Efficient medical guardrail guide wire and guide pipe arrangement rack
By designing an efficient medical guide tube organizer, the problem of tangled and dislodged guide tubes in critically ill patients has been solved. It enables the classification, fixation, and rapid positioning of guide tubes, thereby improving rescue efficiency and patient experience.
Patent Information
- Application Number
- CN202422507883.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-10-17
AI Technical Summary
In clinical practice, critically ill patients often have multiple wires and catheters that are easily tangled or dislodged, which affects the efficiency of rescue and the patient's experience.
Design an efficient medical guide tube organizer that uses clips, fixing straps, positioning components, and limiting mechanisms to classify, fix, and separate guide tubes, preventing them from falling out and making them easy to find in emergencies.
It improves the efficiency of catheter management, ensures rapid locating in emergencies, reduces delays in rescue, and enhances patient safety and comfort.
Smart Images

Figure CN223516570U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wire catheter arrangement technical field, especially a kind of high-efficiency medical guardrail wire catheter arrangement frame. BACKGROUND
[0002] Medical guardrail is usually arranged on the bed in hospital ward, and it plays a protective role for patients, which can avoid patients from falling off the bed and greatly improve the safety of patients.
[0003] In clinic, there are multiple wires and catheters on the body of critical patients, which are easy to be entangled and fall off, not only causing bad experience of patients, but also causing difficulty in finding wires and catheters in emergency, which is not conducive to rescue work. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of high-efficiency medical guardrail wire catheter arrangement frame to solve the problems raised in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of high-efficiency medical guardrail wire catheter arrangement frame, including medical guardrail;
[0006] Sleeve is clamped on the medical guardrail;
[0007] Support block is arranged on the sleeve;
[0008] Fixing belt is arranged on the support block, and it is used for fixing wire catheter;
[0009] Positioning hole is opened on the fixing belt;
[0010] Positioning member is clamped on the support block and positioning hole, and it is used for positioning the fixing belt;
[0011] Disassembling mechanism is arranged on the support block and the positioning member, and it is used for disassembling the positioning member;
[0012] Limiting mechanism is arranged at both ends of the medical guardrail, and it is used for limiting the sleeve.
[0013] Further, the disassembling mechanism includes micro socket installed on the support block, and the micro socket is provided with slot, the positioning member is provided with micro plug rod, the micro plug rod is inserted into the slot, the micro socket is slidably provided with clamping rod, the micro plug rod is provided with clamping slot, and the clamping rod is clamped in the clamping slot.
[0014] Further, one end of the clamping rod is provided with fixed spring, and the other end of the fixed spring is installed on the micro socket.
[0015] Further, the support block is internally provided with an insertion sleeve, a compression spring is mounted in the insertion sleeve, the other end of the compression spring is a free end, a round rod is mounted on the positioning member, and the round rod is inserted into the insertion sleeve.
[0016] Further, an extrusion ring is mounted on the round rod, the extrusion ring is matched with the insertion sleeve, and the extrusion ring abuts against the free end of the insertion sleeve.
[0017] Further, the limiting mechanism comprises connecting sleeves provided at two ends of the medical guardrail, internal thread grooves are formed in the connecting sleeves, mounting rods are mounted in the connecting sleeves, external thread protrusions are provided on the mounting rods, the external thread protrusions are matched with the internal thread grooves, and limiting blocks are mounted on the mounting rods.
[0018] Further, a collision prevention layer is mounted on the clamping sleeve, and the collision prevention layer is made of silica gel.
[0019] The utility model discloses the beneficial effect is:
[0020] In the utility model, through the setting of clamping sleeve, fixed band, positioning member, dismounting mechanism, the clamping sleeve is clamped on the medical guardrail, then the wire and catheter to be arranged are placed between the support block and the fixed band, the positioning member is inserted into the hole position of the corresponding positioning hole, the clamping rod is clamped into the clamping groove, the wire and catheter can be separated, the wire and catheter are prevented from falling off due to pulling, the wire and catheter are marked and arranged, the wire and catheter are easy to find in an emergency, the rescue opportunity is not delayed, and the working efficiency is greatly improved.
[0021] In the utility model, through the setting of limiting mechanism and collision prevention layer, through the action of internal thread groove and external thread protrusion, then the mounting rod is screwed into the connecting sleeve, at this time, the limiting block is limited to the two ends of the clamping sleeve, the movement of the clamping sleeve is prevented, the collision prevention layer can improve the anti-collision performance of the medical guardrail and the comfort of patient contact. ACCURACY
[0022] Figure 1 A three-dimensional structure schematic view of the efficient medical guardrail wire and catheter arrangement rack is provided for the utility model;
[0023] Figure 2 A fixed band and positioning member structure schematic view of the efficient medical guardrail wire and catheter arrangement rack is provided for the utility model;
[0024] Figure 3 A miniature socket and insertion sleeve structure schematic view of the efficient medical guardrail wire and catheter arrangement rack is provided for the utility model;
[0025] Figure 4This is a schematic diagram of the structure of the clamping rod, compression spring, etc., of a high-efficiency medical guide wire and conduit organizer proposed in this utility model;
[0026] Figure 5 This is a schematic diagram of the internal thread groove, limiting block, and other structures of a high-efficiency medical guardrail wire guide tube organizer proposed in this utility model.
[0027] In the diagram: 1. Medical guardrail; 2. Sleeve; 3. Support block; 4. Fixing strap; 5. Positioning hole; 6. Positioning component; 7. Assembly / disassembly mechanism; 71. Miniature socket; 72. Slot; 73. Miniature insert rod; 74. Locking rod; 75. Locking groove; 76. Fixing spring; 77. Sleeve; 78. Compression spring; 79. Round rod; 710. Extrusion ring; 8. Limiting mechanism; 81. Connecting sleeve; 82. Internal threaded groove; 83. Mounting rod; 84. External threaded protrusion; 85. Limiting block; 9. Anti-collision layer. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0029] Example:
[0030] like Figures 1-5 As shown, this embodiment provides a high-efficiency medical guide wire and catheter organizer, including a medical guide rail 1; a retaining sleeve 2, which is snapped onto the medical guide rail 1; a support block 3, which is disposed on the retaining sleeve 2; a fixing strap 4, which is disposed on the support block 3 for fixing the guide wire and catheter; a positioning hole 5, which is formed on the fixing strap 4; a positioning element 6, which is snapped onto the support block 3 and the positioning hole 5 for positioning the fixing strap 4; a disassembly and assembly mechanism 7, which is disposed on the support block 3 and the positioning element 6 for disassembly and assembly of the positioning element 6; and a limiting mechanism 8, which is disposed at both ends of the medical guide rail 1 for limiting the retaining sleeve 2.
[0031] The sleeve 2 is attached to the medical railing 1. The limiting mechanism 8 limits both ends of the sleeve 2, preventing it from moving on the railing 1. The sleeve 2 can be divided into upper, middle, and lower sections according to its length. The upper section can accommodate suction tubing, oxygen tubing, enteral nutrition tubing, and other tubing used for the face; the middle section can accommodate infusion tubing, ECG monitoring leads, and other tubing used for the mid-body; and the lower section can accommodate tubing for both lower limbs. The tubing and leads that need to be organized are then categorized according to their upper, middle, and lower sections. Other parts are placed between the support block 3 and the fixing strap 4, and the positioning part 6 is snapped into the corresponding positioning hole 5. The positioning part 6 is fixed on the support block 3 and the fixing strap 4 is positioned by the disassembly and assembly mechanism 7. The wire conduit can be fixed on the support block 3 by the fixing strap 4. On the one hand, the wire conduit can be separated, and on the other hand, the wire conduit can be prevented from being pulled off. The wire conduit is then marked and organized, making it easy to find the wires and conduits in an emergency, so as not to delay the rescue time and greatly improve work efficiency.
[0032] In one embodiment, the disassembly and assembly mechanism 7 specifically includes a miniature socket 71 mounted on the support block 3, a slot 72 provided on the miniature socket 71, a miniature rod 73 mounted on the positioning member 6, the miniature rod 73 being inserted into the slot 72, a locking rod 74 being slidably mounted inside the miniature socket 71, a locking groove 75 provided on the miniature rod 73, the locking rod 74 being locked into the locking groove 75, and one end of a fixing spring 76 being mounted on the locking rod 74, the other end of the fixing spring 76 being mounted on the miniature socket 71;
[0033] To fix the positioning element 6 and position the fixing strap 4, when the positioning element 6 is inserted into the corresponding positioning hole 5, the miniature insert 73 will also be inserted into the slot 72. At this time, the miniature insert 73 will squeeze the locking rod 74 to move out of the miniature socket 71, and the fixing spring 76 will also be compressed. When the locking rod 74 coincides with the slot 75, the locking rod 74 will be driven into the slot 75 under the action of the fixing spring 76, which can fix the positioning element 6. Thus, the fixing strap 4 is positioned by the positioning element 6. Pulling the locking rod 74 directly will make the locking rod 74 no longer locked in the slot 75, and the positioning element 6 will be pulled out upwards, which can release the separation and fixation of the catheter wire and does not affect the patient's activity needs.
[0034] In one embodiment, specifically, a sleeve 77 is provided inside the support block 3, a compression spring 78 is installed inside the sleeve 77, the other end of the compression spring 78 is a free end, a round rod 79 is installed on the positioning member 6, the round rod 79 is inserted into the sleeve 77, a compression ring 710 is installed on the round rod 79, the compression ring 710 is adapted to the sleeve 77, and the compression ring 710 abuts against the free end of the sleeve 77;
[0035] In order to facilitate the ejection of the positioning member 6, when the micro plug rod 73 is inserted into the insertion groove 72, the round rod 79 is also inserted into the insertion sleeve 77, at this time the compression ring 710 compresses the compression spring 78, when the clamping rod 74 is no longer clamped in the clamping groove 75, under the action of the compression spring 78, the positioning member 6 is driven to be ejected upward.
[0036] In one embodiment, specifically, the limiting mechanism 8 includes a connecting sleeve 81 arranged at both ends of the medical guardrail 1, an inner threaded groove 82 is arranged in the connecting sleeve 81, an installation rod 83 is installed in the connecting sleeve 81, an outer threaded protrusion 84 is arranged on the installation rod 83, the outer threaded protrusion 84 is matched with the inner threaded groove 82, and a limiting block 85 is installed on the installation rod 83.
[0037] In order to avoid the movement of the clamping sleeve 2 on the medical guardrail 1, the installation rod 83 can be screwed into the connecting sleeve 81 through the action of the inner threaded groove 82 and the outer threaded protrusion 84, at this time the limiting block 85 abuts against both ends of the clamping sleeve 2 to limit the movement of the clamping sleeve 2, thereby avoiding the movement and falling off of the clamping sleeve 2.
[0038] In one embodiment, specifically, the clamping sleeve 2 is provided with an anti-collision layer 9, and the anti-collision layer 9 is made of silica gel.
[0039] Through the arrangement of the anti-collision layer 9, the anti-collision performance of the medical guardrail 1 can be improved, and the comfort of the patient in contact can be improved.
[0040] Working principle: when in use, the sleeve 2 is clamped on the medical guardrail 1, and the mounting rod 83 is screwed into the connecting sleeve 81 through the action of the inner threaded groove 82 and the outer threaded protrusion 84, at this time the limiting block 85 is abutted against both ends of the sleeve 2 to limit the movement of the sleeve 2, avoiding the dislocation of the sleeve 2, the sleeve 2 can be divided into upper, middle and lower sections according to the length, the upper section can accommodate the face pipeline such as aspirator pipeline, oxygen inhalation pipeline and enteral nutrition pipeline, the middle section can accommodate the pipeline for the middle section of the body such as infusion pipeline and electrocardio monitoring lead, and the lower section can accommodate the pipeline for the lower limbs, then the wires and catheters to be arranged are placed between the supporting block 3 and the fixing belt 4 according to the upper, middle and lower sections, and the positioning member 6 is inserted into the corresponding positioning hole 5, at this time the micro plug rod 73 is also inserted into the insertion slot 72, the micro plug rod 73 extrudes the clamping rod 74 to move outwardly from the micro socket 71, and the fixing spring 76 is also compressed, when the clamping rod 74 coincides with the clamping groove 75, the clamping rod 74 is clamped into the clamping groove 75 under the action of the fixing spring 76, so as to fix the positioning member 6, so that the fixing belt 4 is positioned through the positioning member 6, and the wires and catheters are fixed on the supporting block 3 through the fixing belt 4, on the one hand, the wires and catheters are separated, and on the other hand, the wires and catheters are prevented from being pulled off, then the wires and catheters are marked and arranged, in an emergency, the wires and catheters are easy to find, the rescue opportunity is not delayed, and the work efficiency is greatly improved, when the patient has the activity demand, the clamping rod 74 is directly pulled, so that the clamping rod 74 is no longer clamped in the clamping groove 75, when the micro plug rod 73 is inserted into the insertion slot 72, the round rod 79 is also inserted into the insertion sleeve 77, at this time the extrusion ring 710 compresses the compression spring 78, when the clamping rod 74 is no longer clamped in the clamping groove 75, the positioning member 6 is popped up upwardly under the action of the compression spring 78, so that the separation and fixation of the catheters and wires are released, and the activity demand of the patient is not affected.
[0041] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. An efficient medical rail wire catheter arrangement frame, comprising, characterized in that: a medical rail (1); a clamping sleeve (2) clamped on the medical rail (1); a supporting block (3) arranged on the clamping sleeve (2); a fixing belt (4) arranged on the supporting block (3) for fixing the wire catheter; a positioning hole (5) formed on the fixing belt (4); a positioning piece (6) clamped on the supporting block (3) and the positioning hole (5) for positioning the fixing belt (4); a dismounting mechanism (7) arranged on the supporting block (3) and the positioning piece (6) for dismounting the positioning piece (6); and a limiting mechanism (8) arranged at both ends of the medical rail (1) for limiting the clamping sleeve (2). The dismounting mechanism (7) comprises a micro socket (71) mounted on the supporting block (3), a slot (72) formed on the micro socket (71), a micro plug (73) mounted on the positioning piece (6), the micro plug (73) being inserted into the slot (72), a clamping rod (74) slidingly mounted in the micro socket (71), and a clamping groove (75) formed on the micro plug (73), the clamping rod (74) being clamped in the clamping groove (75). One end of the clamping rod (74) is provided with a fixing spring (76), and the other end of the fixing spring (76) is mounted on the micro socket (71). The supporting block (3) is provided with a plug sleeve (77), the plug sleeve (77) is provided with a compression spring (78), the other end of the compression spring (78) is a free end, the positioning piece (6) is provided with a round rod (79), and the round rod (79) is inserted into the plug sleeve (77). The round rod (79) is provided with an extrusion ring (710), the extrusion ring (710) is matched with the plug sleeve (77), and the extrusion ring (710) abuts against the free end of the plug sleeve (77). The limiting mechanism (8) comprises a connecting sleeve (81) arranged at both ends of the medical rail (1), an internal thread groove (82) formed in the connecting sleeve (81), an installation rod (83) mounted in the connecting sleeve (81), an external thread protrusion (84) arranged on the installation rod (83), the external thread protrusion (84) being matched with the internal thread groove (82), and a limiting block (85) mounted on the installation rod (83). The clamping sleeve (2) is provided with an anti-collision layer (9) made of silica gel. 2. The high efficiency medical rail guide catheter organizer of claim 1, wherein: 3. The high efficiency medical rail guide catheter organizer of claim 2, wherein: 4. The high efficiency medical rail guide catheter organizer of claim 1, wherein: 5. The high efficiency medical rail guide catheter organizer of claim 4, wherein: 6. The high efficiency medical rail guide catheter organizer of claim 1, wherein: 7. The high efficiency medical rail guide catheter organizer of claim 1, wherein: