Collecting and fixing device for electrocardiograph monitoring lead wires

By designing the beam-retaining fixing device for the electrocardiogram monitoring lead wire, the problem of confusion in the lead wire management is solved, the neat storage and protection of the lead wire is achieved, the patient's comfort and medical efficiency are improved, and the 9S standard of modern hospital management is in line with the 9S standard.

CN223220450UActive Publication Date: 2025-08-15HANGZHOU TRADITIONAL CHINESE MEDICINE HOSPITAL (HANGZHOU TRADITIONAL CHINESE MEDICINE HOSPITAL AFFILIATED TO ZHEJIANG UNIV OF TRADITIONAL CHINESE MEDICINE)
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Patent Information

Application Number
CN202422045684.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-08-15
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

There are problems such as confusion, winding, easy to damage, difficult to organize, affecting patient comfort and medical efficiency during the use and management of the electrocardiogram monitor lead wire, and it does not comply with the 9S standards of modern hospital management.

Method used

A leash fixing device for the electrocardiogram monitoring lead wire is designed, including a leash buckle assembly and a fixing mechanism. The leash wire is neatly stored and flexiblely managed through multiple buckles and connecting structures, and fixed with Velcro tie or other tying parts to provide locking and protection functions.

Benefits of technology

It improves the operational convenience and cleanliness of the lead wire, reduces winding and damage, improves patient comfort and medical work efficiency, and complies with the standards of modern hospital management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electrocardiograph monitoring lead wire which can be used for arranging and bundling a plurality of electrocardiograph monitoring lead wires, so that the lead wires are kept neat and orderly, and meanwhile, the effect of protecting the lead wires is achieved. According to the technical scheme, the bundling and fixing device for the electrocardiograph monitoring lead wire is characterized by comprising a bunch retaining ring assembly and a fixing mechanism used for fixing the bunch retaining ring assembly to the lead wire, and the bunch retaining ring assembly comprises a plurality of retaining rings; the buckle ring comprises a movable shaft, row buckles connected to the two sides of the movable shaft respectively and a connecting structure used for being connected with other buckle rings, each row buckle is formed by arranging a plurality of arc-shaped rods in the axial direction of the movable shaft, the row buckles on the two sides are oppositely arranged in an inner buckle mode, and the arc-shaped rods of the row buckles on the two sides are arranged in an aligned or staggered mode. The row buckles on the two sides can be opened and closed through movable shafts; any retaining rings are connected at the ends through connecting structures, and the length of the whole bunching retaining ring assembly is controlled through the number of the retaining rings connected in a combined mode.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical device accessories, in particular to a converging and fixing device for an electrocardiogram monitoring lead wire. Background Art

[0002] In hospital clinical applications, ECG monitors are crucial devices for monitoring cardiac function. Their accuracy and reliability are directly linked to patient treatment outcomes and life safety. However, numerous deficiencies exist in the use and management of ECG monitor lead wires. These issues not only hinder the effective use of medical equipment but also reduce patient comfort and satisfaction, and fail to meet the 9S standard for modern hospital management.

[0003] ECG monitors typically feature multiple lead wires, each connected to a different body part (such as the chest, arm, or leg) to comprehensively monitor the patient's ECG signals. However, the large number and length of these lead wires make them prone to becoming tangled and entangled during use, complicating medical staff's operations. Hospitals often face difficulties managing these lead wires due to the lack of effective storage solutions, leading to them becoming tangled, stepped on, or pulled, causing damage during placement. Damaged lead wires not only render them unusable but can also pose safety risks due to poor conductivity. Some patients, unaware of their importance or out of curiosity or discomfort, remove them on their own. This can lead to lead wires becoming detached and lost, and can also damage the equipment due to improper handling. Furthermore, detached lead wires can affect ECG monitoring, potentially delaying patient diagnosis and treatment, and increasing hospital expenses. The detachment and loss of lead wires may also cause anxiety in patients, affecting their satisfaction with medical services. Medical staff may also reduce their work efficiency and satisfaction due to cumbersome operations when dealing with lead wire problems.

[0004] The 9S management principle (sort, straighten, clean, sanitation, conservation, safety, service, satisfaction, and quality) is a key concept in modern hospital management. However, the current use of ECG monitor lead cables clearly does not meet this standard. Tangled lead cables not only affect the neatness and aesthetics of medical equipment but can also pose safety risks due to poor management, reducing patient comfort and satisfaction.

[0005] Therefore, how to solve the problems of the current ECG monitor lead wires, such as being chaotically placed, difficult to organize, and easy to fall off and damage, has become an urgent problem to be solved in the field of this technology. Utility Model Content

[0006] The purpose of the present invention is to provide an ECG monitoring lead wire to address the problems existing in the above-mentioned background technology, which can organize and bundle multiple ECG monitor lead wires, keep the lead wires neat and orderly, and at the same time play a role in protecting the lead wires.

[0007] In order to achieve the above-mentioned purpose of the utility model, the utility model adopts the following technical solutions:

[0008] A device for bundling and fixing electrocardiogram monitoring lead wires includes a cable tie buckle assembly and a fixing mechanism for fixing the cable tie buckle assembly to the lead wire. The cable tie buckle assembly includes multiple buckles, each of which includes a movable shaft, a row of buckles respectively connected to both sides of the movable shaft, and a connecting structure for connecting other buckles. The row of buckles is formed by multiple arc-shaped rods arranged axially along the movable shaft, and the rows of buckles on both sides are arranged relative to each other in an inner buckle manner. The arc-shaped rods of the rows of buckles on both sides are aligned or staggered with each other, and the rows of buckles on both sides can be opened and closed by the movable shaft. Any buckles are connected at the end by a connecting structure, and the length of the entire cable tie buckle assembly is controlled by the number of buckles connected in combination.

[0009] Preferably, the fixing mechanism includes a fastening piece, which may be a Velcro cable tie, an elastic rope, a non-elastic rope, or a nylon cable tie. After the assembly is completed, the buckles at both ends of the cable buckle assembly are connected to at least one fastening piece.

[0010] Preferably, the connecting structure includes a rope threading hole and a series rope, the rope threading hole is provided in the movable shaft, and the rope threading hole penetrates the movable shaft axially to both ends of the movable shaft, and the series rope passes through the rope threading hole; the multiple buckles are connected in series by passing the series rope through the rope threading holes of the multiple buckles in sequence.

[0011] Preferably, the connection structure includes a connection part a and a connection part b respectively arranged at both ends of the buckle, and the connection part a of one buckle and the connection part b of the other buckle are detachably connected. The connection method of the connection part a and the connection part b can be a snap connection, a hook connection, a Velcro connection, a magnetic connection, or an interference connection. The length of the entire cable harness buckle assembly is controlled by docking different numbers of buckles.

[0012] Preferably, the movable shaft is provided with a groove and an elastic part, the elastic part is located at the bottom of the groove, the groove and the elastic part both extend axially to both ends of the movable shaft, the hardness of the elastic part is smaller than that of the movable shaft bodies on both sides to allow the movable shaft bodies on both sides to open and close, and the groove provides space for the opening and closing of the movable shaft bodies on both sides.

[0013] Preferably, the buckle is further provided with a locking mechanism for locking when the buckles on both sides are closed.

[0014] Preferably, the locking mechanism includes a complementary buckling structure, and the arc-shaped rods of the buckles on both sides are aligned with each other. The complementary buckling structure includes a buckling end a and a buckling end b, and the buckling end a and the buckling end b are respectively located at the ends of the arc-shaped rods on both sides. The buckle end a is provided with a first fitting groove and a bayonet, and the buckle end a is provided with a second fitting groove and a clamping block; the buckles on both sides are closed so that the buckle end a and the buckle end b are docked and clamped; a complementary buckling structure is provided on the arc-shaped rods at least at both ends of the buckle.

[0015] Compared with the existing technology, the device for converging and fixing the ECG monitoring lead wires using the above technical solution has the following beneficial effects:

[0016] 1. Improved operational convenience: By designing a cable tie buckle assembly, medical staff can easily bundle multiple lead wires and fix the cable tie buckle assembly on the lead wires, achieving neat and orderly storage management, avoiding confusion and entanglement between lead wires, and eliminating the need for medical staff to frequently spend time and energy on regularization, thereby improving work efficiency; at the same time, neatly and orderly stored lead wires can greatly reduce obstacles to patient activities and have better aesthetics, which is conducive to reducing the adverse effects on patients' emotions and improving patients' comfort and satisfaction with medical services.

[0017] 2. The cable tie buckle assembly can provide protection for the lead wires, effectively preventing the exposed and scattered lead wires from being damaged by friction, squeezing, or stepping on by external objects.

[0018] 3. Good flexibility. The cable harness buckle assembly contains multiple connectable and detachable buckles. A certain number of buckles can be selected and spliced to form a whole. It can be adapted to different usage scenarios or lead wires of different lengths, with strong flexibility and scalability. At the same time, the buckle can be easily opened and closed, facilitating the insertion and removal of one or more lead wires.

[0019] 4. The implementation of this plan will help the hospital achieve the 9S management goals, improve the cleanliness and aesthetics of medical equipment, reduce safety hazards caused by poor management, and meet the standards and requirements of modern hospital management.

[0020] In addition to the above technical solutions, the present invention also discloses the following technical solutions:

[0021] The present invention discloses a device for bundling and fixing an ECG monitoring lead wire, comprising a wire binding ring assembly and a fixing mechanism for fixing the wire binding ring assembly to the lead wire. The wire binding ring assembly comprises a main body ring and at least two adjustment rings, wherein the main body ring is longer than the adjustment ring.

[0022] The main buckle includes a first movable shaft, a first row of buckles connected to both sides of the first movable shaft, and a connecting structure. The first row of buckles is formed by a plurality of arc-shaped rods arranged axially along the first movable shaft. The first rows of buckles on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods of the first rows of buckles on both sides are aligned with each other or staggered. The first rows of buckles on both sides can be opened and closed by the first movable shaft.

[0023] The adjusting buckle includes a second movable shaft, a second row of buckles connected to both sides of the second movable shaft, and a connecting structure. The second row of buckles is formed by a plurality of arc-shaped rods arranged axially along the second movable shaft. The second rows of buckles on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods of the second rows of buckles on both sides are aligned with each other or staggered. The second rows of buckles on both sides can be opened and closed by the first movable shaft.

[0024] The length of the second movable axis is smaller than that of the first movable axis, the number of arc rods of the second row of buckles is smaller than that of the first row of buckles, the main buckle and the adjustment buckle, and any adjustment buckle are connected at the end through a connecting structure, and the length of the entire cable buckle assembly can be controlled by combining and connecting different numbers of adjustment buckles on the main buckle.

[0025] In addition to the above technical solutions, the present invention also discloses the following technical solutions:

[0026] The present invention discloses a bundling and fixing device for an electrocardiogram monitoring lead wire, comprising a cable binding buckle assembly and a connecting and fixing member, wherein the cable binding buckle assembly comprises a plurality of buckles, wherein the buckles comprise a movable shaft, buckles respectively connected to both sides of the movable shaft, and a connecting structure for connecting other buckles, wherein the buckles are formed by a plurality of arc-shaped rods arranged axially along the movable shaft, the buckles on both sides are arranged relative to each other in an inward buckling manner, the arc-shaped rods of the buckles on both sides are aligned with each other or staggered, and the buckles on both sides can be opened and closed by the movable shaft; a through hole is provided in the movable shaft, and the through hole extends axially along the movable shaft to both ends of the movable shaft; the connecting and fixing member comprises a Velcro strap, which can be inserted into the through hole, and the plurality of buckles are connected in series by passing the Velcro strap through the through holes of the plurality of buckles in sequence, and the Velcro strap can be tightened and fixed on the lead wire after extending from the buckles at both ends. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a structural diagram of Example 1 of the converging and fixing device for ECG monitoring lead wires of the present invention.

[0028] Figure 2 This is a schematic diagram of the usage of Example 1.

[0029] Figure 3 Schematic diagram of the structure of the buckle in Example 1 (top view).

[0030] Figure 4 Schematic diagram of the structure of the buckle in Example 1 (bottom view).

[0031] Figure 5 This is a structural diagram of Example 2 of the bundling and fixing device for ECG monitoring lead wires of the present invention.

[0032] Figure 6 Schematic diagram of the structure of the buckle in Example 1.

[0033] Figure 7 This is a structural diagram of Example 3 of the bundling and fixing device for ECG monitoring lead wires of the present invention.

[0034] Figure 8 This is a schematic structural diagram of the main body buckle and the adjustment buckle in Example 3.

[0035] 1. Cable harness buckle assembly; 10. Buckle; 100. Movable shaft; 1000. Groove; 1001. Elastic part; 101. Arc-shaped rod; 102. Rope hole; 103. Connecting rope; 104. Buckle end a; 1040. First fitting groove; 1041. Bayonet; 105. Buckle end b; 1050. Second fitting groove; 1051. Block; 11. Connect part a; 110. Buckle; 12. Connect part b; 120. Protruding rod; 121. Crown; 13. Main buckle; 130. First movable shaft; 131. First row of buckles; 14. Adjusting buckle; 140. Second movable shaft; 141. Second row of buckles; 2. Velcro tie; 3. Lead wire. DETAILED DESCRIPTION

[0036] The present invention will be further described below in conjunction with the accompanying drawings.

[0037] Example 1:

[0038] like Figures 1 to 4 The bundled and fixed device for ECG monitoring lead wires shown includes a cable tie buckle assembly 1 and a fixing mechanism for fixing the cable tie buckle assembly 1 to the lead wire 3. The cable tie buckle assembly 1 includes multiple buckles 10, and the buckles 10 include a movable shaft 100, buckles respectively connected to both sides of the movable shaft 100, and a connecting structure for connecting other buckles 10.

[0039] The buckle row is formed by multiple curved rods 101 arranged axially along a movable shaft 100. The buckles on both sides are arranged relative to each other in an interlocking manner. The curved rods 101 on both sides of the buckle row are aligned with each other to form a bracket-like structure. The buckles on both sides can be opened and closed by the movable shaft 100. Any buckle rings 10 are connected at the ends by a connecting structure. The length of the entire cable tie buckle assembly 1 is controlled by the number of buckle rings 10 connected in combination.

[0040] The securing mechanism includes a fastening member, which is a Velcro strap 2. The assembled cable tie assembly 1 has at least one Velcro strap 2 attached to each of the buckles 10 at each end. After the multiple lead wires 3 are simultaneously gathered in the cable tie assembly 1, each buckle 10 is closed, and the Velcro straps 2 at each end are wrapped and tightened around the lead wires 3 at both ends to complete the gathering and securing.

[0041] The connecting structure includes a rope threading hole 102 and a connecting rope 103. The rope threading hole 102 is provided in the movable shaft 100 and extends axially through the movable shaft 100 to both ends of the movable shaft 100. The connecting rope 103 passes through the rope threading hole 102. The connecting rope 103 is sequentially passed through the rope threading holes 102 of multiple buckles 10 to connect the multiple buckles 10 in series. The number of buckles 10 connected in series can be selected to control the length of the entire cable harness buckle assembly 1. According to the specific usage scenario or the length of the lead wire 3, an appropriate number of buckles 10 can be selected to be threaded through the connecting rope 103. This can not only ensure the integrity of the cable harness buckle assembly 1, but also allow a certain degree of bending of the cable harness buckle 10 group because adjacent buckles 10 can be moved, which has good adaptability to the actual usage environment.

[0042] The movable shaft 100 is provided with a groove 1000 and an elastic portion 1001. The elastic portion 1001 is located at the bottom of the groove 1000. The groove 1000 and the elastic portion 1001 both extend axially to both ends of the movable shaft 100. The elastic portion 1001 is less hard than the movable shaft 100 bodies on both sides, allowing the movable shaft 100 bodies on both sides to open and close. The groove 1000 provides space for the movable shaft 100 bodies to open and close. The buckle 10 also has a locking mechanism for locking the buckles on both sides when closed. The locking mechanism includes a complementary buckling structure, and the arc-shaped rods 101 of the buckles on both sides are aligned with each other. The complementary buckling structure includes a buckling end a 104 and a buckling end b 105. The buckling end a 104 and the buckling end b 105 are respectively located at the ends of the arc-shaped rod 101 on both sides. The buckling end a 104 is provided with a first fitting groove 1040 and a bayonet 1041, and the buckling end a 104 is provided with a second fitting groove 1050 and a clamping block 1051; the buckles on both sides are closed so that the buckling end a 104 and the buckling end b 105 are docked and clamped; a complementary buckling structure is provided on the arc-shaped rod 101 at least at both ends of the buckle 10.

[0043] Example 2:

[0044] like Figure 5 and Figure 6 As shown, the technical contents of this embodiment are substantially the same as those of embodiment 1. The technical differences between this embodiment and embodiment 1 are as follows:

[0045] This embodiment differs from Example 1 in its connection structure features. In this embodiment, the connection structure includes a connection portion a 11 and a connection portion b 12, respectively disposed at both ends of a buckle 10. The connection portion a 11 of one buckle 10 and the connection portion b 12 of another buckle 10 are detachably connected. The connection portion a 11 and the connection portion b 12 can be connected by a snap-on connection. The connection portion a 11 is a buckle opening 110 disposed at one end of the buckle 10, and the connection portion b 12 is a protruding rod 120 disposed at the other end of the buckle 10. The end of the protruding rod 120 is provided with a bulging crown 121. Both the protruding rod 120 and the crown 121 are made of elastic material. The crown 121 of one buckle 10 can be inserted into the buckle opening 110 of the other buckle 10 and locked. The crown 121 can be pulled out of the buckle opening 110 by applying force. The length of the entire cable harness buckle assembly 1 is controlled by docking different numbers of buckles 10.

[0046] Example 3:

[0047] Compared with the first embodiment, this embodiment has differences in the features of the cable grommet assembly 1 .

[0048] like Figure 7 and Figure 8 As shown, the cable tie buckle assembly 1 of this solution includes a main buckle 13 and at least two adjustment buckles 14 , and the main buckle 13 is longer than the adjustment buckle 14 .

[0049] The main buckle 13 includes a first movable shaft 130, first rows of buckles 131 connected to both sides of the first movable shaft 130, and a connecting structure. The first row of buckles 131 is formed by a plurality of arc-shaped rods 101 arranged axially along the first movable shaft 130. The first rows of buckles 131 on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods 101 of the first rows of buckles 131 on both sides are aligned or staggered with each other. The first rows of buckles 131 on both sides can be opened and closed by the first movable shaft 130.

[0050] The adjusting buckle 14 includes a second movable shaft 140, a second row of buckles 141 connected to both sides of the second movable shaft 140, and a connecting structure. The second row of buckles 141 is formed by multiple arc rods 101 arranged axially along the second movable shaft 140. The second row of buckles 141 on both sides are arranged relative to each other in an inward-buckled manner. The arc rods 101 of the second row of buckles 141 on both sides are aligned with each other or staggered. The second row of buckles 141 on both sides can be opened and closed through the first movable shaft 130.

[0051] The length of the second movable shaft 140 is smaller than that of the first movable shaft 130, and the number of arc-shaped rods 101 of the second row of buckles 141 is smaller than that of the first row of buckles 131. The main buckle 13 and the adjustment buckle 14, as well as any adjustment buckle 14, are connected at the end by a connecting structure. The connecting structure is the same as the connecting structure in the embodiment, that is, the first movable shaft 130 and the second movable shaft 140 are both provided with a rope threading hole 102 and equipped with a series rope 103. By connecting different numbers of adjustment buckles 14 in series at both ends of the main buckle 13, the length of the entire cable buckle assembly 1 can be controlled.

[0052] Example 4:

[0053] The bundled and fixed device of the electrocardiogram monitoring lead wire of this scheme includes a cable buckle assembly 1 and a connecting and fixing piece. The cable buckle assembly 1 includes a plurality of buckles 10. The buckle 10 includes a movable shaft 100, a row of buckles respectively connected to both sides of the movable shaft 100, and a connecting structure for connecting other buckles 10. The row of buckles is formed by a plurality of arc-shaped rods 101 arranged axially along the movable shaft 100. The rows of buckles on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods 101 of the rows of buckles on both sides are aligned with each other or staggered. The rows of buckles on both sides can be opened and closed by the movable shaft 100. A through hole is provided in the movable shaft 100, and the through hole extends axially along the movable shaft 100 to both ends of the movable shaft 100. The connecting and fixing piece includes a Velcro strap 2, which can be inserted into the through hole. The plurality of buckles 10 are connected in series by sequentially passing the Velcro strap 2 through the through holes of the plurality of buckles 10. The Velcro strap 2 can be tightly fixed on the lead wire 3 after extending from the buckles 10 at both ends.

[0054] The above are preferred implementations of the present invention. Those skilled in the art may make several modifications and improvements without departing from the principles of the present invention, and these modifications and improvements should also be considered within the scope of protection of the present invention.

Claims

1. A device for converging and fixing an electrocardiogram monitoring lead wire, characterized in that: The invention comprises a cable tie buckle assembly (1) and a fixing mechanism for fixing the cable tie buckle assembly (1) on a lead wire (3), wherein the cable tie buckle assembly (1) comprises a plurality of buckles (10), the buckles (10) comprising a movable shaft (100), buckles respectively connected to both sides of the movable shaft (100), and a connecting structure for connecting other buckles (10), wherein the buckles are formed by a plurality of arc-shaped rods (101) arranged axially along the movable shaft (100), the buckles on both sides are arranged relative to each other in an inner buckle manner, the arc-shaped rods (101) of the buckles on both sides are aligned with each other or staggered, and the buckles on both sides can be opened and closed by the movable shaft (100); any buckles (10) are connected at the end by a connecting structure, and the length of the entire cable tie buckle assembly (1) is controlled by the number of buckles (10) connected in combination.

2. The device for converging and fixing an ECG monitoring lead wire according to claim 1, characterized in that: The fixing mechanism comprises a fastening member, which is one of a Velcro cable tie (2), an elastic rope, a non-elastic rope, and a nylon cable tie. The buckles (10) at both ends of the assembled cable buckle assembly (1) are each connected to at least one fastening member.

3. The device for converging and fixing an ECG monitoring lead wire according to claim 1, characterized in that: The connecting structure comprises a rope threading hole (102) and a connecting rope (103), wherein the rope threading hole (102) is provided in the movable shaft (100), and the rope threading hole (102) penetrates the movable shaft (100) axially to both ends of the movable shaft (100), and the connecting rope (103) passes through the rope threading hole (102); the multiple buckles (10) are connected in series by sequentially passing the connecting rope (103) through the rope threading holes (102) of the multiple buckles (10).

4. The device for converging and fixing an ECG monitoring lead wire according to claim 1, characterized in that: The connection structure comprises a connection part a (11) and a connection part b (12) respectively arranged at two ends of the buckle (10); the connection part a (11) of one buckle (10) and the connection part b (12) of the other buckle (10) are detachably connected; the connection method of the connection part a (11) and the connection part b (12) is one of a snap connection, a hook connection, a Velcro connection, a magnetic connection, and an interference connection; and the length of the entire cable buckle assembly (1) is controlled by docking different numbers of buckles (10).

5. The device for converging and fixing an ECG monitoring lead wire according to claim 1, characterized in that: The movable shaft (100) is provided with a groove (1000) and an elastic portion (1001), the elastic portion (1001) being located at the bottom of the groove (1000), the groove (1000) and the elastic portion (1001) both extending axially to both ends of the movable shaft (100), the elastic portion (1001) having a hardness less than that of the movable shaft (100) bodies on both sides so as to allow the movable shaft (100) bodies on both sides to open and close, and the groove (1000) provides space for the opening and closing of the movable shaft (100) bodies on both sides.

6. The device for converging and fixing an ECG monitoring lead wire according to claim 1 or 5, characterized in that: The buckle (10) is also provided with a locking mechanism for locking when the buckles on both sides are closed.

7. The device for converging and fixing an ECG monitoring lead wire according to claim 6, characterized in that: The locking mechanism includes a complementary buckling structure, wherein the arc-shaped rods (101) of the buckles on both sides are aligned with each other, and the complementary buckling structure includes a buckling end a (104) and a buckling end b (105), wherein the buckling end a (104) and the buckling end b (105) are respectively located at the ends of the arc-shaped rod (101) on both sides, the buckling end a (104) is provided with a first fitting groove (1040) and a bayonet (1041), and the buckling end a (104) is provided with a second fitting groove (1050) and a clamping block (1051); the buckles on both sides are closed so that the buckling end a (104) and the buckling end b (105) are docked and clamped; and the complementary buckling structure is provided on the arc-shaped rod (101) at least at both ends of the buckle (10).

8. A device for converging and fixing an ECG monitoring lead wire, characterized by: It comprises a cable buckle assembly (1) and a fixing mechanism for fixing the cable buckle assembly (1) on a lead wire (3), wherein the cable buckle assembly (1) comprises a main buckle (13) and at least two adjustment buckles (14), and the main buckle (13) is longer than the adjustment buckle (14); The main buckle (13) includes a first movable shaft (130), first rows of buckles (131) respectively connected to both sides of the first movable shaft (130), and a connecting structure. The first row of buckles (131) is formed by a plurality of arc-shaped rods (101) arranged axially along the first movable shaft (130). The first rows of buckles (131) on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods (101) of the first rows of buckles (131) on both sides are aligned with each other or staggered. The first rows of buckles (131) on both sides can be opened and closed by the first movable shaft (130). The adjusting buckle (14) includes a second movable shaft (140), second rows of buckles (141) respectively connected to both sides of the second movable shaft (140), and a connecting structure. The second rows of buckles (141) are formed by a plurality of arc-shaped rods (101) arranged axially along the second movable shaft (140). The second rows of buckles (141) on both sides are arranged relative to each other in an inward buckling manner. The arc-shaped rods (101) of the second rows of buckles (141) on both sides are aligned with each other or staggered. The second rows of buckles (141) on both sides can be opened and closed by the first movable shaft (130). The second movable shaft (140) is shorter than the first movable shaft (130), the number of arc-shaped rods (101) of the second row of buckles (141) is smaller than that of the first row of buckles (131), the main buckle (13) and the adjustment buckle (14), and any adjustment buckle (14) are connected at the end by a connecting structure, and the length of the entire cable buckle assembly (1) is controlled by combining and connecting different numbers of adjustment buckles (14) on the main buckle (13).

9. A device for converging and fixing an ECG monitoring lead wire, characterized by: The invention comprises a cable tie buckle assembly (1) and a connecting fixture, wherein the cable tie buckle assembly (1) comprises a plurality of buckles (10), the buckles (10) comprising a movable shaft (100), buckles respectively connected to both sides of the movable shaft (100) and a connecting structure for connecting other buckles (10), wherein the buckles are formed by a plurality of arc-shaped rods (101) arranged axially along the movable shaft (100), the buckles on both sides are arranged relative to each other in an inner buckle manner, the arc-shaped rods (101) of the buckles on both sides are aligned with each other or staggered, and the buckles on both sides are arranged in an inner buckle manner. The movable shaft (100) can be opened and closed; a through hole is provided in the movable shaft (100), and the through hole extends axially along the movable shaft (100) to both ends of the movable shaft (100); the connecting fixing member comprises a Velcro strap (2), and the Velcro strap (2) can be inserted into the through hole. The Velcro strap (2) is passed through the through holes of the plurality of buckles (10) in sequence to connect the plurality of buckles (10) in series. The Velcro strap (2) is extended from the buckles (10) at both ends and can be wound tightly and fixed on the lead wire (3).