An open pneumothorax emergency nursing device
Through the design of sealing disc, booster assembly and puncture needle assembly, the problems of lax sealing and puncture risk of first aid devices are solved, and an open pneumothoracic first aid care device with stable air pressure and safe operation are achieved.
Patent Information
- Application Number
- CN202510014416.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2045-01-06
AI Technical Summary
Existing emergency care devices are prone to air leakage when sealing the wound, and there is a risk of puncture needle piercing other organs during puncture operations, especially when the emergency site environment is complex and the patient's position changes, the operating risk increases.
An open pneumothoracic emergency care device including a sealing disc, a booster assembly, a puncture needle assembly and a limiting assembly is adopted. The negative pressure state of the sealing disc remains in close contact with the skin, and the silicone sleeve of the puncture needle is automatically recycled to prevent damage, and the limiting assembly is simplified.
Effectively prevent air leakage, maintain stable air pressure in the chest cavity, reduce the risk of damage caused by puncture to other organs, and improve operational convenience and safety.
Smart Images

Figure CN119524238B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of medical devices, and in particular relates to an emergency nursing device for open pneumothorax. Background Art
[0002] Under normal circumstances, the pressure in the pleural cavity is lower than atmospheric pressure and is a negative pressure. When penetrating chest trauma causes chest damage, the pleural cavity is connected to the outside world. If the rupture is large or there is adhesion or traction between the two layers of pleura, the rupture remains open, and air can pass through the rupture and freely enter and exit the pleural cavity with breathing, causing the patient to have difficulty breathing, a weak pulse, or even shock. This is an open pneumothorax. When a patient develops an open pneumothorax, emergency rescue is required. For example, an open pneumothorax emergency care device is proposed in patent publication number CN213642465U.
[0003] When using existing emergency care devices, the patient's wound needs to be sealed to prevent further entry and exit of gas. However, in actual operation scenarios, such as complex emergency scene environments, frequent changes in patient position, and insufficient operational proficiency of medical staff, the device may not be able to fit tightly against the skin around the wound, resulting in air leakage, which affects the effective treatment of pneumothorax and prevents the pressure in the chest cavity from being maintained at an ideal stable state. In addition, when the patient is sent to the hospital for treatment, puncture and drainage are required for the pneumothorax patient, which can extract the gas accumulated in the chest cavity, thereby reducing the pressure in the chest cavity, alleviating the pressure on the lung tissue, and gradually allowing it to expand and restore a certain gas exchange function. However, when the medical staff performs the puncture, the patient's position suddenly changes, and the puncture needle is easily inserted too deep into the chest cavity. The tip of the puncture needle is easy to puncture other organs or blood vessels, increasing the risk of the puncture operation.
[0004] Therefore, an open pneumothorax emergency nursing device is proposed to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide an open pneumothorax emergency nursing device in view of the above problems.
[0006] To achieve the above-mentioned object, the present invention adopts the following technical solution: an open pneumothorax emergency care device, comprising a first strap and a second strap, wherein the first strap is wider than the second strap, and the first strap and the second strap are fixed by Velcro, and further comprising:
[0007] A sealing disk is provided between the first and second binding belts, wherein the first and second binding belts are fixedly connected with a same boosting assembly and communicated with the sealing disk;
[0008] A plurality of snap button posts are evenly distributed on the surface of the first strap, an operation port is provided on the surface of the first strap, and the plurality of snap button posts are evenly distributed on the upper and lower sides of the operation port. Two snap button cylinders are provided on the front side of the first strap, and the front ends of the snap button cylinders are fixedly connected to a positioning frame, an adjustment plate is inserted into the positioning frame, and the positioning frame fixes the adjustment plate by bolts. A same guide cylinder is fixedly connected between the two adjustment plates, and a puncture needle assembly is inserted into the guide cylinder;
[0009] The drainage mechanism is arranged in front of the first binding strap and the second binding strap. The drainage end of the drainage mechanism is connected to a drainage tube, and the upper end of the drainage tube is connected to the puncture needle assembly.
[0010] The cam is secured to the cam face with an angular channel formed between a first end of an angular channel and a second end of an arc channel, and the cam has a channel slot that receives the cam face, the channel being secured to the cam face with a channel slot that receives the cam face.
[0011] Preferably, the limiting assembly includes a limiting ring and two limiting plates, the limiting ring is fixedly connected to the upper side wall of the sealing cylinder, limiting grooves are provided on the left and right sides of the limiting ring, the two limiting plates are respectively inserted into the two limiting grooves, and the limiting plates are fixedly connected to the groove walls of the limiting grooves through springs, the side walls of the limiting plates are fixedly connected with latch teeth, and the rod wall fixing sleeve of the pull rod is provided with a plurality of tooth rings that match the latch teeth.
[0012] Preferably, the prompt assembly includes a prompt tube and a piston seat, the side wall of the sealing tube is connected to an air pressure tube, the end of the air pressure tube away from the prompt tube is fixedly connected to the prompt tube, the piston seat is slidably arranged in the prompt tube, and is connected to the prompt tube through a spring, an air pressure hole is provided on the side wall of the prompt tube away from the air pressure tube, the prompt tube is a transparent structure, and the upper side wall of the prompt tube is fixedly connected to a prompt plate.
[0013] Preferably, the puncture needle assembly includes a syringe and a sensing seat, the side wall of the syringe is provided with multiple vents, the syringe is inserted in the guide tube, the sensing seat and the syringe are fixedly connected through one end of the guide tube, the sensing seat is a hollow structure, the inner wall of the sensing seat is fixedly connected to the connecting frame by a spring, the right end of the connecting frame extends out of the sensing seat and is fixedly connected to the storage tube, the storage tube and the sensing seat are fixedly connected with the same telescopic cover, the side wall of the storage tube is fixedly connected to the piston column by a spring, the side wall of the piston column is fixedly connected to the puncture end, the storage tube is filled with high-pressure gas, the side wall of the storage tube away from the connecting frame is fixedly connected to a silicone sleeve, the puncture end extends out of the silicone sleeve in the initial state, the inner wall of the sensing seat is fixedly connected to a trigger switch, the side wall of the storage tube is provided with an exhaust hole, and a control valve is provided in the exhaust hole, the trigger switch and the control valve are connected, the side wall of the syringe is fixedly connected to a control button, and the control button is connected to the trigger switch and an external power supply.
[0014] Preferably, a pull ring is fixedly connected to the upper side wall of the pull plate, and a pressing handle is fixedly connected to the upper side wall of the sealing cylinder.
[0015] Preferably, a plurality of rubber rings are fixedly connected to the inner wall of the guide cylinder, and the needle cylinder passes through the plurality of rubber rings.
[0016] Preferably, a scale and an indicator light are provided on the surface of the syringe, and the trigger switch and the indicator light are electrically connected.
[0017] Compared with existing technologies, the advantages of an open pneumothorax emergency care device are:
[0018] 1. Through the provision of a sealing disc and a pressurizing component, after the wound of an open pneumothorax patient is sealed with the sealing disc, the sealing disc can be in a negative pressure state, thereby increasing the firmness of the contact between the adsorption sealing disc and the patient's skin. When the patient's body position changes, the sealing disc will also be firmly adsorbed on the skin, so that the air pressure in the patient's chest cavity is always kept in a stable state.
[0019] 2. With the provided puncture needle assembly, when medical staff perform thoracic puncture and drainage on the patient, after the tip of the puncture needle passes through the patient's skin and reaches the chest cavity, the tip of the puncture needle can be automatically retracted into the silicone sleeve at the end. Even if the patient's position changes during the puncture process, the soft silicone sleeve will not cause damage to other organs in the body, thereby reducing the risk of the puncture operation.
[0020] 3. By setting a limit assembly, after the inside of the sealing disk is lowered to the set negative pressure state, the sealing disk can always be kept in the negative pressure state, and does not require a large number of fixing parts for fixing, and can be operated with one hand, thereby improving the convenience of use for medical staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic structural diagram of an open pneumothorax emergency nursing device provided by the present invention;
[0022] Figure 2 This is a schematic diagram of the positional relationship between a guide tube and a syringe in an open pneumothorax emergency nursing device provided by the present invention;
[0023] Figure 3 This invention provides an open pneumothorax emergency nursing device Figure 2 A magnified schematic diagram of part A;
[0024] Figure 4 This is a schematic diagram of the internal structure of a storage cylinder in an open pneumothorax emergency care device provided by the present invention;
[0025] Figure 5 This is a schematic structural diagram of a pressurizing component in an open pneumothorax emergency care device provided by the present invention;
[0026] Figure 6 This invention provides an open pneumothorax emergency nursing device Figure 5 An enlarged schematic diagram of part B;
[0027] Figure 7 This is a schematic structural diagram of a limiting component in an open pneumothorax emergency care device provided by the present invention;
[0028] Figure 8 This is a structural schematic diagram of a prompt component in an open pneumothorax emergency care device provided by the present invention;
[0029] Figure 9 It is a right side view of a guide tube in an open pneumothorax emergency nursing device provided by the present invention.
[0030] In the figure: 1 first strap, 2 second strap, 3 sealing disc, 4 snap column, 5 operating port, 6 snap cylinder, 7 positioning frame, 8 adjustment plate, 9 guide cylinder, 10 drainage mechanism, 11 drainage tube, 12 booster assembly, 121 sealing cylinder, 122 piston block, 13 insert cylinder, 14 insert tube, 15 one-way valve, 16 suction chamber, 17 annular suction groove, 18 dustproof paper, 19 pull rod, 20 pull plate, 21 limit assembly, 211 limit ring, 212 limit plate, 22 limit groove, 23 24 tooth ring, 25 prompt assembly, 251 prompt cylinder, 252 piston seat, 26 air pressure tube, 27 prompt plate, 28 puncture needle assembly, 281 syringe, 282 sensor seat, 29 vent, 30 connecting frame, 31 storage cylinder, 32 telescopic cover, 33 piston column, 34 puncture end, 35 silicone sleeve, 36 trigger switch, 37 exhaust hole, 38 control valve, 39 control button, 40 pull ring, 41 press handle, 42 rubber ring, 43 scale, 44 indicator light. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0032] like Figures 1-9 As shown, an open pneumothorax emergency care device includes a first strap 1 and a second strap 2, wherein the width of the first strap 1 is greater than the width of the second strap 2, and the first strap 1 and the second strap 2 are fixed by Velcro, and further includes:
[0033] The sealing disk 3 is arranged between the first strap 1 and the second strap 2. The first strap 1 and the second strap 2 are fixedly connected with the same boosting assembly 12 and communicated with the sealing disk 3. The boosting assembly 12 includes a sealing cylinder 121 and a piston block 122. The sealing cylinder 121 is located between the first strap 1 and the second strap 2, and the first strap 1 and the second strap 2 are fixedly connected to the left and right sides of the sealing cylinder 121 at one end. The piston block 122 is slidably arranged in the sealing cylinder 121. The lower side wall of the sealing cylinder 121 is fixedly connected with an insert cylinder 13. A cannula 14 is inserted into the insert cylinder 13. A one-way valve 15 is provided in the cannula 14. An air suction chamber 16 is provided inside the sealing disk 3. The lower end of the cannula 14 is fixedly connected to the sealing disk 3 and communicates with the air suction chamber 16. The lower side wall of the sealing disk 3 is provided with an annular air suction groove 1 7. The suction chamber 16 is connected to the annular suction groove 17. The lower surface of the sealing disk 3 is sprayed with adhesive and adhered with dustproof paper 18. The upper side wall of the piston block 122 is fixedly connected with a pull rod 19. The upper side wall of the sealing cylinder 121 is provided with a vertical hole that matches the pull rod 19. The upper end of the pull rod 19 extends out of the vertical hole and is fixedly connected with a pull plate 20. The upper side wall of the sealing cylinder 121 fixes the position of the pull rod 19 through a limit assembly 21. The side wall of the sealing cylinder 121 is provided with a prompt assembly 25. After the wound of the open pneumothorax patient is sealed with the sealing disk 3, the sealing disk 3 can be in a negative pressure state, thereby increasing the firmness of the contact between the adsorption sealing disk 3 and the patient's skin. When the patient's body position changes, the sealing disk 3 will also be firmly adsorbed on the skin, so that the air pressure in the patient's chest cavity is always maintained in a stable state.
[0034] Multiple snap posts 4 are evenly distributed on the surface of the first strap 1. The surface of the first strap 1 is provided with an operating port 5. Multiple snap posts 4 are evenly distributed on the upper and lower sides of the operating port 5. Two snap cylinders 6 are provided on the front side of the first strap 1. The front end of the snap cylinder 6 is fixedly connected to a positioning frame 7. An adjustment plate 8 is inserted into the positioning frame 7. The positioning frame 7 fixes the adjustment plate 8 by bolts. The same guide cylinder 9 is fixedly connected between the two adjustment plates 8, and a puncture needle assembly 28 is inserted into the guide cylinder 9;
[0035] The drainage mechanism 10 is arranged in front of the first strap 1 and the second strap 2. The drainage end of the drainage mechanism 10 is connected with the drainage tube 11. The upper end of the drainage tube 11 is connected with the puncture needle assembly 28. The puncture needle assembly 28 includes a syringe 281 and a sensing seat 282. The side wall of the syringe 281 is provided with multiple vents 29. The syringe 281 is inserted into the guide tube 9. The sensing seat 282 and the syringe 281 are fixedly connected through one end of the guide tube 9. The sensing seat 282 is a hollow structure. The inner wall of the sensing seat 282 is fixedly connected to the connecting frame 30 by a spring. The right end of the connecting frame 30 extends out of the sensing seat 282 and is fixedly connected to the storage tube 31. The same telescopic cover 32 is fixedly connected between the storage tube 31 and the sensing seat 282. The side wall of the storage tube 31 is fixedly connected to the piston column 33 by a spring. The side wall of the piston column 33 is fixedly connected to the puncture end 34. 31 is filled with high-pressure gas, and the side wall of the storage tube 31 away from the connecting frame 30 is fixedly connected to a silicone sleeve 35. The puncture end 34 extends out of the silicone sleeve 35 in the initial state, and the inner wall of the sensing seat 282 is fixedly connected to a trigger switch 36. The side wall of the storage tube 31 is provided with an exhaust hole 37, and the exhaust hole 37 is provided with a control valve 38. The trigger switch 36 and the control valve 38 are connected. The side wall of the syringe 281 is fixedly connected with a control button 39, and the control button 39 connects the trigger switch 36 and the external power supply. When medical staff perform puncture drainage on the patient's chest cavity, after the tip of the puncture needle passes through the patient's skin and reaches the chest cavity, the tip of the puncture needle can be automatically recovered into the silicone sleeve 35 at the end. Even if the patient's body position changes during the puncture process, the soft silicone sleeve 35 will not cause damage to other organs in the body, thereby reducing the risk of the puncture operation.
[0036] The limiting assembly 21 includes a limiting ring 211 and two limiting plates 212. The limiting ring 211 is fixedly connected to the upper side wall of the sealing cylinder 121. Limiting grooves 22 are provided on the left and right sides of the limiting ring 211. The two limiting plates 212 are respectively inserted into the two limiting grooves 22, and the limiting plates 212 are fixedly connected to the groove walls of the limiting grooves 22 through springs. The side walls of the limiting plates 212 are fixedly connected with latches 23, and the rod wall fixing sleeve of the pull rod 19 is provided with a plurality of tooth rings 24 that match the latches 23. After the interior of the sealing disk 3 is lowered to the set negative pressure state, the sealing disk 3 can always be maintained in the negative pressure state, and does not require a large number of fixing parts for fixation, and can be operated with one hand, thereby improving the convenience of use for medical staff.
[0037] The prompt assembly 25 includes a prompt tube 251 and a piston seat 252. The side wall of the sealing tube 121 is connected to the air pressure tube 26. The end of the air pressure tube 26 away from the prompt tube 251 is fixedly connected to the prompt tube 251. The piston seat 252 is slidably set in the prompt tube 251 and is connected to the prompt tube 251 through a spring. An air pressure hole is provided on the side wall of the prompt tube 251 away from the air pressure tube 26. The prompt tube 251 is a transparent structure. The upper side wall of the prompt tube 251 is fixedly connected to a prompt plate 27, which can assist the operator in judging the adsorption force between the sealing disk 3 and the patient's skin.
[0038] A pull ring 40 is fixedly connected to the upper side wall of the pull plate 20 , and a pressing handle 41 is fixedly connected to the upper side wall of the sealing cylinder 121 , so that medical staff can pull the pull plate 20 with one hand.
[0039] A plurality of rubber rings 42 are fixedly connected to the inner wall of the guide tube 9 , and the syringe 281 passes through the plurality of rubber rings 42 , which can improve the sliding stability of the syringe 281 .
[0040] A scale 43 and an indicator light 44 are provided on the surface of the syringe 281 . The trigger switch 36 and the indicator light 44 are electrically connected to remind medical staff of the insertion depth of the syringe 281 .
[0041] The operating principle of the present invention is now described as follows: a sterile dressing (such as vaseline gauze, sterile gauze, etc.) or a clean cloth is covered on the surface of the chest wall wound and the wound is sealed as tightly as possible. Then the operator tears off the dustproof paper 18 and covers the sealing disk 3 on top of the cloth. The sealing disk 3 is made of silicone material and can fit the human skin. The lower surface of the sealing disk 3 has adhesive (the adhesive is medical adhesive, harmless and easy to clean), which can fit the surface of the human skin. Then the operator presses the base of one hand on the pressing handle 41, passes the finger through the pull ring 40, and Pull the pull ring 40, the pull ring 40 will drive the pull plate 20 to move, and the pull plate 20 will drive the piston block 122 to move upward through the pull rod 19, thereby reducing the air pressure in the space below the piston block 122, making the space below the piston block 122 in a negative pressure state, and the suction chamber 16 is connected to the sealing cylinder 121 through the cannula 14 and the insert cylinder 13, and the air pressure inside the suction chamber 16 and the annular suction groove 17 will also decrease, so that the sealing disk 3 and the patient's skin can be tightly adsorbed together, and the prompt cylinder 251 is connected to the sealing cylinder 121 through the air pressure tube 26. When the piston block 122 is in the sealing cylinder 121, the air pressure in the suction chamber 16 and the annular suction groove 17 will decrease. When the air pressure in the space below 22 decreases, the air pressure in the prompt cylinder 251 will also decrease, and the external air will enter the prompt cylinder 251 through the air pressure hole on the right side of the prompt cylinder 251, causing the piston seat 252 in the prompt cylinder 251 to move to the left under the action of the air pressure. The prompt cylinder 251 is a transparent structure. When the operator finds that the piston seat 252 moves to the prompt plate 27 during operation, the pull ring 40 can be released. As the pull ring 40 drives the pull plate 20 and the pull rod 19 to move upward, the tooth ring 24 and the latch 23 can cooperate with each other to move the pull rod 19 and the movable The position of the plug 122 is fixed, thereby ensuring the negative pressure state inside the sealing cylinder 121 and increasing the firmness of the contact between the adsorption sealing disk 3 and the patient's skin (the adsorption sealing disk 3 can be removed by manually lifting one side of the adsorption sealing disk 3 later). After fixing the patient's skin and the sealing disk 3, the operator wraps the first strap 1 and the second strap 2 around the patient's body and fixes the position of the sealing cylinder 121 with Velcro. When the patient's body position changes, the sealing disk 3 will also be firmly adsorbed on the skin, so that the air pressure in the patient's chest cavity is always kept in a stable state.
[0042] Then the operator needs to exhaust and decompress the patient's chest cavity, and adjust the position of the guide cylinder 9 according to the position where the puncture needle needs to be punctured. After adjusting the position of the guide cylinder 9, the operator fixes the adjustment plate 8 and the guide cylinder 9 by rotating the bolts on the surface of the positioning frame 7. Then the operator holds the syringe 281 by hand through the guide cylinder 9 and inserts the puncture end 34 at the end of the syringe 281 into the patient's skin (the puncture position is the second intercostal space of the mid-clavicular line on the injured side). When the puncture end 34 just contacts the patient's skin, the squeezing force between the puncture end 34 and the skin will squeeze the puncture end 34, and the puncture end 34 and the storage cylinder The space between the puncture end 34 and the receiving tube 31 is filled with gas, and the puncture end 34 will drive the receiving tube 31 to move by compressing the internal air pressure, and the receiving tube 31 will drive the connecting frame 30 to slide in the sensing seat 282 until the connecting frame 30 is squeezed to the inner wall of the sensing seat 282. The sensing seat 282 will apply a hard thrust to the receiving tube 31 and the puncture end 34, so that the puncture end 34 passes through the patient's skin. When the operator finds that the puncture end 34 has passed through the patient's skin, he needs to press the control button 39 by hand. The control button 39 will transmit external current to the moving contact inside the trigger switch 36. When the puncture end 34 and the receiving tube 31 pass through the skin and reach the patient, the patient will be in pain. After the chest cavity is opened, the storage tube 31 will not be blocked by the muscles. Under the elastic force of the spring, the sensing seat 282 will drive the connecting frame 30 to move the storage tube 31 for a distance. The connecting frame 30 will squeeze the moving contact of the trigger switch 36, so that the moving contact and the static contact of the trigger switch 36 will contact, thereby opening the control valve 38, so that the compressed gas inside the storage tube 31 will be discharged through the exhaust hole 37. The piston column 33 will drive the puncture end 34 to retract into the storage tube 31 under the tension of the spring, and the silicone sleeve 35 will be at the front end of the storage tube 31. Even if the patient's body position changes during the puncture process, the soft silicone sleeve 35 will not It will not cause damage to other organs in the body, thereby reducing the risk of puncture operation. The trigger switch 36 will also control the indicator light 44 to light up, reminding the operator that the storage tube 31 is already in the chest cavity. The operator only needs to continue pushing forward a certain distance (for example, the distance between the storage tube 31 and the vent 29 is 1 cm. The operator only needs to continue pushing 1 cm according to the scale 43 to make the vent 29 located in the chest cavity). Then the operator controls the drainage mechanism 10 to work, and the drainage mechanism 10 discharges the gas inside the chest cavity through the drainage tube 11, the syringe 281 and the vent 29 to achieve the purpose of exhaust and decompression.
[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An open pneumothorax emergency nursing device, comprising a first strap (1) and a second strap (2), wherein the width of the first strap (1) is greater than the width of the second strap (2), and the first strap (1) and the second strap (2) are fixed by Velcro, characterized in that: Also includes: A sealing disk (3) is arranged between the first binding belt (1) and the second binding belt (2), wherein the first binding belt (1) and the second binding belt (2) are fixedly connected to each other and communicate with the same boosting component (12) and the sealing disk (3); A plurality of snap button columns (4) are evenly distributed on the surface of the first strap (1); an operating port (5) is provided on the surface of the first strap (1); the plurality of snap button columns (4) are evenly distributed on the upper and lower sides of the operating port (5); two snap button cylinders (6) are provided on the front side of the first strap (1); a positioning frame (7) is fixedly connected to the front end of the snap button cylinder (6); an adjustment plate (8) is inserted into the positioning frame (7); the positioning frame (7) fixes the adjustment plate (8) by bolts; a guide cylinder (9) is fixedly connected between the two adjustment plates (8); and a puncture needle assembly (28) is inserted into the guide cylinder (9); A drainage mechanism (10) is arranged in front of the first strap (1) and the second strap (2), the drainage end of the drainage mechanism (10) is connected to a drainage tube (11), the upper end of the drainage tube (11) is connected to a puncture needle assembly (28), the puncture needle assembly (28) includes a syringe (281) and a sensing seat (282), the side wall of the syringe (281) is provided with a plurality of vents (29), the syringe (281) is inserted into the guide tube (9), the sensing seat (282) and the syringe (281) are fixedly connected through one end of the guide tube (9), the sensing seat (282) is a hollow structure, the inner wall of the sensing seat (282) is fixedly connected to a connecting frame (30) by a spring, the right end of the connecting frame (30) extends out of the sensing seat (282) and is fixedly connected to a storage cylinder (31), the storage cylinder (31) and the sensing seat (282) ) are fixedly connected with a same telescopic cover (32), the side wall of the storage cylinder (31) is fixedly connected with a piston column (33) through a spring, the side wall of the piston column (33) is fixedly connected with the puncture end (34), the storage cylinder (31) is filled with high-pressure gas, the side wall of the storage cylinder (31) away from the connecting frame (30) is fixedly connected with a silicone sleeve (35), the puncture end (34) extends out of the silicone sleeve (35) in the initial state, the inner wall of the sensing seat (282) is fixedly connected with a trigger switch (36), the side wall of the storage cylinder (31) is provided with an exhaust hole (37), and the exhaust hole (37) is provided with a control valve (38), the trigger switch (36) and the control valve (38) are connected, the side wall of the syringe (281) is fixedly connected with a control button (39), and the control button (39) is connected with the trigger switch (36) and the external power supply.
2. The open pneumothorax emergency nursing device according to claim 1, characterized in that: The booster assembly (12) includes a sealing cylinder (121) and a piston block (122), wherein the sealing cylinder (121) is located between the first strap (1) and the second strap (2), and the first strap (1) and the second strap (2) have opposite ends fixedly connected to the left and right sides of the sealing cylinder (121), and the piston block (122) is slidably arranged in the sealing cylinder (121), and the lower side wall of the sealing cylinder (121) is fixedly connected to an insert cylinder (13), and a cannula (14) is inserted into the insert cylinder (13), and a one-way valve (15) is provided in the cannula (14), and an air suction cavity (16) is provided inside the sealing disk (3), and the lower end of the cannula (14) is fixedly connected to the sealing disk (3) and is in contact with the suction cavity (16). The air cavities (16) are interconnected, and an annular suction groove (17) is provided on the lower side wall of the sealing disk (3). The suction cavity (16) and the annular suction groove (17) are connected. The lower surface of the sealing disk (3) is sprayed with glue and adhered with dustproof paper (18). The upper side wall of the piston block (122) is fixedly connected with a pull rod (19). The upper side wall of the sealing cylinder (121) is provided with a vertical hole that matches the pull rod (19). The upper end of the pull rod (19) extends out of the vertical hole and is fixedly connected with a pull plate (20). The upper side wall of the sealing cylinder (121) fixes the position of the pull rod (19) through a limit assembly (21), and the side wall of the sealing cylinder (121) is provided with a prompt assembly (25).
3. The open pneumothorax emergency nursing device according to claim 2, characterized in that: The limiting assembly (21) includes a limiting ring (211) and two limiting plates (212), wherein the limiting ring (211) is fixedly connected to the upper side wall of the sealing cylinder (121), and limiting grooves (22) are provided on both the left and right sides of the limiting ring (211), and the two limiting plates (212) are respectively inserted into the two limiting grooves (22), and the limiting plates (212) are fixedly connected to the groove walls of the limiting grooves (22) through springs, and the side walls of the limiting plates (212) are fixedly connected with latch teeth (23), and the rod wall fixed sleeve of the pull rod (19) is provided with a plurality of tooth rings (24) that match the latch teeth (23).
4. The open pneumothorax emergency nursing device according to claim 2, characterized in that: The prompt assembly (25) includes a prompt tube (251) and a piston seat (252). The side wall of the sealing tube (121) is connected to an air pressure tube (26). One end of the air pressure tube (26) away from the prompt tube (251) is fixedly connected to the prompt tube (251). The piston seat (252) is slidably arranged in the prompt tube (251) and is connected to the prompt tube (251) through a spring. An air pressure hole is opened on the side wall of the prompt tube (251) away from the air pressure tube (26). The prompt tube (251) is a transparent structure. The upper side wall of the prompt tube (251) is fixedly connected to a prompt plate (27).
5. The open pneumothorax emergency nursing device according to claim 3, characterized in that: A pull ring (40) is fixedly connected to the upper side wall of the pull plate (20), and a pressing handle (41) is fixedly connected to the upper side wall of the sealing cylinder (121).
6. The open pneumothorax emergency care device according to claim 1, characterized in that: The inner wall of the guide cylinder (9) is fixedly connected to a plurality of rubber rings (42), and the needle cylinder (281) passes through the plurality of rubber rings (42).
7. The open pneumothorax emergency care device according to claim 1, characterized in that: A scale (43) and an indicator light (44) are provided on the surface of the syringe (281), and the trigger switch (36) and the indicator light (44) are electrically connected.
Citation Information
Patent Citations
Open pneumothorax emergency care device
CN213642465U
Modular gas-actuated retractable needle assembly
CN103648559A
Pneumothorax rescue aid for trauma first aid
CN213284764U