microcomputer, and the single-chip microcomputer compares the data with the preset pressure value, if the pressure in the pressing air bag 260 is lower than the preset value, the single-chip microcomputer sends a signal to the air pump 210, then the air pump 210 sends gas through the delivery pipe 220 into the one-way valve 230 and into the delivery box 240, and finally into the pressing air bag 260, with the filling of gas, the pressing air bag 260 gradually expands, and exerts pressure on the wound, if the pressure in the pressing air bag 260 exceeds the preset value, the single-chip microcomputer opens the electric valve 250 to release gas, the pressure in the pressing air bag 260 reaches the preset value, and the display 270 and the display bar 280 display the pressure value in the pressing air bag 260 in real time, which is convenient for medical staff and self-checking, so as to realize the purpose of stable control of pressure for precise pressing on the wound of the patient, then through the magic tape 330, the user can align the pressing air bag 260 with the waist of the patient, and hold the binding belt 310, so that one of the binding belts 310 passes through the hasp 320, and is fixed by the magic tape 330, when the user fixes the binding belt 310 on the patient, the intelligent pressing hemostasis assembly 200 controls the pressing air bag 260 to press the wound of the patient, at this time, the user cooperates the reinforcing belt 340 with the connecting belt 350, finally, the connecting belt 350 is bound on the shoulder of the patient and passes through the armpit, and passes through the slot to be fixed, so that the pressing air bag 260 can be stabilized during wearing, and the purpose of preventing the wound from being pressed unstably due to downward sliding is achieved.

[0050] Finally, it should be noted that: the above only describes preferred embodiments of the present application, and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A pressure-based hemostatic device for cardiology nursing, characterized in that, include: A protective box (100) is made of titanium alloy. A smart pressure-based hemostasis component (200) includes an air pump (210) disposed at one end of the inner wall of a protective box (100). A delivery pipe (220) is sealed to one side of the air pump (210). The end of the delivery pipe (220) passes through the protective box (100) and is sealed to a one-way valve (230). A delivery box (240) is sealed to one side of the one-way valve (230). A delivery box (240) is sealed to one side of the delivery box (240). An electric valve (250) is provided. One end of the delivery box (240) is sealed and connected to a pressing airbag (260). The other end of the delivery box (240) is fixedly connected to a protective box (100). One end of the protective box (100) is provided with a display (270). The top of the protective box (100) is provided with a display bar (280). One end of the inner wall of the pressing airbag (260) is provided with a pressure sensor. One side of the inner wall of the protective box (100) is provided with a microcontroller. The fixing component (300) includes binding straps (310) disposed on both sides of the protective box (100). One of the binding straps (310) is provided with a buckle (320) on one side, and the other binding strap (310) is provided with Velcro (330) at both ends. The top two sides of the protective box (100) are provided with reinforcing straps (340). The middle of the two reinforcing straps (340) is provided with a groove. The top of the two reinforcing straps (340) is provided with a connecting strap (350). The ends of the two connecting straps (350) are wrapped and connected to the groove. The middle of the two reinforcing straps (340) is provided with a fixing strap (360).

2. The compression hemostasis device for cardiology care according to claim 1, characterized in that: An isolation plate (400) is provided in the middle of the inner wall of the protective box (100), and two fixing strips are provided on one side of the isolation plate (400).

3. The compression hemostasis device for cardiology care according to claim 2, characterized in that: A protective box (500) is provided on one side of each of the two fixing strips, and a storage battery is installed inside the protective box (500).

4. The compression hemostasis device for cardiology care according to claim 2, characterized in that: Several ventilation slots are provided on one side of the bottom of the protective box (100).

5. The compression hemostasis device for cardiology care according to claim 1, characterized in that: The delivery box (240) is made of polyethylene.

6. The compression hemostasis device for cardiology care according to claim 1, characterized in that: The binding band (310) is made of linen.

7. The compression hemostasis device for cardiology care according to claim 1, characterized in that: The air pump (210), electric valve (250), display (270), pressure sensor and display bar (280) are all electrically connected to the microcontroller, which is electrically connected to the battery.

Citation Information

Patent Citations

  • Pressing hemostasis device for cardiology department nursing

    CN217186278U