CN214434235U - Fully compatible electrocardio-electrode matched with silica gel tape for use - Google Patents

Fully compatible electrocardio-electrode matched with silica gel tape for use Download PDF

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Publication number
CN214434235U
CN214434235U CN202023090977.7U CN202023090977U CN214434235U CN 214434235 U CN214434235 U CN 214434235U CN 202023090977 U CN202023090977 U CN 202023090977U CN 214434235 U CN214434235 U CN 214434235U
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CN
China
Prior art keywords
electrode
electrocardio
needle
silica gel
shaped buckle
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Expired - Fee Related
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CN202023090977.7U
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Chinese (zh)
Inventor
孙丽琴
胡正国
曹志刚
李善平
张有为
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Affiliated Renhe Hospital of China Three Gorges University
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Affiliated Renhe Hospital of China Three Gorges University
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Priority to CN202023090977.7U priority Critical patent/CN214434235U/en
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Abstract

A fully compatible electrocardio-electrode matched with a silica gel belt for use comprises an I-shaped buckle and an electrocardio-electrode which are connected with the silica gel belt and provided with six side holes, wherein an I-shaped buckle is formed by an I-shaped buckle column and I-shaped buckle discs at two ends, the center point of an electrode disc of the electrocardio-electrode is upwards connected with the tail end of a vertical needle, the periphery of the electrode disc upwards extends to form an arc edge and then upwards is connected with the back periphery of the electrode, the vertical needle accommodated in an insulating column is vertically and directly connected with a thick needle and a thin needle to form a cross point at the top of the insulating column, and the upper end of the vertical needle is provided with a circular head and a neck of the vertical needle, so that the electrocardio-electrode matched with the silica gel belt for use can be provided, the problem that the absorbed electricity is easy to fall off due to the looseness of the skin of a patient, the collection at a standing position, the non-matching of an infant and the like can be effectively solved, the skin allergy caused by the disposable bonded electrode can be avoided, the electrocardio-electrode has the capability of being matched and being matched with equipment of various specifications and models, simple structure and convenient operation, the efficiency and the effect of electrocardio collection can be improved, and the medical risk is reduced.

Description

Fully compatible electrocardio-electrode matched with silica gel tape for use
Technical Field
The utility model relates to the field of medical equipment, especially, relate to a fully compatible electrocardio electrode that silica gel area cooperation was used.
Background
The common clinical electrocardio-electrodes used conventionally mainly comprise two types, one type is a bowl-shaped metal electrocardio-electrode used for conventional electrocardiogram short-time sampling and can be repeatedly used, and the other type is a disk buckle type electrocardio-electrode used for electrocardiogram monitoring for a long time and is used by one-time pasting. The conventional electrocardiogram chest lead conventionally uses a balloon type negative pressure adsorption mode fixed electrode, the limb lead conventionally uses a wide clip to extrude and fix a metal flat electrode, a lead wire of a firing pin joint is matched, the electrocardiogram monitoring conventionally uses a buckle type soft electrode, and a coil buckle type or clip type lead wire joint is matched. The electrocardio-electrode connecting part has various specifications such as thick needle connection, thin needle connection, coil buckle or clamp connection and the like due to different manufacturers and equipment models. In the electrocardio signal acquisition or monitoring process, for partial patients with thin body, lack of fat and loose skin, the patients can not be acquired in standing position when lying down, infants and special patients with skin allergy to a disposable sticking electrode can not be matched, the problems that the chest lead adsorption electrode is not firmly adsorbed, the electricity is easy to fall off in the working process, the limb lead metal flat electrode clamp can not be attached due to excessive limb thickness of the patients and the like exist, the connection is not matched due to different specifications and models of various equipment electrode connecting parts, the electric signal acquisition process of a clinical work center can not be smoothly carried out, the efficiency is low, even the operation is failed and the like exist, and the development of the electrocardiogram examination or the electrocardio monitoring of partial patients is limited to a certain degree.
Disclosure of Invention
In order to solve the problem, the utility model provides a silica gel takes full compatible electrocardio-electrode that cooperation was used, its aim at provides one kind can take the technical scheme of electrocardio-electrode that the cooperation was used with the silica gel, can effectively solve because of patient's skin is lax, stand position collection, the problem that the absorption electricity that infant did not cooperate etc. and send very easily drops, avoid once only pasting the skin allergy that formula electrode sent, and possess the ability with the equipment adaptation connection of multiple specification and model, increase the comfort of inspection, and simple structure, and convenient operation, it is nimble to use, and is with low costs, can improve the efficiency and the effect that the electrocardio was gathered, reduce medical risk, reduce medical dispute.
In order to realize the purpose, the utility model provides a technical scheme is: a fully compatible electrocardio-electrode matched with a silica gel belt comprises an I-shaped buckle and an electrocardio-electrode which are connected by the silica gel belt provided with a hexagonal hole.
The silica gel area is the silica gel material preparation, possesses elastic long rectangle diaphragm structure, sets up the hexagonal hole of intensive rule arrangement in, and hexagonal hole size slightly is less than the size of worker shape knot dish and electrode back of the body.
In the I-shaped buckle, two ends of a thin cylindrical I-shaped buckle column are connected with expanded and symmetrical short cylindrical I-shaped buckle discs.
In the electrocardio-electrode, the electrode disc is a circular plane structure, and the central point of the electrode disc is upwards connected with the tail end of the vertical needle.
In the electrocardio-electrode, the periphery of the electrode disk extends upwards to form an arc edge, and the arc edge is upwards connected with the periphery of the back of the circular electrode.
The insulating column is a thin cylindrical hollow structure, the inner accommodating vertical needle passes through the insulating column, and the bottom of the circular insulating column is connected with the back of the circular electrode in a mode of overlapping the circle centers.
The circle center of the circular insulating column top is provided with a cross point formed by vertically connecting a thick needle and a thin needle parallel to the plane of the insulating column top.
The vertical needle is vertical to the top of the insulating column and is vertically connected with the thick needle and the thin needle through the cross point.
The top end of the vertical needle is provided with a spherical expanded vertical needle round head, and a vertical needle neck which is locally thinned and is thin and cylindrical is arranged downwards.
The utility model provides a fully compatible electrocardio electrode used with silica gel belt, the circular I-shaped buckle plate with the expanded two ends of the I-shaped buckle and the thin cylindrical I-shaped buckle column penetrate through the hexagonal holes at the two ends of the silica gel belt, so that the silica gel belt can be conveniently and stably fixed to a chest lead distribution area, a limb lead distribution area or an electrocardio acquisition area; the size of the hexagonal hole is slightly smaller than that of the I-shaped buckle plate, and the silica gel belt has elasticity, so that the I-shaped buckle is prevented from falling off from the silica gel belt; the silica gel belt is provided with the densely distributed hexagonal holes, so that the hexagonal holes at any position can be conveniently selected by the I-shaped buckle and the silica gel belt with any length can be conveniently fixed to adapt to human body structures with different positions and sizes. The electrode disc is of a plane structure, is beneficial to fully contacting the skin of a patient, and the circle center is connected with the tail end of the vertical needle, so that the electrocardiosignal can be directly conducted to a cross point; the dense hexagonal holes on the silica gel belt are beneficial to the arbitrary selection of signal acquisition points of the electrocardio-electrode, and the arc-shaped edge which is upwards connected with the periphery of the electrode disk is beneficial to placing the electrocardio-electrode into the hexagonal holes on the silica gel belt; the size of the electrode back is slightly larger than that of the hexagonal hole, and the silica gel belt has elasticity, so that the electrocardio-electrode is favorably fixed on an electrocardio-collecting point and is not easy to fall off, and discomfort is not caused; the insulating column with the hollow thin cylindrical structure is not only beneficial to fixing the electrocardio-electrode by the silica gel tape and not easy to shift, but also can ensure that the vertical needle can conduct electrocardio-signals to a cross point in an insulating state; the bottom of the insulating column is connected to the back of the electrode, which is favorable for firmly supporting the vertical needle, the thick needle and the thin needle, and the top of the insulating column forms a supporting plane with the vertical needle, the thick needle and the thin needle connected as a cross point; the structural design of the cross points is favorable for ensuring that the thick needle, the thin needle and the vertical needle can be connected and conducted randomly to obtain consistent signals; the structures of the round head of the vertical needle and the neck of the vertical needle which are arranged at the upper end of the vertical needle are similar to the structure of the buckled soft electrode tip, thus being beneficial to being adapted to the electrocardiograph monitoring equipment; the thick needle, the thin needle and the vertical needle provide a plurality of connection points and are connected with various models, thereby being beneficial to the compatible use of the electrocardio-electrode to equipment with various specifications and models.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 and 2 are schematic views of the present invention;
in the figure, 1, a vertical needle round head, 2, a vertical needle neck, 3, a vertical needle, 4, a fine needle, 5, an insulating column top, 6, an insulating column bottom, 7, an arc edge, 8, a thick needle, 9, a cross point, 10, an insulating column, 11, an electrode back, 12, an electrode disc, 13, an I-shaped buckle disc, 14, an I-shaped buckle column, 15, a silica gel belt and 16, hexagonal holes are formed.
Detailed Description
As shown in fig. 1 and 2, a fully compatible electrocardio-electrode used with a silica gel strip.
Comprises an I-shaped buckle and an electrocardio-electrode which are connected with a silica gel belt 15 provided with a hexagonal hole 16.
The silica gel belt 15 is a long rectangular film belt structure with elasticity, hexagonal holes 16 which are densely and regularly arranged are formed in the silica gel belt, and the size of the hexagonal holes 16 is slightly smaller than that of the I-shaped buckle disc 13 and the electrode back 11.
In the I-shaped buckle, two ends of a thin cylindrical I-shaped buckle column 14 are connected with an expanded and symmetrical short cylindrical I-shaped buckle disc 13.
In the electrocardio-electrode, an electrode disc 12 is a circular plane structure, and the center point of the circle is upwards connected with the tail end of a vertical needle 3.
In the electrocardio-electrode, the periphery of an electrode disk 12 extends upwards to form an arc-shaped edge 7, and the arc-shaped edge 7 is upwards connected with the periphery of a circular electrode back 11.
The insulating column 10 is a thin cylindrical hollow structure, the vertical needle 3 is accommodated in the insulating column, and the circular insulating column bottom 6 is connected with the circular electrode back 11 in a mode of overlapping the circle centers.
At the center of the circular insulating column top 5, a thick needle 8 and a thin needle 4 are vertically connected in parallel with the plane of the insulating column top 5 to form a cross point 9.
The vertical needle 3 is perpendicular to the insulating column top 5 and is vertically connected with the thick needle 8 and the thin needle 4 through a cross point 9.
The top end of the vertical needle 3 is provided with a spherical expanded vertical needle round head 1, and a vertical needle neck 2 which is locally thinned and cylindrical is arranged downwards.
The utility model discloses a theory of operation and working process as follows:
when the patient lies or stands, the silica gel belt 15 is placed in the electrocardio collection area, after a proper length is selected, the I-shaped buckle disc 13 on one side of the I-shaped buckle penetrates through the hexagonal holes 16 with two aligned ends, and the I-shaped buckle column 14 is placed in the hexagonal holes 16 with two aligned ends, so that the two ends of the silica gel belt 15 are fixed together and are fixed on the skin surface of the electrocardio collection area. After an electrocardio collecting point is selected, an electrode disc 12 and an arc-shaped edge 7 are placed on the surface of skin through a hexagonal hole 16 at the corresponding position, an insulating column 10 connected to an electrode back 11 through an insulating column bottom 6 is placed in the hexagonal hole 16, the electrode back 11 is placed below the hexagonal hole 16, and an elastic silica gel belt 15 presses the electrode back 11 to fix the electrocardio electrode on the body surface. Different connections are selected on the plane cross point 9 of the insulating column top 5 according to equipment, for example, a thick needle 8, a thin needle 4 and a vertical needle 3 are used for carrying out electrocardiosignal acquisition, and the upper end of the vertical needle 3 is provided with a circular head 1 of the vertical needle and a neck 2 of the vertical needle which can be adapted with an electrocardio monitor. After the electrocardiosignal collection is finished, the electrocardio-electrode is taken down from the hexagonal hole 16, the I-shaped buckle is unfastened, and the silica gel belt 15 is taken down.

Claims (1)

1. The utility model provides a silica gel area cooperation is used compatible electrocardio electrode entirely which characterized in that: the electrocardio-electrode comprises an I-shaped buckle and an electrocardio-electrode which are connected on a silica gel belt (15) provided with six-edge holes (16), the silica gel belt (15) is an elastic long rectangular film belt structure, the six-edge holes (16) which are arranged densely and regularly are arranged in the silica gel belt, the size of the six-edge holes (16) is slightly smaller than that of an I-shaped buckle disk (13) and an electrode back (11), in the I-shaped buckle, two ends of a thin cylindrical I-shaped buckle column (14) are connected with an expanded and symmetrical short cylindrical I-shaped buckle disk (13), in the electrocardio-electrode, an electrode disk (12) is in a circular plane structure, a center point is upwards connected with the tail end of a vertical needle (3), the periphery of the electrode disk (12) upwards extends to form an arc edge (7), the arc edge (7) upwards is connected with the periphery of the circular electrode back (11), an insulating column (10) is in a thin cylindrical hollow structure, the vertical needle (3) passes through, and the circular insulating column bottom (6) is connected with the circular electrode back (11) in an overlapped mode, the circle center department of circular shape insulating capital (5), thick needle (8), thin needle (4) are on a parallel with insulating capital (5) plane and connect perpendicularly and form crosspoint (9), and perpendicular to insulating capital (5) of vertical needle (3) and thick needle (8), thin needle (4) are through crosspoint (9) perpendicular connection, and spherical vertical needle button head (1) that enlarges is installed on vertical needle (3) top, is equipped with local tapering, columniform vertical needle neck (2) downwards.
CN202023090977.7U 2020-12-21 2020-12-21 Fully compatible electrocardio-electrode matched with silica gel tape for use Expired - Fee Related CN214434235U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023090977.7U CN214434235U (en) 2020-12-21 2020-12-21 Fully compatible electrocardio-electrode matched with silica gel tape for use

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023090977.7U CN214434235U (en) 2020-12-21 2020-12-21 Fully compatible electrocardio-electrode matched with silica gel tape for use

Publications (1)

Publication Number Publication Date
CN214434235U true CN214434235U (en) 2021-10-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023090977.7U Expired - Fee Related CN214434235U (en) 2020-12-21 2020-12-21 Fully compatible electrocardio-electrode matched with silica gel tape for use

Country Status (1)

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CN (1) CN214434235U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20211022

CF01 Termination of patent right due to non-payment of annual fee