CN215959917U - Novel electrocardiogram lead wire storage device - Google Patents

Novel electrocardiogram lead wire storage device Download PDF

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CN215959917U
CN215959917U CN202122314807.0U CN202122314807U CN215959917U CN 215959917 U CN215959917 U CN 215959917U CN 202122314807 U CN202122314807 U CN 202122314807U CN 215959917 U CN215959917 U CN 215959917U
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pipe
line
ankle
wrist
chest
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CN202122314807.0U
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饶太萍
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First Peoples Hospital of Neijiang
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First Peoples Hospital of Neijiang
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Abstract

The utility model discloses a novel electrocardiogram lead wire storage device, which comprises an ankle wire tube, a wrist wire tube and a chest wire tube; the outer sides of one ends of the ankle line pipe, the wrist line pipe and the chest line pipe are wrapped by the outer wall pipe; the ankle line pipe and the wrist line pipe are straight pipes, and the length of the ankle line pipe is greater than that of the wrist line pipe; the front end of the chest line tube is parallel to the ankle line tube and the wrist line tube, and the rear end of the chest line tube extends upwards and vertically and is arranged above the ankle line tube and the wrist line tube at a right angle; the novel electrocardiogram lead wire storage device is reasonable in structure and is beneficial to being matched with electrocardiogram detection in different occasions; the defects that a plurality of lead wires are mutually wound, knotted and even folded to be damaged are effectively avoided, and detection result errors are reduced; the labor intensity of detection personnel is greatly reduced; the detection period of a single electrocardiogram is shortened, and the comprehensive application effect is good.

Description

Novel electrocardiogram lead wire storage device
Technical Field
The utility model relates to the technical field of medical instruments, in particular to a novel electrocardiogram lead wire storage device.
Background
Electrocardiography is a technique for recording a pattern of changes in electrical activity generated every cardiac cycle of the heart from the body surface by using an electrocardiograph. The electrocardiographic examination can provide basic information of the existing condition of the heart of the patient and provide reference for examination and treatment of medical staff. The conventional electrocardiogram is divided into a single-channel electrocardiogram machine, a three-channel electrocardiogram machine, a six-channel electrocardiogram machine and a twelve-channel electrocardiogram machine according to the number of output channels of a recorder. During routine electrocardiographic examination, a patient is connected with an electrocardiograph through an electrocardiographic lead wire to detect the heart condition of the patient; the lead wire of the electrocardiograph plays an important role in signal transmission; because the number of the lead wires is large, the wires are long, and the situation that the wires are wound, folded and even damaged and are difficult to find in time often occurs in the actual detection and use process; therefore, the error of the transmitted signal is often large due to various reasons of the lead wire, so that the detection result is inaccurate, and the objective judgment of the medical staff is influenced. In addition, detection personnel also need to arrange and summarize the wound lead wires, and the labor intensity of operators is additionally increased.
Therefore, the technical personnel in the field are dedicated to develop a novel electrocardiogram lead wire storage device, and the novel electrocardiogram lead wire storage device aims to solve the problem that the lead wire is easy to wind, knot, fold and damage during electrocardiogram detection in the prior art.
SUMMERY OF THE UTILITY MODEL
In view of the above defects in the prior art, the technical problem to be solved by the present invention is the defect in the prior art that when electrocardiographic examination is performed, the lead wire is wound, knotted, folded and damaged, so that the detected electric signal is unstable, and the detection result is inaccurate.
In order to achieve the aim, the utility model provides a novel electrocardiogram lead wire storage device, which comprises an ankle wire tube, a wrist wire tube and a chest wire tube; the outer side of one end of each of the ankle line pipe, the wrist line pipe and the chest line pipe is wrapped by an outer wall pipe, and anti-collision buffer materials are filled between the outer wall pipe and the ankle line pipe, the wrist line pipe and the chest line pipe inside the outer wall pipe; the ankle line pipe and the wrist line pipe are straight pipes, and the length of the ankle line pipe is greater than that of the wrist line pipe; the front end of the chest line tube is parallel to the ankle line tube and the wrist line tube, and the rear end of the chest line tube extends upwards and vertically and is arranged above the ankle line tube and the wrist line tube at a right angle; the centers of the ankle line pipe, the wrist line pipe and the chest line pipe are hollow, and the pipe walls comprise soft material layers;
the electrocardiogram lead wire storage device comprises a holder below, the holder is in a transverse L shape, and a long edge comprises a screwing bolt;
the wrapping ends of the oval outer wall pipes of the ankle pipe, the wrist pipe and the chest pipe respectively comprise two baffles, the centers of the two baffles comprise circular holes; the periphery of the baffle is buckled with the pipe ports of the ankle pipe, the wrist pipe and the chest pipe;
the chest line tube comprises 2-5 orifices on the chest line tube above the ankle line tube and the wrist line tube;
further, the outer wall pipe is oval or circular;
further, the length of the ankle wire tube is 1.6-1.8 m; the length of the wrist line tube is 1.3-1.5 m; the length of the chest line pipe is 0.3-0.8 m, and the height of the chest line pipe is 0.3-0.8 m;
in a specific embodiment of the utility model, the outer wall tube is oval;
in a specific embodiment of the utility model, the number of orifices on the chest line tube is 3;
in a specific embodiment of the utility model, the anti-collision buffer material is space cotton;
in a specific embodiment of the present invention, the flexible material is a polymer plastic;
by adopting the scheme, the novel electrocardiogram lead wire storage device disclosed by the utility model has the following technical effects:
1. the novel electrocardiogram lead wire storage device respectively stores lead wires in different pipelines according to different use positions, and the outlet positions of ankle wire tubes, wrist wire tubes and chest wire tubes of the storage device are close to the wire connection positions of a detector to the maximum extent according to the average size of a human body; the defects that a plurality of lead wires are mutually wound, knotted and even folded to be damaged are effectively avoided;
2. the novel electrocardiogram lead wire storage device is simple in structure, is clamped and fixed on one side of a sickbed through the clamp holder below, can be matched with different sickbeds of various types for use, and is good in practical applicability; the time for arranging the lead wires by the detection personnel is greatly reduced, the labor intensity of the detection operators is reduced, and the single electrocardiogram detection period is shortened; the comprehensive application effect is good;
in conclusion, the novel electrocardiogram lead wire storage device is reasonable in structure and is beneficial to being matched with electrocardiogram detection beds in different occasions; the defects that a plurality of lead wires are mutually wound, knotted and even folded to be damaged are effectively avoided, and detection result errors are reduced; the labor intensity of detection personnel is greatly reduced; the detection period of a single electrocardiogram is shortened, and the comprehensive application effect is good.
The conception, specific structure, and technical effects of the present invention will be further described in conjunction with the accompanying drawings and specific embodiments, so that the objects, features, and effects of the present invention can be fully understood.
Drawings
FIG. 1 is a schematic structural view of an electrocardiogram lead wire storage device according to the present invention;
FIG. 2 is a right side view schematically illustrating the structure of the electrocardiograph lead wire storage device according to the present invention;
in the figure, 1, ankle conduit; 2. a wrist spool; 3. a chest line tube; 4. an outer wall pipe; 5. a holder; 6. screwing the bolt; 7. a baffle plate; 8. a circular hole; 9. an orifice; 10. a layer of soft material.
Detailed Description
The preferred embodiments of the present invention will be described below with reference to the accompanying drawings for clarity and understanding of technical contents. The present invention may be embodied in many different forms of embodiments and the scope of the utility model is not limited to the embodiments set forth herein.
In the drawings, structurally identical elements are represented by like reference numerals, and structurally or functionally similar elements are represented by like reference numerals throughout the several views. The size and thickness of each component shown in the drawings are arbitrarily illustrated, and the present invention is not limited to the size and thickness of each component. The thickness of the components may be exaggerated where appropriate in the figures to improve clarity.
As shown in fig. 1 to 2, the novel electrocardiogram lead wire storage device of the present embodiment includes an ankle wire tube 1, a wrist wire tube 2, and a chest wire tube 3; the outer sides of one ends of the ankle line pipe 1, the wrist line pipe 2 and the chest line pipe 3 are wrapped by an outer wall pipe 4, and anti-collision buffer material space cotton is filled between the outer wall pipe 4 and the ankle line pipe 1, the wrist line pipe 2 and the chest line pipe 3 inside; the ankle spool 1 and the wrist spool 2 are straight pipes, and the length of the ankle spool 1 is greater than that of the wrist spool 2; the front end of the chest line tube 3 is parallel to the ankle line tube 1 and the wrist line tube 2, and the back end of the chest line tube extends upwards and vertically and is arranged above the ankle line tube and the wrist line tube at a right angle; the centers of the ankle line pipe 1, the wrist line pipe 2 and the chest line pipe 3 are hollow, and the pipe wall comprises a soft material layer 10 made of polymer plastics; the wrapping ends of the oval outer wall pipes of the ankle pipe 1, the wrist pipe 2 and the chest pipe 3 respectively comprise two baffles 7, the baffles 7 are divided into two parts from the middle, and the centers of the baffles comprise circular holes 8; the periphery of the baffle 7 is buckled with the pipe ports of the ankle pipe 1, the wrist pipe 2 and the chest pipe 3; chest conduit 3, comprising 3 orifices 9 on the chest conduit above ankle conduit and wrist conduit;
the lower part of the electrocardiogram lead wire storage device comprises a holder 5, the holder is in a transverse L shape, and the long side comprises a screwing bolt 6;
in the present embodiment, the outer-wall pipe 4 is elliptical;
in this embodiment, the ankle conduit has a length of 1.7 m; the length of the wrist line tube is 1.4 m; the length of the chest line pipe is 0.4m, and the height is 0.5 m;
in this embodiment, the lead wire of the accommodating device is a retractable lead wire;
in the installation process, screwing out the screwing bolt of the holder of the electrocardiogram lead wire storage device of the embodiment, inserting the opening of the holder into the bed plate on the long side of the detection bed, screwing in the screwing bolt to press the bed plate and screwing, and fixing the storage device; the end of the electrocardiogram connecting machine of the telescopic lead wire is positioned outside the baffle of the containing device and is connected with the electrocardiogram machine; the ankle lead wire and the wrist lead wire pass through the horizontal pipe, extend out of the other end of the horizontal pipe and are connected with the clamping electrode; the lead wire in the chest wire tube extends out of the upper opening and is then connected with the suction ball electrode.
When the electrocardiogram lead wire storage device is used, a patient lies on a detection bed, the electrocardiogram lead wire storage device is arranged on one side of the bed, and lead wires are pulled out from the orifices of the ankle wire tube and the wrist wire tube to be clamped and connected to the ankle and the wrist; leading wires are respectively pulled out from the orifices of the chest line pipe above, are fixed on the chest of the patient through the suction ball electrode, and are connected with signals to carry out electrocardiogram detection; and after the detection is finished, the lead is detached for connection, the lead retracts to the pipe orifice of the wire pipe, and the lead is clamped at the pipe orifice through the ball suction electrode and the clamping electrode to wait for the next patient detection.
Through in-service use, the novel heart electrograph line storage device that leads of this application through with lead the line classification accomodate in the spool, avoids leading the line to twine each other, ties. In the whole using process, the condition that electrocardiogram line signals are unstable due to winding and knotting of the lead wires does not occur; the electrode signal transmission is stable, and the detection result is high in accuracy; is beneficial to the accurate proceeding of the subsequent diagnosis.
The foregoing has described in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations could be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions available to those skilled in the art through logic analysis, reasoning and limited experiments based on the prior art according to the concept of the present invention should be within the scope of protection defined by the claims.

Claims (4)

1. A novel electrocardiogram lead wire storage device is characterized by comprising an ankle wire tube (1), a wrist wire tube (2) and a chest wire tube (3); the outer sides of one ends of the ankle line pipe (1), the wrist line pipe (2) and the chest line pipe (3) are wrapped by outer wall pipes (4), and anti-collision buffer materials are filled between the outer wall pipes (4) and the ankle line pipe (1), the wrist line pipe (2) and the chest line pipe (3) inside; the ankle line pipe (1) and the wrist line pipe (2) are straight pipes, and the length of the ankle line pipe (1) is larger than that of the wrist line pipe (2); the front end of the chest line tube (3) is parallel to the ankle line tube (1) and the wrist line tube (2), and the rear end of the chest line tube extends upwards and vertically and is arranged above the ankle line tube and the wrist line tube at a right angle; the centers of the ankle line pipe (1), the wrist line pipe (2) and the chest line pipe (3) are hollow, and the pipe walls comprise soft material layers (10);
the electrocardiogram lead wire storage device comprises a holder (5) below, the holder is in a transverse L shape, and a long side comprises a screwing bolt (6);
the wrapping ends of the oval outer wall pipes of the ankle pipe (1), the wrist pipe (2) and the chest pipe (3) comprise baffle plates (7), the baffle plates (7) are divided into two parts from the middle, and the centers of the baffle plates comprise circular holes (8); the periphery of the baffle (7) is buckled with the pipe ports of the ankle pipe, the wrist pipe and the chest pipe;
chest spool (3) is including 2 ~ 5 drill way (9) on the chest spool of ankle spool and wrist spool top.
2. The novel electrocardiogram lead wire storage device according to claim 1,
the outer wall pipe (4) is oval or circular.
3. The novel electrocardiogram lead wire storage device according to claim 2,
the ankle line pipe (1) is 1.6-1.8 m in length; the length of the wrist line tube (2) is 1.3-1.5 m; the length of the chest line pipe (3) is 0.3-0.8 m, and the height is 0.3-0.8 m.
4. The novel electrocardiogram lead wire storage device according to claim 1,
the anti-collision buffer material is space cotton;
the soft material is polymer plastic.
CN202122314807.0U 2021-09-24 2021-09-24 Novel electrocardiogram lead wire storage device Active CN215959917U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122314807.0U CN215959917U (en) 2021-09-24 2021-09-24 Novel electrocardiogram lead wire storage device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122314807.0U CN215959917U (en) 2021-09-24 2021-09-24 Novel electrocardiogram lead wire storage device

Publications (1)

Publication Number Publication Date
CN215959917U true CN215959917U (en) 2022-03-08

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ID=80570800

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122314807.0U Active CN215959917U (en) 2021-09-24 2021-09-24 Novel electrocardiogram lead wire storage device

Country Status (1)

Country Link
CN (1) CN215959917U (en)

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