Electrocardiogram monitor line storage and disinfection device

Through the design of the enclosure and the synergistic effect of the components, the problems of cumbersome operation and stability of the ECG monitor wiring storage device have been solved, achieving stable and orderly storage of the lead wires and flexible adaptability, thus meeting the needs of medical staff.

CN224184732UActive Publication Date: 2026-05-01FIRST HOSPITAL AFFILIATED TO GENERAL HOSPITAL OF PLA
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FIRST HOSPITAL AFFILIATED TO GENERAL HOSPITAL OF PLA
Filing Date
2025-06-03
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing ECG monitor wiring storage devices are cumbersome to operate, have poor stability, and are difficult to adapt to the storage needs of various types of leads, thus affecting the work efficiency of medical staff.

Method used

The cabinet design includes several drawers arranged in a linear array, with winding, guiding, and housing components. The drawers allow for the categorized storage of the conductors, and the winding and guiding components ensure stable winding of the cables and stable placement of the electrode contacts.

Benefits of technology

It enables stable and orderly storage of lead wires, reduces the workload of medical staff, improves the flexibility and adaptability of wire storage, meets the needs of different types of lead wires, and is simple and convenient to operate.

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Abstract

An electrocardiograph monitor line storage and disinfection device comprises a box body, the front side and the rear side of the box body are each provided with a plurality of drawer bases which are arranged in a linear array in a staggered mode, a storage area is formed on one side of each drawer base, and a containing area with an opening is formed on the other side of each drawer base. A connection area for communicating the storage area with the placement area is formed in the middle of the drawer seat; lead wires are stored through a plurality of drawer bases, storage and taking are carried out in a drawer mode, use is more convenient and easier, classified storage can be effectively carried out, and the use requirements of medical workers are better met; according to the lead wire storage device, the metal connector part and the cable main body can be rapidly and effectively wound and stored in the winding and unwinding area, the electrode contact part can be stably placed in the placement area, it is guaranteed that the two ends and the wire body of the lead wire can be stably and independently stored, storage and taking are more concise and clear, and medical staff can store and take the lead wire more conveniently.
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Description

Technical Field

[0001] This utility model relates to the technical field of lead wire storage equipment, and in particular to a device for storing and disinfecting the leads of an electrocardiogram monitor. Background Technology

[0002] Electrocardiogram (ECG) monitors are widely used medical instruments in clinical medical units. They can continuously measure physiological parameters such as heart rate, blood pressure, respiration, and blood oxygen saturation, and are an important monitoring tool for medical staff to diagnose and care for patients.

[0003] Currently, most clinical electrocardiogram (ECG) monitors are equipped with wired accessories. The more functions they have, the more numerous and varied their signal transmission cables become. After use, these cables need to be coiled into a circle for storage. However, when used again, the cables become tangled, causing them to become knotted and resulting in pulling and tangling.

[0004] In existing technologies, for example, Chinese patent CN221216689U discloses a disinfection and storage box for electrocardiogram (ECG) monitoring lines, which includes a protective shell. The inside of the protective shell is lined with a disinfecting sponge, and one side of the disinfecting sponge has multiple grooves for placing the ECG lines. When storing the lines, each line needs to be placed one-to-one inside the grooves before the protective shell is closed.

[0005] However, the above technical solution still has at least the following drawbacks: the wiring needs to be installed one by one in each slot, the wiring is unstable and easily falls off, so it needs to be reinstalled and stored from the beginning. The storage process is relatively cumbersome, which increases the workload of medical staff and affects work efficiency. The storage stability is poor and it is difficult to apply to the storage of various types of lead wires, which makes it difficult to effectively meet the needs of medical staff. Utility Model Content

[0006] In view of the above situation and to overcome the defects of the prior art, the present invention provides a device for storing and disinfecting the circuit of an electrocardiogram monitor, including a box. Several drawer seats are arranged in a linear array on both the front and rear sides of the box. One side of the drawer seat forms a storage area, the other side of the drawer seat forms a placement area with an opening, and the middle of the drawer seat forms a connecting area for connecting the storage area and the placement area.

[0007] The take-up and undo area is provided with a winding and storage assembly, which is used for the metal connector of the lead wire to be detachably installed and for the cable body to be taken up and undoed. The connection area is provided with a guide assembly, which is used to restrict the movement of the cable body between the placement area and the take-up and undo area. The placement area is provided with a receiving assembly, which is used for the electrode contact portion of the lead wire to be detachably installed.

[0008] More preferably, the storage assembly includes a chassis fixedly installed on the bottom wall of the drawer seat, a scroll rod rotatably mounted on the chassis, a turntable fixedly mounted on the top of the scroll rod, a handle fixedly mounted on the upper surface of the turntable, and a metal connector detachably mounted on the scroll rod.

[0009] More preferably, a wire groove runs through the middle of the roll column, and one end of the cable body near the metal connector can be engaged in the wire groove, with a clearance slot formed at one end of the wire groove for accommodating the metal connector.

[0010] More preferably, the receiving component includes a fixing seat formed in the bottom wall of the drawer seat, the fixing seat having a positioning groove adapted to the electrode contact portion, and a guide opening corresponding to the scroll column being formed on one side of the positioning groove.

[0011] More preferably, the guide assembly includes a guide seat fixedly installed on the bottom wall of the drawer seat, and two symmetrically arranged guide wheels are rotatably mounted on the upper surface of the guide seat. A channel corresponding to the scroll is formed between the two guide wheels, and the cable body can be inserted into the channel and pass through the channel.

[0012] More preferably, guide plates are installed on both sides of the guide seat, and a first groove corresponding to the channel is opened on both guide plates. The cable body can pass through the first groove, and a first disinfection component for wiping the cable body is installed in the first groove.

[0013] More preferably, a protective cover is hinged to one side of the drawer seat, and the protective cover is detachably mounted on the guide seat.

[0014] More preferably, the protective cover has a second groove on both sides corresponding to the first groove, the cable body can pass through the second groove, and a second disinfection component for wiping the cable body is installed in the second groove.

[0015] More preferably, a plurality of support rods corresponding to the drawer base are fixedly installed on both sides of the box body, and the plurality of support rods are arranged in a linear array on the surface of both sides of the box body.

[0016] More preferably, the upper part of the box is provided with a first storage drawer, and the lower part of the box is provided with a second storage drawer.

[0017] Compared with existing technologies, this utility model has a clever structure and is easy to operate. It uses several drawer-style storage units to hold the lead wires, making access more convenient and simple. It also allows for effective categorization and storage, better meeting the needs of medical personnel. Through the cooperation of the winding, guiding, and receiving components, it can quickly and effectively wind and store the metal connector and cable body in the storage area, and stably place the electrode contacts in the placement area. This ensures that both ends of the lead wire and its body are stored stably and independently, making access simpler and clearer, and easier for medical personnel to access and use. The storage of the wires is more stable and accurate, ensuring orderly storage and better preservation. It is not only simple and convenient to operate, effectively reducing the workload of medical personnel, but also effectively meets the storage needs of different types of lead wires, better adapting to the flexible use of ECG monitors, greatly improving the flexibility and adaptability of wire storage, and effectively meeting the needs of medical personnel. Attached Figure Description

[0018] Figure 1 This is a frontal axonometric structural schematic diagram of this utility model.

[0019] Figure 2 This is a schematic diagram of the rear view structure of this utility model.

[0020] Figure 3 This is a front view structural diagram of the drawer seat of this utility model.

[0021] Figure 4 This is a rear view schematic diagram of the drawer seat structure of this utility model.

[0022] Figure 5 This is a front sectional view of the drawer seat structure of this utility model.

[0023] Figure 6 This is a cross-sectional structural diagram of the guide seat of this utility model.

[0024] Figure 7 This is a cross-sectional structural diagram of the roller, guide wheel, and fixing seat of this utility model.

[0025] Figure 8 This is a schematic diagram of the housing of this utility model used in conjunction with an electrocardiogram monitor.

[0026] Explanation of the labels in the diagram:

[0027] 1. Cabinet; 2. Drawer base; 3. Storage area; 4. Placement area; 5. Connecting area; 6. Base; 7. Roller column; 8. Turntable; 9. Handle; 10. Cable tray; 11. Clearance slot; 12. Fixing base; 13. Positioning slot; 14. Guide opening; 15. Guide seat; 16. Guide wheel; 17. Channel; 18. Guide plate; 19. First groove; 20. First disinfection component; 21. Protective cover; 22. Second groove; 23. Second disinfection component; 24. Support rod; 25. First storage drawer; 26. Second storage drawer. Detailed Implementation

[0028] The wiring of an electrocardiogram (ECG) monitor, also known as the clinically used lead wires, typically has 12 leads. The standard leads include three: Lead I places the electrodes on the right and left arms; Lead II places the electrodes on the right arm and left leg; and Lead III places the electrodes on the left arm and left leg. In addition, there are different types such as ground leads, pressurized unipolar left / right upper limb leads, and unipolar chest leads. Ground leads stabilize the ECG by connecting the right leg to the ECG machine's ground wire. Pressurized unipolar limb leads are further categorized into aVR, aVL, and aVF based on the electrode placement. Unipolar chest leads place the electrodes on the chest wall in front of the heart to record the ECG. As ECG monitors become more feature-rich, the number and types of signal transmission cables also increase. Furthermore, in practical use, the wiring includes, but is not limited to, lead wires, power cords, and other commonly used wiring, which can be stored away when necessary. Furthermore, commonly used lead wires typically consist of an electrode contact part (which directly contacts the skin), a cable body (non-contact area), and a metal connector part (signal transmission part). In this utility model, the lead wire is mainly referred to by the above three parts.

[0029] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings.

[0030] Depend on Figures 1 to 8 The present invention relates to a device for storing and disinfecting the circuit of an electrocardiogram monitor, comprising a box 1, and several drawer seats 2 arranged in a linear array on both the front and rear sides of the box 1. A storage area 3 is formed on one side of the drawer seat 2, and an open placement area 4 is formed on the other side of the drawer seat 2. A connecting area 5 for connecting the storage area 3 and the placement area 4 is formed in the middle of the drawer seat 2.

[0031] The take-up and undo area 3 is provided with a winding and storage assembly, which is used for the metal connector of the lead wire to be detachably installed, and the cable body for taking up and undoing the lead wire. The connection area 5 is provided with a guide assembly, which is used to restrict the movement of the cable body between the placement area 4 and the take-up and undo area 3. The placement area 4 is provided with a receiving assembly, which is used for the electrode contact part of the lead wire to be detachably installed.

[0032] In these embodiments, the drawer seat 2 is slidably installed in the drawer slot on the housing 1. The drawer seat 2 can be quickly opened and closed by pushing and pulling the handle on it. The drawer seats 2 are located on the front and rear sides of the housing 1, increasing the number of lead wires that can be stored, and can also store other lines when necessary. By using several drawer seats 2 to store lead wires in a drawer-like manner, it is more convenient and simple to use, and can also effectively classify and store them, better meeting the needs of medical staff.

[0033] By coordinating the storage area 3, placement area 4, and connection area 5, the space of drawer base 2 is accurately and effectively divided, making it easier to store and remove the lead wire. Through the cooperation of the winding and storage components on storage area 3 and the receiving components on placement area 4, not only can the metal connector and the main body of the cable be quickly and effectively wound and stored in storage area 3, but the electrode contact part can also be stably placed in placement area 4, ensuring that both ends of the lead wire and its body can be stably and independently stored. Storage and retrieval are simpler and clearer, making it easier for medical staff to access and use. Furthermore, the guide components in connection area 5 can quickly store and remove the main body of the cable, making it more convenient to use.

[0034] With the cooperation of the winding, guiding, and receiving components, the cable storage is more stable and accurate, ensuring that the cables can be stored in an orderly manner and with better preservation. It is not only simple and convenient to operate, effectively reducing the workload of medical staff, but also effectively meets the storage needs of different types of leads, better adapts to the flexible use of ECG monitors, greatly improves the flexibility and adaptability of cable storage, effectively meets the needs of medical staff, and is more practical.

[0035] In one embodiment of a device for storing and disinfecting the circuit of an electrocardiogram monitor, the storage assembly includes a chassis 6 fixedly installed on the bottom wall of the drawer seat 2, a scroll 7 rotatably mounted on the chassis 6, a turntable 8 fixedly mounted on the top of the scroll 7, a handle 9 fixedly mounted on the upper surface of the turntable 8, and a metal connector detachably mounted on the scroll 7.

[0036] In these embodiments, the chassis 6, the winding post 7, and the turntable 8 work together to form a winding wheel for winding the cable body. The handle 9 drives the winding post 7 to rotate, and after the metal connector is clamped onto the winding post 7, the winding post 7 is rotated to wind and store the cable body. The operation is simple and efficient, and the cable body is released more quickly and efficiently, making storage and retrieval more convenient. It can also be applied to different types of conductors.

[0037] In some embodiments of an electrocardiogram monitor wiring storage and disinfection device, a wire groove 10 runs through the middle of the scroll 7, and the end of the cable body near the metal connector can be snapped into the wire groove 10. One end of the wire groove 10 has a clearance slot 11 for accommodating the metal connector.

[0038] In these embodiments, the metal connector can be securely secured in the relief slot 11 by the cooperation of the wire groove 10 and the relief slot 11 (the diameter of the metal connector is larger than the diameter of the cable body), while part of the cable body is secured in the wire groove 10. Then, the winding column 7 is rotated to drive the cable body to wind up step by step. When releasing, the winding column 7 is rotated in the opposite direction. The storage stability is higher, and the cable body is effectively prevented from tangling and pulling.

[0039] In some embodiments of an electrocardiogram monitor circuit storage and disinfection device, the housing component includes a fixing seat 12 formed in the inner bottom wall of the drawer seat 2. The fixing seat 12 has a positioning groove 13 adapted to the electrode contact portion, and a guide opening 14 corresponding to the scroll 7 is formed on one side of the positioning groove 13.

[0040] In these embodiments, the electrode contact portion is placed independently by the fixing base 12, which can ensure storage safety and facilitate access. The positioning groove 13 can securely place the electrode contact portion, and the guide port 14 ensures that the cable body can pass through stably, making storage and access more reliable and stable.

[0041] It should be understood that the electrode contacts in the lead wires are sometimes in the form of electrode sheets and sometimes in the form of straps. Therefore, the specific shape of the positioning groove 13 is adapted to the electrode contacts to better meet the needs of different types of lead wires. Of course, in ordinary environments, it can also be a universal groove to meet the placement of various electrode contacts.

[0042] In some embodiments of an electrocardiogram monitor wiring storage and disinfection device, the guide component includes a guide seat 15 fixedly installed on the bottom wall of the drawer seat 2. Two symmetrically arranged guide wheels 16 are rotatably installed on the upper surface of the guide seat 15. A channel 17 corresponding to the winding post 7 is formed between the two guide wheels 16. The cable body can be inserted into the channel 17 and can pass through the channel 17.

[0043] In these embodiments, the guide wheels 16 are arranged in parallel and symmetrical order, allowing the cable body to be inserted into the channel 17 from above and to pass through the channel 17, thus ensuring that the cable body moves stably under the action of the two guide wheels 16. In addition, the channel 17 and the winding post 7 are arranged in a corresponding manner to ensure the smooth winding and release of the cable body, which is beneficial to improving the stability of use.

[0044] In some embodiments of an electrocardiogram monitor wiring storage and disinfection device, guide plates 18 are installed on both sides of the guide seat 15. Each guide plate 18 has a first groove 19 corresponding to the channel 17. The cable body can pass through the first groove 19. A first disinfection component 20 for wiping the cable body is installed in the first groove 19.

[0045] In some embodiments of a cardiac monitor circuit storage and disinfection device, a protective cover 21 is hinged to one side of the drawer seat 2, and the protective cover 21 is detachably mounted on the guide seat 15.

[0046] In some embodiments of an electrocardiogram monitor cable storage and disinfection device, the protective cover 21 has a second groove 22 on both sides corresponding to the first groove 19, the cable body can pass through the second groove 22, and a second disinfection component 23 for wiping the cable body is installed in the second groove 22.

[0047] In these embodiments, both the first disinfection element 20 and the second disinfection element 23 can be disinfectant cotton, which is detachably mounted on the first groove 19 and the second groove 22 and can be flexibly replaced according to usage requirements. The first groove 19 is a U-shaped groove, and the second groove 22 is an inverted U-shaped groove. Through the cooperation of the first groove 19 and the second groove 22, a groove is formed to cover the surface of the cable body. Then, in conjunction with the first disinfection element 20 and the second disinfection element 23, the surface of the cable body is wiped as it passes through, thereby achieving disinfection of the cable body. Since the cable body at both ends of the lead wire does not pass through the groove, it needs to be manually disinfected by medical personnel. Even so, it further reduces the amount of disinfection work and can be used in conjunction with the retraction and unfolding of the cable body. Furthermore, by setting the protective cover 21, the protective cover 21 is installed on the guide seat 15 to complete the cooperation of the first groove 19 and the second groove 22. At the same time, it can also seal the cable body to prevent the cable body from falling out during the winding and unwinding process. Specifically, when storing, insert the cable body between the two guide wheels 16 and then cover it with the protective cover 21. When taking it out, open the protective cover 21 after the cable body is completely released from the reel 7, and then take out the cable body. The operation is simpler and more flexible.

[0048] In some embodiments of a device for storing and disinfecting the circuits of an electrocardiogram monitor, several support rods 24 corresponding to drawer seats 2 are fixedly installed on both sides of the box 1, and the support rods 24 are arranged in a linear array on the surface of both sides of the box 1.

[0049] In these embodiments, the support rod 24 allows for the temporary wrapping of excessively long leads around the support rod 24 when using leads, preventing inconvenience to medical staff and patients caused by excessively long leads. It also effectively organizes the leads, making them easier to use later.

[0050] In some embodiments of a device for storing and disinfecting the circuits of an electrocardiogram monitor, a first storage drawer 25 is provided on the upper part of the box 1, and a second storage drawer 26 is provided on the lower part of the box 1.

[0051] In these embodiments, the cooperation of the first storage drawer 25 and the second storage drawer 26 allows for flexible storage of disinfection items according to usage needs, facilitating the disinfection of both ends of the lead wire. At the same time, the first disinfection component 20 and the second disinfection component 23 can be flexibly replaced to better meet the usage needs of medical personnel.

[0052] In some embodiments of a device for storing and disinfecting the circuitry of an electrocardiogram (ECG) monitor, the housing 1 is fixedly installed on the ECG monitor body.

[0053] In these implementations, such as Figure 8 As shown, the box 1 and the ECG monitor are integrated into one unit, ensuring that the stored leads can be accessed at any time, while also making it more portable and mobile, and better suited to the usage requirements of the environment.

[0054] When using this utility model, after pulling out the drawer seat 2, open the protective cover 21, and then insert the metal connector into the positioning slot 11. At the same time, insert the cable body at this end into the wire groove 10 of the winding column 7, the channel 17 between the two guide wheels 16, the first groove 19 on the two guide plates 18, and the positioning groove 13 of the fixing seat 12 in sequence. Then, cover the protective cover 21, and then rotate the winding column 7 to gradually wind the cable body onto the winding column 7. After winding, the electrode contact part is placed in the positioning groove 13. Then, push the drawer seat 2 into the box 1.

[0055] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. The above descriptions are merely specific embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A device for storing and disinfecting the wiring of an electrocardiogram (ECG) monitor, characterized in that, Includes a box body (1), and several drawer seats (2) arranged in a linear array are provided on the front and rear sides of the box body (1). A storage area (3) is formed on one side of the drawer seat (2), and a placement area (4) with an opening is formed on the other side of the drawer seat (2). A connecting area (5) for connecting the storage area (3) and the placement area (4) is formed in the middle of the drawer seat (2). The take-up and release area (3) is provided with a winding and storage assembly, which is used for the detachable installation of the metal connector of the lead wire and the cable body for taking up and releasing the lead wire. The connection area (5) is provided with a guide assembly, which is used to restrict the movement of the cable body between the placement area (4) and the take-up and release area (3). The placement area (4) is provided with a receiving assembly, which is used for the detachable installation of the electrode contact of the lead wire.

2. The ECG monitor wiring storage and disinfection device according to claim 1, characterized in that, The storage assembly includes a chassis (6) fixedly installed on the bottom wall of the drawer seat (2), a scroll (7) rotatably mounted on the chassis (6), a turntable (8) fixedly mounted on the top of the scroll (7), a handle (9) fixedly mounted on the upper surface of the turntable (8), and a metal connector detachably mounted on the scroll (7).

3. The ECG monitor wiring storage and disinfection device according to claim 2, characterized in that, The middle part of the roller (7) has a wire groove (10) through it. The end of the cable body near the metal connector can be locked in the wire groove (10). One end of the wire groove (10) has a clearance slot (11) for accommodating the metal connector.

4. The ECG monitor wiring storage and disinfection device according to claim 2, characterized in that, The receiving assembly includes a fixing seat (12) formed on the inner bottom wall of the drawer seat (2), and the fixing seat (12) is provided with a positioning groove (13) adapted to the electrode contact portion. A guide opening (14) corresponding to the scroll (7) is formed on one side of the positioning groove (13).

5. The ECG monitor wiring storage and disinfection device according to claim 4, characterized in that, The guide assembly includes a guide seat (15) fixedly installed on the inner bottom wall of the drawer seat (2). Two symmetrically arranged guide wheels (16) are rotatably installed on the upper surface of the guide seat (15). A channel (17) corresponding to the scroll (7) is formed between the two guide wheels (16). The cable body can be inserted into the channel (17) and can pass through the channel (17).

6. The ECG monitor wiring storage and disinfection device according to claim 5, characterized in that, Guide plates (18) are installed on both sides of the guide seat (15). Each of the two guide plates (18) has a first groove (19) corresponding to the channel (17). The cable body can pass through the first groove (19). A first disinfection component (20) for wiping the cable body is installed in the first groove (19).

7. The ECG monitor wiring storage and disinfection device according to claim 6, characterized in that, A protective cover (21) is hinged to one side of the drawer seat (2), and the protective cover (21) is detachably mounted on the guide seat (15).

8. The ECG monitor wiring storage and disinfection device according to claim 7, characterized in that, The protective cover (21) has a second groove (22) on both sides corresponding to the first groove (19). The cable body can pass through the second groove (22). A second disinfection component (23) for wiping the cable body is installed in the second groove (22).

9. The ECG monitor wiring storage and disinfection device according to claim 1, characterized in that, Several support rods (24) corresponding to the drawer base (2) are fixedly installed on both sides of the box body (1), and the several support rods (24) are arranged in a linear array on the surface of both sides of the box body (1).

10. A device for storing and disinfecting the wiring of an electrocardiogram monitor according to claim 1, characterized in that, The upper part of the box (1) is provided with a first storage drawer (25), and the lower part of the box (1) is provided with a second storage drawer (26).

Citation Information

Patent Citations

  • Electrocardiogram monitoring line disinfection storage box

    CN221216689U