Wire storage part of arteriosclerosis detector

By designing wire storage components in the arteriosclerosis detector and using the structure of the rotating arm and connecting plate, the difficulty of storage caused by the long length of the blood pressure cuff wire is solved, efficient storage and rapid access of the wire is achieved, and the efficiency of the equipment is improved.

CN222955424UActive Publication Date: 2025-06-10SHAOXING CENT HOSPITAL GENERAL HOSPITAL OF MEDICAL COMMUNITY
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Patent Information

Application Number
CN202421765398.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-06-10
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

In the arteriosclerosis detector, the wires of the blood pressure cuff are too long, which makes them difficult to store when they hang on the support arm, which affects the efficiency of the equipment.

Method used

A wire storage component is designed, including a base, a column, a detection table, a display screen, a rotating arm, a blood pressure cuff, an electrocardiogram clip and a heart sound probe. Through the fixing head, connecting arm and connecting plate on the rotating arm, efficient storage of the first wire, the second wire and the third wire is achieved.

Benefits of technology

The efficient storage of the first wire, the second wire and the third wire is achieved, avoiding the messy and entangled wires, and at the same time, it is easy to use quickly, improving the efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lead storage part of an arteriosclerosis detector, which comprises a base, an upright post, a detection table, a display screen, a rotating arm, a blood pressure cuff, a first lead, an electrocardio clip, a second lead, a heart sound probe and a third lead, and the rotating arm comprises a fixed head, a first connecting arm and a second connecting arm. One side of the second connecting arm is provided with a first connecting plate for clamping an electrocardio clip, the first connecting plate is provided with a fixing column for winding a second wire and a third wire, one end, far away from the first connecting plate, of the fixing column is provided with a connecting block, and the connecting block is provided with a clamping groove for embedding a heart sound probe; the outer wall of the connecting block is provided with an opening which is communicated with the clamping groove and allows the third wire to pass through, one side, far away from the first connecting plate, of the second connecting arm is provided with a second connecting plate, and the second connecting plate is provided with four connecting columns which allow the four first wires to be wound respectively. The second connecting arm is provided with a pressing assembly used for pressing the first wire wound on the connecting column on the second connecting plate.
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Description

Technical Field

[0001] The utility model belongs to the technical field of medical instruments, and particularly relates to a wire storage component for an arteriosclerosis detector. Background Art

[0002] An arteriosclerosis detector is a medical device used to detect and evaluate the vascular health status. It evaluates the degree of arteriosclerosis by measuring the pulse wave velocity (PWV), thereby helping doctors detect and prevent cardiovascular diseases in a timely manner.

[0003] The arteriosclerosis detector evaluates pathological changes such as arterial wall thickening, increased stiffness, and lumen stenosis by measuring the pulse wave conduction velocity of the brachial artery and the radial artery. These changes may lead to blood flow obstruction and affect organ blood supply and tissue function.

[0004] Currently, a Chinese patent with the publication number CN218201541U and the publication date of January 3, 2023 discloses a wire bundling arm applied to an arteriosclerosis detector, which includes an arm disposed on a workbench, and a wire bundling assembly for restraining the pipelines required for detection is disposed on the arm; several wire bundling assemblies are disposed on the arm, and each wire bundling assembly includes an annular buckle disposed on the arm, and an opening for conveniently clamping the pipeline into the annular buckle is formed in the annular buckle.

[0005] The wire bundling arm applied to the arteriosclerosis detector embeds the pipelines and wires into the annular buckle one by one through the opening of the annular buckle, and restrains each pipeline through the annular buckle, which is beneficial to reducing the messy situation caused by too long pipelines.

[0006] However, since the blood pressure cuff needs to be strapped to the limbs of a lying patient on the hospital bed, the wires of the blood pressure cuff are often long. At this time, it is easy to cause the wires of the blood pressure cuff hanging from the arm to be relatively long, and ultimately it is not conducive to the storage of the wires. Summary of the Utility Model

[0007] The purpose of the utility model is to provide a wire storage component for an arteriosclerosis detector, which is beneficial to the efficient storage of the first wire, the second wire, and the third wire.

[0008] The above technical object of the present utility model is achieved through the following technical solutions: A wire storage component of an arteriosclerosis detector, including a base, a column located on the upper side of the base, a detection table provided on the column, a display screen provided on the column, a rotating arm provided at the upper end of the column, four blood pressure cuffs, a first wire with one end connected to the blood pressure cuff and the other end connected to the detection table, two electrocardiogram clips, a second wire with one end connected to the electrocardiogram clip and the other end connected to the detection table, a heart sound probe, and a third wire with one end connected to the heart sound probe and the other end connected to the detection table. The rotating arm includes a fixed head connected to the upper end of the column, a first connecting arm with one end rotatably connected to the fixed head, and a second connecting arm with one end rotatably connected to the end of the first connecting arm away from the fixed head. A first connecting plate for clamping the electrocardiogram clip is provided on one side of the second connecting arm. A fixing column for winding the second wire and the third wire is provided on the first connecting plate. A connecting block is provided at the end of the fixing column away from the first connecting plate. A card slot for embedding the heart sound probe is provided on the connecting block. An opening communicating with the card slot and for the third wire to pass through is provided on the outer wall of the connecting block. A second connecting plate is provided on the side of the second connecting arm away from the first connecting plate. Four connecting columns for respectively winding four first wires are provided on the second connecting plate. A pressing component for pressing the first wire wound on the connecting column onto the second connecting plate is provided on the second connecting arm.

[0009] The further setting of the present utility model is: The pressing component includes a through hole opened on the second connecting plate and for the connecting column to pass through, a threaded end provided at one end of the connecting column and located below the second connecting arm, an internal thread sleeve provided on the first connecting plate and for the threaded end to be threadedly connected, and a pressing disc provided at the end of the connecting column away from the threaded end and with an outer diameter larger than the cross-sectional outer diameter of the connecting column.

[0010] The further setting of the present utility model is: A knob is provided at the end of the pressing disc away from the connecting column.

[0011] The further setting of the present utility model is: A separating disc with an outer diameter larger than the cross-sectional outer diameter of the fixing column is provided at the middle position of the fixing column.

[0012] The further setting of the present utility model is: A thickening part is provided on the lower side of the first connecting plate.

[0013] The further setting of the present utility model is: A connecting groove for the first wire, the second wire, and the third wire to pass through is opened on the lower surface of the second connecting arm. A fixing plate is provided at the end of the connecting groove away from the first connecting arm. Four wire holes for respectively passing four first wires are provided on the fixing plate.

[0014] The further setting of the utility model is as follows: at both ends of the upper side of the first connecting plate, first connecting holes are provided; at both ends of the upper side of the second connecting plate, second connecting holes are provided; at positions corresponding to the first connecting holes and the second connecting holes on the second connecting arm, mounting holes are provided; between the ends of the first connecting plate and the second connecting plate, there is a connecting bolt that passes through the first connecting hole, the second connecting hole, and the mounting hole and is threadedly connected by a nut, and the screw rod of the connecting bolt supports the first wire, the second wire, and the third wire that penetrate into the connecting groove.

[0015] To sum up, the utility model has the following beneficial effects:

[0016] 1. When the blood pressure cuff, the electrocardiogram clip, and the heart sound probe are not in use, wind the second wire where the electrocardiogram clip is located around the fixed column, and then the electrocardiogram clip can be clamped on the lower side of the first connecting plate, thus completing the efficient storage of the second wire on the first connecting plate; and the third wire where the heart sound probe is located is also wound around the fixed column, and then the heart sound probe can be embedded in the card slot on the connecting block, thus completing the efficient storage of the third wire on the first connecting plate; at the same time, wind the first wire where the blood pressure cuff is located around the corresponding connecting column, and then use the pressing component to press the first wire wound around the connecting column against the second connecting plate. Through the pressing component, the first wire wound around the connecting column can be limited, thus completing the efficient storage of the first wire on the second connecting plate; finally, the efficient storage of the first wire, the second wire, and the third wire can be realized, avoiding the situation that the first wire, the second wire, and the third wire are entangled with each other due to messy placement, and at the same time, it is also beneficial to the quick access of the first wire, the second wire, and the third wire;

[0017] 2. After the first wire is wound around the connecting column, by rotating the pressing disc, the threaded end is driven to rotate towards the inner threaded sleeve. At this time, the pressing disc can approach the second connecting plate side, and then the pressing disc can press the first wire wound around the connecting column against the second connecting plate; and by rotating the pressing disc in the reverse direction, the pressing disc can be driven to move towards the side away from the second connecting plate, thus loosening the first wire;

[0018] 3. Using the knob, the pressing disc can be rotated relatively stably and conveniently;

[0019] 4. The fixed column can separate the second wire and the third wire wound thereon by using the partition disc, avoiding interference between the second wire and the third wire on the fixed column;

[0020] 5. By using the thickened part provided on the lower side of the first connecting plate, the thickened part can play a role in positioning the electrocardiogram clip clamped on the lower side of the first connecting plate, reducing the possibility of the electrocardiogram clip falling off the first connecting plate;

[0021] 6. The connection grooves on the lower surface of the second connecting arm can allow the first wire, the second wire, and the third wire to pass through, thereby restricting the passing of the first wire, the second wire, and the third wire; among them, the four wire holes on the fixing plate can respectively allow four first wires to pass through, thereby playing a role in restricting and positioning the four first wires;

[0022] 7. The first connecting plate and the second connecting plate are threadedly connected by a nut after the connecting bolt passes through the first connecting hole, the second connecting hole, and the mounting hole, and at this time, the detachable connection of the first connecting plate and the second connecting plate on the second connecting arm can be realized; at the same time, the screw rod of the connecting bolt is used to support the first wire, the second wire, and the third wire passing into the connection groove, and the connecting bolt can play a role in supporting the first wire, the second wire, and the third wire passing through the connection groove. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0024] Figure 1 is a schematic structural diagram of the present invention;

[0025] Figure 2 is a partially enlarged view of the connection relationship between the second connecting arm and the first connecting plate in the present invention;

[0026] Figure 3 is a partially enlarged view of the connection relationship between the second connecting arm, the first connecting plate, the second connecting plate, and the pressing assembly in the present invention;

[0027] Figure 4 is a structural cross-sectional view of the connection relationship between the second connecting arm, the first connecting plate, the second connecting plate, and the connecting bolt in the present invention;

[0028] Figure 5 is a plan view of the connection relationship between the second connecting arm, the blood pressure cuff, the first wire, the second connecting plate, and the pressing plate in the present invention. At this time, the first wire is wound around the connecting column and pressed by the pressing plate.

[0029] In the figure, 1 is the base; 11 is the column; 12 is the detection table; 13 is the display screen; 2 is the rotating arm; 21 is the fixing head; 22 is the first connecting arm; 23 is the second connecting arm; 231 is the connecting groove; 232 is the fixing plate; 2321 is the wire hole; 233 is the mounting hole; 3 is the blood pressure cuff; 31 is the first wire; 4 is the electrocardiogram clip; 41 is the second wire; 5 is the heart sound probe; 51 is the third wire; 6 is the first connecting plate; 61 is the fixing column; 611 is the separating disc; 62 is the connecting block; 621 is the clamping groove; 622 is the opening; 63 is the thickened part; 64 is the first connecting hole; 7 is the second connecting plate; 71 is the connecting column; 72 is the second connecting hole; 8 is the pressing component; 81 is the through hole; 82 is the threaded end; 83 is the internal threaded sleeve; 84 is the pressing disc; 841 is the knob; 9 is the connecting bolt. Detailed implementation mode

[0030] The technical solutions in the embodiments will be described clearly and completely below. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0031] A wire storage component of an arteriosclerosis detector, referring to Figure 1 , the wire storage component of this arteriosclerosis detector includes a base 1, a column 11, a detection table 12, a display screen 13, a rotating arm 2, a blood pressure cuff 3, a first wire 31, an electrocardiogram clip 4, a second wire 41, a heart sound probe 5, and a third wire 51. Among them, the base 1 is supported on the ground by self-locking casters, and the column 11 is fixed on the base 1 by bolts and extends in the vertically upward direction. At the same time, the detection table 12 is fixed on the column 11 by bolts, and the display screen 13 is also fixed on the column 11 by bolts. Among them, the rotating arm 2 is located at the upper end of the column 11, and there are four blood pressure cuffs 3. At the same time, one end of the first wire 31 is connected to the blood pressure cuff 3 and the other end is connected to the detection table 12. There are two electrocardiogram clips 4. One end of the second wire 41 is connected to the electrocardiogram clip 4 and the other end is connected to the detection table 12. At the same time, there is one heart sound probe 5, and one end of the third wire 51 is connected to the heart sound probe 5 and the other end is connected to the detection table 12.

[0032] Referring to Figure 1 , the rotating arm 2 includes a fixing head 21, a first connecting arm 22, and a second connecting arm 23. Among them, the fixing head 21 is fixed on the upper end of the column 11 by bolts, and one end of the first connecting arm 22 is rotatably connected to the fixing head 21 through a shaft and a bearing. At the same time, one end of the second connecting arm 23 is rotatably connected to the end of the first connecting arm 22 far from the fixing head 21 through a shaft and a bearing.

[0033] Refer to Figure 1 and Figure 2 , a first connecting plate 6 for clamping by the electrocardiogram clip 4 is provided on one side of the second connecting arm 23, and a thickening portion 63 is integrally provided on the lower side of the first connecting plate 6. A fixing column 61 for winding the second wire 41 and the third wire 51 is welded on the first connecting plate 6, and a partition plate 611 with an outer diameter larger than the outer diameter of the cross section of the fixing column 61 is integrally provided at the middle position of the fixing column 61. At the same time, a connecting block 62 is integrally provided at the end of the fixing column 61 away from the first connecting plate 6, and a card slot 621 for embedding the heart sound probe 5 is provided on the connecting block 62. An opening 622 communicating with the card slot 621 and for the third wire 51 to pass through is provided on the outer wall of the connecting block 62.

[0034] Refer to Figure 1 and Figure 2 and Figure 3 and Figure 5 , a second connecting plate 7 is provided on the side of the second connecting arm 23 away from the first connecting plate 6, and four connecting columns 71 for winding four first wires 31 respectively are provided on the second connecting plate 7. A pressing assembly 8 for pressing the first wire 31 wound on the connecting column 71 onto the second connecting plate 7 is further provided on the second connecting arm 23. The pressing assembly 8 includes a through hole 81, a threaded end 82, an internal thread sleeve 83, and a pressing disc 84. The through hole 81 is provided on the second connecting plate 7 and for the connecting column 71 to pass through, the threaded end 82 is integrally provided at one end of the connecting column 71 and located below the second connecting arm 23, the internal thread sleeve 83 is integrally provided on the first connecting plate 6 and for the threaded end 82 to be threadedly connected, and the pressing disc 84 is integrally provided at the end of the connecting column 71 away from the threaded end 82 and has an outer diameter larger than the outer diameter of the cross section of the connecting column 71. A knob 841 is integrally provided at the end of the pressing disc 84 away from the connecting column 71.

[0035] Refer to Figure 3 and Figure 4, a connection groove 231 for the first wire 31, the second wire 41 and the third wire 51 to pass through is formed on the lower surface of the second connecting arm 23. An fixing plate 232 is integrally provided at one end of the connection groove 231 away from the first connecting arm 22. Four wire holes 2321 for the four first wires 31 to pass through are formed on the fixing plate 232 respectively. At the same time, first connection holes 64 are formed at both ends of the upper side of the first connecting plate 6, and second connection holes 72 are formed at both ends of the upper side of the second connecting plate 7. Mounting holes 233 are formed at the positions corresponding to the first connection holes 64 and the second connection holes 72 on the second connecting arm 23. A connection bolt 9 that passes through the first connection hole 64, the second connection hole 72 and the mounting hole 233 and is threadedly connected by a nut is provided between the ends of the first connecting plate 6 and the second connecting plate 7. The screw of the connection bolt 9 supports the first wire 31, the second wire 41 and the third wire 51 that penetrate into the connection groove 231.

[0036] Principle: When the blood pressure cuff 3, the electrocardiogram clip 4 and the heart sound probe 5 are not in use, the second wire 41 where the electrocardiogram clip 4 is located is wound around the fixed column 61, and then the electrocardiogram clip 4 can be clamped under the first connecting plate 6, so as to complete the efficient storage of the second wire 41 on the first connecting plate 6. The third wire 51 where the heart sound probe 5 is located is also wound around the fixed column 61, and then the heart sound probe 5 can be embedded in the card slot 621 on the connecting block 62, so as to complete the efficient storage of the third wire 51 on the first connecting plate 6. At the same time, the first wire 31 where the blood pressure cuff 3 is located is wound around the corresponding connecting column 71, and then by rotating the pressing disc 84, the threaded end 82 is driven to rotate towards the inside of the internal thread sleeve 83. At this time, the pressing disc 84 can approach the second connecting plate 7 side. Then the pressing disc 84 can press the first wire 31 wound around the connecting column 71 on the second connecting plate 7, so as to complete the efficient storage of the first wire 31 on the second connecting plate 7. Finally, the efficient storage of the first wire 31, the second wire 41 and the third wire 51 can be realized, avoiding the situation that the first wire 31, the second wire 41 and the third wire 51 are wound around each other due to messy placement, and at the same time facilitating the quick access of the first wire 31, the second wire 41 and the third wire 51.

Claims

1. A wire storage component of an arteriosclerosis detector, comprising a base (1), a column (11) located on the upper side of the base (1), a detection table (12) arranged on the column (11), a display screen (13) arranged on the column (11), a rotating arm (2) arranged at the upper end of the column (11), four blood pressure cuffs (3), a first wire (31) having one end connected to the blood pressure cuffs (3) and the other end connected to the detection table (12), two electrocardiogram clips (4), and a first wire (31) having one end connected to the electrocardiogram clip (4) and the other end connected to the detection table (12). A second wire (41) having one end connected to the detection platform (12), a heart sound probe (5), and a third wire (51) having one end connected to the heart sound probe (5) and the other end connected to the detection platform (12), wherein the rotating arm (2) comprises a fixed head (21) connected to the upper end of the column (11), a first connecting arm (22) having one end rotatably connected to the fixed head (21), and a second connecting arm (23) having one end rotatably connected to the first connecting arm (22) at an end away from the fixed head (21), characterized in that: A first connecting plate (6) for clamping the ECG clamp (4) is provided on one side of the second connecting arm (23); a fixing column (61) for winding the second wire (41) and the third wire (51) is provided on the first connecting plate (6); a connecting block (62) is provided at one end of the fixing column (61) away from the first connecting plate (6); a slot (621) for inserting the heart sound probe (5) is provided on the connecting block (62); an opening (622) communicating with the slot (621) and for passing the third wire (51) is provided on the outer wall of the connecting block (62); a second connecting plate (7) is provided on one side of the second connecting arm (23) away from the first connecting plate (6); four connecting columns (71) for winding four first wires (31) are provided on the second connecting plate (7); and a pressing assembly (8) for pressing the first wire (31) wound on the connecting column (71) onto the second connecting plate (7) is provided on the second connecting arm (23).

2. The wire receiving component of the arteriosclerosis detector according to claim 1, characterized in that: The clamping assembly (8) comprises a through hole (81) formed on the second connecting plate (7) and through which the connecting column (71) passes, a threaded end (82) provided at one end of the connecting column (71) and located below the second connecting arm (23), an internal threaded sleeve (83) provided on the first connecting plate (6) and threadedly connected to the threaded end (82), and a clamping plate (84) provided at one end of the connecting column (71) away from the threaded end (82) and having an outer diameter greater than the outer diameter of a cross section of the connecting column (71).

3. The wire receiving component of the arteriosclerosis detector according to claim 2, characterized in that: A knob (841) is provided at one end of the pressing plate (84) away from the connecting column (71).

4. The wire receiving component of the arteriosclerosis detector according to claim 1, characterized in that: A separation plate (611) having an outer diameter greater than the outer diameter of the cross section of the fixing column (61) is provided at the middle position of the fixing column (61).

5. The wire receiving component of the arteriosclerosis detector according to claim 1, characterized in that: A thickened portion (63) is provided on the lower side of the first connecting plate (6).

6. The wire receiving component of the arteriosclerosis detector according to claim 1, characterized in that: A connection slot (231) is provided on the lower surface of the second connection arm (23) for the first wire (31), the second wire (41) and the third wire (51) to pass through, and a fixing plate (232) is provided at one end of the connection slot (231) away from the first connection arm (22), and four wire holes (2321) are provided on the fixing plate (232) for the four first wires (31) to pass through respectively.

7. The wire receiving component of the arteriosclerosis detector according to claim 6, characterized in that: Both ends of the upper side of the first connecting plate (6) are provided with first connecting holes (64), and both ends of the upper side of the second connecting plate (7) are provided with second connecting holes (72). Mounting holes (233) are provided on the second connecting arm (23) at positions corresponding to the first connecting holes (64) and the second connecting holes (72). A connecting bolt (9) is provided between the ends of the first connecting plate (6) and the second connecting plate (7) and is threadedly connected via a nut after passing through the first connecting hole (64), the second connecting hole (72) and the mounting hole (233). The screw of the connecting bolt (9) is used to support the first wire (31), the second wire (41) and the third wire (51) that are inserted into the connecting groove (231).

Citation Information

Patent Citations

  • Bunch support arm applied to arteriosclerosis detector

    CN218201541U