Wire arranging box for electrocardiograph lead wires

By designing a lead wire management box for electrocardiographs, the problem of lead wire tangling was solved, enabling convenient identification and organization of lead wires and improving the operational efficiency of medical staff.

CN223541923UActive Publication Date: 2025-11-14BEIJING KANGNUO ZHUOSHANG SCIENTIFIC & TECHNOLOGICAL ACHIEVEMENTS TRANSFORMATION CO LTD
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Patent Information

Application Number
CN202422655001.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-11-14
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Electrocardiogram (ECG) machine leads are prone to tangling, causing inconvenience and wasting time for medical staff, and potentially missing the optimal time to perform an ECG.

Method used

Design an electrocardiograph lead cable management box, comprising a back plate, a main body of the box and a detachable cover. The inner cavity is divided into multiple cable slots, and the lead cables can be easily distinguished and organized through the cable outlet on the cover.

Benefits of technology

This allows medical staff to quickly distinguish and organize the leads, improving operational efficiency and preventing them from missing the optimal time to perform an electrocardiogram.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an electrocardiograph lead wire arranging box. The electrocardiograph lead wire arranging box comprises a back plate, the front side of the back plate is provided with a wire box body, the wire box body is provided with an inner cavity, the inner cavity is provided with a wire distributing assembly, the top of the wire box body is provided with an opening, and the opening is communicated with the inner cavity; the branching assembly comprises a box cover and a plurality of partition plates, the partition plates are all located in the inner cavity, the partition plates are arranged at intervals in the left-right direction so as to divide the inner cavity into a plurality of wire containing grooves, the box cover covers the opening, the box cover is detachably connected with the wire box body, and the wire containing grooves are communicated with the box cover. The front side and the rear side of the box cover are each provided with a plurality of wire outlets, and the wire outlets and the wire containing grooves are arranged in a one-to-one correspondence mode. According to the scheme, the lead wires of the electrocardiograph can be conveniently and differentially placed, and operation of medical staff is facilitated.
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Description

Technical Field

[0001] This application relates to the field of medical device technology, and in particular to a lead cable management box for an electrocardiograph. Background Technology

[0002] Electrocardiogram (ECG) machine leads are wires that connect the ECG machine to the patient's body, transmitting electrocardiogram (ECG) signals for recording and analysis. They are an indispensable accessory in ECG examinations. ECG machine leads are typically made of soft rubber or silicone to ensure comfort and durability. One end of the lead connects to an electrode, and the other end connects to the ECG machine, which is placed on the patient's body. ECG machines usually have multiple leads to connect to different parts of the patient's body, such as the limbs and chest.

[0003] In related technologies, the electrocardiograph (ECG) machine and leads are placed on an ECG cart for use. The ECG machine's leads are easily tangled together and difficult to distinguish. When using the ECG machine, the leads need to be tidied up before an ECG can be performed. This causes inconvenience and wastes time for medical staff, and may also cause them to miss the optimal time for an ECG. Utility Model Content

[0004] To address or partially address the problems existing in related technologies, this application provides a lead cable management box for an electrocardiograph (ECG) machine, which facilitates the identification and placement of ECG machine leads and makes operation easier for medical personnel.

[0005] This application provides a lead cable management box for an electrocardiograph, comprising: a back plate, a cable box body disposed on the front side of the back plate, the cable box body having an inner cavity, the inner cavity having a cable distribution assembly, and an opening disposed on the top of the cable box body communicating with the inner cavity; the cable distribution assembly including a cover and multiple partitions, the multiple partitions being located in the inner cavity and spaced apart in the left-right direction to divide the inner cavity into multiple cable receiving slots, the cover closing onto the opening, the cover being detachably connected to the cable box body, and multiple cable outlets respectively disposed on the front and rear sides of the cover, the multiple cable outlets corresponding one-to-one with the multiple cable receiving slots.

[0006] Furthermore, the cover includes a plurality of grooves arranged sequentially in the left-right direction, the plurality of grooves being connected in sequence, the plurality of grooves being configured one-to-one with the plurality of cable-holding grooves, the lower end of the groove being able to extend into the inner cavity from the opening, the cable outlet being provided on the front and rear sides of the groove respectively, the upper end of the groove having a groove opening, and the lower end of the groove having a cable-holding space between it and the bottom of the cable-holding groove.

[0007] Furthermore, the cover also includes a flange that extends along the upper edge of the groove and abuts against the upper surface of the wire box body.

[0008] Furthermore, the outlet extends through the sidewall of the trough in the front-to-back direction.

[0009] Furthermore, the outlet extends downward from the upper edge of the groove body, and the outlet penetrates through the upper edge of the groove body.

[0010] Furthermore, there is a gap between two adjacent grooves to accommodate the partition.

[0011] Furthermore, a hook portion is provided at the top of the back plate.

[0012] Furthermore, the hook portion bends rearward from the top of the back plate.

[0013] Furthermore, a fixing plate is provided on the front side of the main body of the junction box, and multiple slots are provided on the top of the fixing plate, with each slot corresponding to a different cable receiving slot.

[0014] Furthermore, a label is provided in the slot.

[0015] The technical solution provided in this application can include the following beneficial effects: By arranging multiple partitions in the inner cavity of the main body of the wire box at intervals along the left and right direction, the inner cavity is divided into multiple wire-receiving slots. Each lead wire is placed in its corresponding wire-receiving slot, and the box cover is closed over the opening above the wire-receiving slot. By providing multiple wire outlets on the front and rear sides of the box cover, with each outlet corresponding to a wire-receiving slot, both ends of the lead wire located in the wire-receiving slot can extend out of the slot through the corresponding front and rear outlets. That is, one end of the lead wire extends out of the slot through one of the corresponding outlets and can be connected to the electrocardiograph, and the other end extends out of the slot through another corresponding outlet and can be connected to the electrode. When medical staff need to use the electrocardiograph, they only need to open the box cover, then take out each lead wire in sequence and place the electrode on the patient. This facilitates the differentiation of different lead wires and is convenient to operate.

[0016] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and do not limit this application. Attached Figure Description

[0017] The above and other objects, features and advantages of this application will become more apparent from the more detailed description of exemplary embodiments thereof in conjunction with the accompanying drawings, wherein the same reference numerals generally represent the same components in the exemplary embodiments thereof.

[0018] Figure 1 This is a schematic diagram of the structure of the electrocardiograph lead cable management box shown in an embodiment of this application;

[0019] Figure 2This is an exploded view of the electrocardiograph lead cable management box shown in an embodiment of this application;

[0020] Figure 3 This is a schematic diagram of the structure of the box lid shown in an embodiment of this application.

[0021] Reference numerals: 1-back panel, 11-hook part, 2-main body of the cable box, 21-opening, 3-box cover, 31-outlet, 32-slot, 33-slot opening, 34-flange, 4-partition, 5-cable trough, 6-fixing plate, 61-slot position. Detailed Implementation

[0022] Embodiments of this application will now be described in more detail with reference to the accompanying drawings. While embodiments of this application are shown in the drawings, it should be understood that this application may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided to make this application more thorough and complete, and to fully convey the scope of this application to those skilled in the art.

[0023] It should be understood that although the terms "first," "second," "third," etc., may be used in this application to describe various information, this information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another. For example, without departing from the scope of this application, first information may also be referred to as second information, and similarly, second information may also be referred to as first information. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0024] In the description of this application, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0025] Unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0026] like Figures 1 to 3 As shown in the figure, this application embodiment provides an electrocardiograph (ECG) lead cable management box, including a back plate 1, a cable box body 2 disposed on the front side of the back plate 1, the cable box body 2 having an inner cavity, the inner cavity having a cable distribution assembly, and an opening 21 disposed on the top of the cable box body 2, the opening 21 communicating with the inner cavity. The cable box body 2 is a hollow box structure with an opening 21 at the top end. The back plate 1 is used to fix the ECG lead cable management box in the required position, and one side of the cable box body 2 is fixedly disposed on the back plate 1.

[0027] The cable distribution assembly includes a cover 3 and multiple partitions 4. The partitions 4 are located within the inner cavity of the main body 2 of the cable box and are spaced apart in the left-right direction to divide the inner cavity into multiple cable receiving slots 5. The partitions 4 are vertically positioned within the inner cavity. The cover 3 closes onto the opening 21, and the cover 3 is detachably connected to the main body 2 of the cable box. The connecting wire can be placed into or removed from the cable receiving slot 5 through the opening 21. Multiple cable outlets 31 are provided on the front and rear sides of the cover 3, corresponding one-to-one with the multiple cable receiving slots 5. Specifically, the multiple cable outlets 31 on the front side of the cover 3 correspond one-to-one with the multiple cable receiving slots 5, and the multiple cable outlets 31 on the rear side of the cover 3 also correspond one-to-one with the multiple cable receiving slots 5. Each cable receiving slot 5 has two corresponding cable outlets 31 on the cover 3.

[0028] Based on the above scheme, by arranging multiple partitions 4 in the inner cavity of the main body 2 of the wire box at intervals along the left and right direction, the inner cavity is divided into multiple wire-receiving slots 5. Each lead wire is placed in its corresponding wire-receiving slot 5, and the box cover 3 is closed over the opening 21 above the wire-receiving slot 5. Multiple wire outlets 31 are provided on the front and rear sides of the box cover 3, and the multiple wire outlets 31 are arranged one-to-one with the multiple wire-receiving slots 5. In this way, both ends of the lead wire located in the wire-receiving slot 5 can extend out of the wire-receiving slot 5 through the corresponding front and rear wire outlets 31. That is, one end of the lead wire extends out of the wire-receiving slot 5 through one of the corresponding wire outlets 31 and can be connected to the electrocardiograph, and the other end of the lead wire extends out of the wire-receiving slot 5 through the other corresponding wire outlet 31 and can be connected to the electrode. When medical staff need to use the electrocardiograph, they only need to open the box cover 3, then take out each lead wire in turn and place the electrode on the patient. This makes it easy to distinguish different lead wires and is convenient to operate.

[0029] Specifically, the electrocardiograph (ECG) machine has multiple leads connected to different parts of the patient's body, such as multiple leads to the limbs and multiple leads to the chest. These different leads are stored in separate cable holders 5 for easy identification and organization by medical staff. One end of each lead is electrically connected to the ECG machine, and the other end has an electrode for attachment to the patient. The electrode may be a limb lead clip or a chest ball. The electrode is larger than the lead and is placed outside the cable holder 5 through an outlet 31. The electrode can also be placed on the cover 3.

[0030] In some embodiments, such as Figures 1 to 3 As shown, the cover 3 includes multiple slots 32 arranged sequentially in the left-right direction. The multiple slots 32 are connected in sequence, and the multiple slots 32 are correspondingly arranged with multiple wire receiving slots 5. The lower end of the slot 32 can extend into the inner cavity from the opening 21. The front and rear sides of the slot 32 are respectively provided with wire outlets 31. The upper end of the slot 32 has a slot 33. There is a wire receiving space between the lower end of the slot 32 and the bottom of the wire receiving slot 5.

[0031] Specifically, the lead wire is placed within the wire-carrying space, with both ends extending from the outlets 31 on the front and rear sides of the slot 32. The electrode at one end of the lead wire can be placed inside the slot 32 and can be removed and placed through the slot opening 33 for easy placement and arrangement of the electrode. The diagram shows six wire-carrying slots 5 and six slots 32, arranged in a corresponding manner. The end of the slot 32 can press downwards against the lead wire within the wire-carrying slot 5.

[0032] In some embodiments, such as Figure 2 and Figure 3 As shown, the cover 3 also includes a flange 34, which extends along the upper edge of the groove 32 and abuts against the upper surface of the junction box body 2. Specifically, the groove 32 extends downward into the cable receiving groove 5, and the width of the flange 34 is greater than the width of the opening 21, thereby abutting against the upper surface of the junction box body 2. When removing or placing the cover 3 from the junction box body 2, the cover 3 can be removed or placed by taking the flange 34.

[0033] In some embodiments, such as Figure 2 and Figure 3 As shown, the outlet 31 extends through the side wall of the groove 32 in the front-to-back direction. This allows the conductor in the cable tray 5 to enter the groove 32 through the outlet 31.

[0034] In some embodiments, the outlet 31 extends downward from the upper edge of the groove 32, penetrating the upper edge of the groove 32 and dividing the upper edge of the groove 32 in two. This facilitates the insertion or removal of the lead wire from the groove 32. Alternatively, the outlet 31 may extend downward to penetrate the bottom of the groove 32, creating a vertical notch at the bottom of the groove 32 so that the lead wire below the groove 32 can enter the groove 32 through the outlet 31.

[0035] In some embodiments, such as Figure 2 and Figure 3 As shown, there is a gap between two adjacent grooves 32 to accommodate the partition 4. Specifically, the groove 32 is inserted into the wire groove 5, and the partition 4 between adjacent wire grooves 5 is located in the gap between the two adjacent grooves 32, thereby preventing interference. The groove 32 may have a certain taper, so that the width of the groove 32 gradually increases from bottom to top.

[0036] In some embodiments, the top of the back panel 1 is provided with a hook portion 11, which can be hung on a device that needs to hold the lead wire management box of the electrocardiograph, for example, the hook portion 11 can be hung on the electrocardiograph cart.

[0037] In some embodiments, the hook portion 11 bends backward from the top of the back plate 1, so that when in use, the wire box body 2 on the front side of the back plate 1 faces the electrocardiograph.

[0038] In some embodiments, such as Figure 1 and Figure 2 As shown, a fixing plate 6 is provided on the front side of the main body 2 of the wire box. The top of the fixing plate 6 has multiple slots 61, which correspond one-to-one with multiple wire receiving slots 5. Labels can be set in the slots 61, with each slot 61 having a corresponding label. Each label corresponds to each wire receiving slot 5. The label can be written with the name of the lead wire placed in the corresponding wire receiving slot 5, such as left hand lead wire, right foot lead wire, etc., so that medical staff can take and put the lead wire.

[0039] The solution of this application has been described in detail above with reference to the accompanying drawings. In the above embodiments, the descriptions of each embodiment have different focuses; for parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments. Those skilled in the art should also understand that the actions and modules involved in the specification are not necessarily essential to this application. Furthermore, it is understood that the steps in the method of this application embodiment can be adjusted, combined, and deleted according to actual needs, and the modules in the device of this application embodiment can be combined, divided, and deleted according to actual needs.

[0040] The various embodiments of this application have been described above. These descriptions are exemplary and not exhaustive, nor are they limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.

Claims

1. A lead cable management box for an electrocardiograph, characterized in that, include: A back panel, the front side of which is provided with a cable box body, the cable box body having an inner cavity, the inner cavity having a cable splitting assembly, and the top of the cable box body having an opening that communicates with the inner cavity; The cable distribution assembly includes a cover and multiple partitions. The multiple partitions are located in the inner cavity and are spaced apart in the left-right direction to divide the inner cavity into multiple cable receiving slots. The cover closes to the opening and is detachably connected to the cable box body. The front and rear sides of the cover are respectively provided with multiple cable outlets, and the multiple cable outlets are arranged one-to-one with the multiple cable receiving slots.

2. The electrocardiograph lead cable management box according to claim 1, characterized in that: The cover includes multiple slots arranged sequentially in a left-right direction. The multiple slots are connected in sequence, and each slot corresponds to a wire-carrying slot. The lower end of the slot can extend into the inner cavity from the opening. The front and rear sides of the slot are respectively provided with the wire outlet. The upper end of the slot has a slot opening, and there is a wire-carrying space between the lower end of the slot and the bottom of the wire-carrying slot.

3. The electrocardiograph lead cable management box according to claim 2, characterized in that: The cover also includes a flange that extends along the upper edge of the groove and abuts against the upper surface of the wire box body.

4. The electrocardiograph lead cable management box according to claim 2, characterized in that: The outlet extends through the side wall of the trough in the front-to-back direction.

5. The electrocardiograph lead cable management box according to claim 4, characterized in that: The outlet extends downward from the upper edge of the groove and passes through the upper edge of the groove.

6. The electrocardiograph lead cable management box according to claim 2, characterized in that: There is a gap between two adjacent tanks to accommodate the partition.

7. The electrocardiograph lead cable management box according to claim 1, characterized in that: The top of the back panel is provided with a hook.

8. The electrocardiograph lead cable management box according to claim 7, characterized in that: The hook portion bends backward from the top of the back plate.

9. The electrocardiograph lead cable management box according to claim 1, characterized in that: A fixing plate is provided on the front side of the main body of the junction box. The top of the fixing plate has multiple slots, and each slot corresponds to a cable receiving slot.

10. The electrocardiograph lead cable management box according to claim 9, characterized in that: A label is placed inside the slot.