Electrocardiograph convenient to use

By designing a mounting plate and a sealing mechanism on the electrocardiograph, the problems of lead wire knotting and tangling were solved, enabling automatic lead wire sorting and positioning, and improving efficiency.

CN223601465UActive Publication Date: 2025-11-28TAIZHOU CITY NO 2 PEOPLES HOSPITAL
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Patent Information

Application Number
CN202422769543.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-11-28
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

Electrocardiographs have a large number of leads, which are prone to tangling and knotting after use, making connection troublesome and affecting efficiency.

Method used

An electrocardiograph (ECG) machine was designed, comprising a mounting plate and a sealing mechanism. The mounting plate has a through groove for placing lead wires, and the sealing mechanism achieves the limiting and sorting of lead wires, including the cooperation of an intercepting rod, a driven gear, and a driving rack, to ensure that the lead wires can be automatically sorted and positioned after use.

Benefits of technology

It enables automatic sorting and positioning of lead wires, reducing the number of steps required by medical staff, facilitating future use, and improving efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electrocardiograph convenient to use, and relates to the technical field of medical instruments, the electrocardiograph comprises an electrocardiograph body and a lead wire body, the electrocardiograph body is electrically connected with the lead wire body, the electrocardiograph further comprises an auxiliary unit, the auxiliary unit comprises a hanging plate, a plurality of through grooves are evenly formed in the hanging plate, and the lead wire body is electrically connected with the hanging plate. A lead wire body can be placed in each through groove, a sealing mechanism for opening or closing the through groove is arranged in each through groove, and each sealing mechanism is used for limiting the lead wire body placed in the corresponding through groove; when a medical worker folds the lead wire bodies, the medical worker places the lead wire bodies in the finger seams, then the medical worker places the lead wire bodies in the through grooves from the finger seams, the lead wire bodies are placed in the through grooves respectively, the lead wire bodies are positioned in the through grooves through the sealing mechanisms, and the lead wire bodies are sealed through the sealing mechanisms. Carding of the lead wire body is achieved, and convenience is brought to medical staff to use the lead wire next time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical equipment technical field, and specifically is a kind of electrocardiograph convenient to use. BACKGROUND

[0002] It is known that electrocardiograph is used to measure, collect, display and record patient's electrocardio signal, and can automatically record bioelectric signal (electrocardio signal) generated by myocardial activation when heart is active, and is a medical electronic instrument commonly used for clinical diagnosis and scientific research. When electrocardiograph is used, electrodes are placed at different parts of human body, and are connected to positive and negative poles of electrocardiograph galvanometer through lead wire, so as to measure, collect, display and record patient's electrocardio signal. Electrocardio lead includes six limb leads and six chest leads. The limb leads include I, II, III, avR, avL and avF, which are respectively placed at wrist and ankle of extremities. The chest leads include V1-V6, which are respectively placed at corresponding positions of chest. Through the connection and cooperation of electrocardio lead and electrocardiograph, electrocardio detection of human body is realized.

[0003] For example, the patent with publication number CN202223226U and publication date May 23, 2012, and the name of "Electrocardiograph Limb Lead Clip Hanging Rod" discloses an electrocardiograph limb lead clip hanging rod, which has an electrocardiograph and a limb lead wire. A limb lead clip hanging rod is arranged on one side of the electrocardiograph, and a limb lead clip is arranged at the front end of the limb lead wire. When the electrocardiograph is not used, the proximal end of the limb lead wire is knotted with a snap fastener, and a proper length is left. The limb lead clip is clamped on the hanging rod, and is taken down when used. This patent avoids the phenomenon that the limb lead wires are knotted with each other, saves examination time, and is convenient for carrying the electrocardiograph.

[0004] The existing technology has the following problems. The number of lead wires on the electrocardiograph is large. When medical staff uses the electrocardiograph each time or after use, the multiple lead wires are easily knotted and wound together, and medical staff needs to recomb the lead wires, so that the connection of the lead wires is troublesome, and the use of the electrocardiograph and the lead wires is affected. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a kind of electrocardiograph convenient to use to solve the above problems in prior art.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: A kind of ECG machine convenient to use, including ECG machine body and lead line body, the ECG machine body is electrically connected with lead line body, further including auxiliary unit, the auxiliary unit includes hanging plate, multiple through slots are evenly provided on the hanging plate, the lead line body can be placed in each through slot, each through slot is provided with a pair of closing mechanism that it is opened or closed, each closing mechanism is positioned to the lead line body placed in through slot.

[0007] The above-mentioned closing mechanism includes an intercepting rod and a driven gear, a recess is formed in the sidewall of each through slot, a positioning shaft is installed in each recess, a driven gear is rotatably installed on each positioning shaft, and an intercepting rod is provided on each driven gear. The two corresponding intercepting rods in the same through slot are in contact with each other to achieve the closure of the through slot.

[0008] The above-mentioned through slot is provided with a driving rack, and the driving rack and the corresponding driven gear are in meshing engagement.

[0009] The above-mentioned connection slot is in communication with each through slot, and a connecting plate is slidably installed in the connection slot.

[0010] The connecting plate and the inner wall of the connection slot are connected by a plurality of first elastic members evenly arranged therebetween.

[0011] An arc slot is formed in the connecting plate.

[0012] A slide rail is provided on the sidewall of the ECG machine body.

[0013] The hanging plate is slidably arranged on the slide rail.

[0014] A positioning slot is formed in the bottom side of the hanging plate, a straight plate is slidably arranged in the positioning slot, a plurality of suction cups are evenly arranged on the straight plate, and each suction cup is in mutual adsorption with the inner wall of the slide rail.

[0015] A U-shaped rod is arranged on the straight plate, the U-shaped rod is slidably arranged in the positioning slot, and the straight plate and the inner wall of the positioning slot are connected by a plurality of second elastic members evenly arranged therebetween.

[0016] The utility model discloses beneficial effect lies in: when the medical staff gathers the lead line body, the medical staff places the lead line body in the finger gap, then the medical staff places the lead line body from each finger gap to the through slot, makes the lead line body place respectively to each through slot, positions the lead line body in the through slot through the closed mechanism, realizes the carding of lead line body, and it is convenient for the medical staff to take and use next time. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiment of the present application or prior art, the following will briefly introduce the drawing needed to be used in the embodiment, obviously, the drawing in the following description only is some embodiment of the utility model, for the ordinary skilled person in the art, still can obtain other drawings according to these drawings.

[0018] Figure 1 It is the partial solid structure schematic diagram of the utility model;

[0019] Figure 2 It is the partial solid structure schematic diagram of one embodiment provided by the utility model;

[0020] Figure 3 It is the partial section structure schematic diagram of the first visual angle of another embodiment provided by the utility model;

[0021] Figure 4 It is the partial section structure schematic diagram of one embodiment provided by the utility model;

[0022] Figure 5 It is the partial section structure schematic diagram of the M of the utility model; Figure 4

[0023] Figure 6 It is the partial section structure schematic diagram of the intercepting rod in the open through slot state of the utility model;

[0024] Figure 7 It is the partial section structure schematic diagram of another embodiment provided by the utility model;

[0025] Figure 8 It is the partial section structure schematic diagram of each intercepting rod in another embodiment provided by the utility model and is provided with the separation rod;

[0026] Figure 9 It is the partial section structure schematic diagram of another embodiment provided by the utility model and the intercepting rod in the open through slot state;

[0027] Figure 10 It is the partial section structure schematic diagram of the second visual angle of another embodiment provided by the utility model.

[0028] ​Explanation of reference signs:

[0029] 1, ECG machine body; 2, hanging plate; 3, through slot; 4, intercepting rod; 5, driven gear; 6, groove; 7, positioning shaft; 8, through slot; 9, driving rack; 10, connecting groove; 11, connecting plate; 12, first elastic member; 13, cambered groove; 14, slide rail; 15, positioning groove; 16, straight plate; 17, suction cup; 18, U-shaped rod; 19, second elastic member; 20, square groove; 21, separation rod. DETAILED DESCRIPTION

[0030] In order for those skilled in the art to better understand the technical scheme of the utility model, the utility model will be further described in detail below in combination with the drawings.

[0031] As Figures 1 to 10 shown, the utility model embodiment provides a kind of ECG machine convenient to use, including ECG machine body 1 and lead wire body, the ECG machine body 1 is electrically connected with lead wire body, it is characterized by further including auxiliary unit, the auxiliary unit includes hanging plate 2, multiple through slots 3 are evenly provided on the hanging plate 2, each the lead wire body can be placed in each described through slot 3, each described through slot 3 is each arranged with the closure mechanism that it is opened or closed, each described closure mechanism is positioned to the lead wire body for limiting processing placed in through slot 3.

[0032] Specific, the electrocardiograph body 1 is the instrument that human (also namely patient) carries out electrocardiogram detection, the lead line body is the link of connecting electrocardiograph body 1 and patient's body, can transmit the electrocardiosignal of human body to electrocardiograph body 1, the hanging plate 2 is L type board or straight faceplate, the hanging plate 2 is evenly provided with multiple through slots 3, the number of through slots 3 is preferably 4, each through slot 3 corresponds with the finger slit of human body, also namely the position of through slot 3 and the position of the finger slit of human body one to one correspondence, the through slot 3 can place the lead line body, the closure mechanism includes intercepting rod 4 and driven gear 5, each through slot 3 both sides wall each is provided with a recess 6, each recess 6 each installs a positioning shaft 7, each positioning shaft 7 each rotationally installs a driven gear 5, each driven gear 5 each is provided with an intercepting rod 4, the two corresponding intercepting rods 4 in the same through slot 3 are in contact with each other and are connected, realize the closure of through slot 3;Each through slot 3 bottom each is provided with a through slot 8, each through slot 8 each is slidably installed with a driving rack 9, each driving rack 9 and the corresponding driven gear 5 are engaged with each other;The hanging plate 2 is located at the bottom of all through slots 3 and is provided with a connecting groove 10, the connecting groove 10 and each described through slot 8 are interconnected, the connecting groove 10 is slidably installed with a connecting plate 11, the connecting plate 11 and each described driving rack 9 are interconnected;The connecting plate 11 and the inner wall of connecting groove 10 are connected by the even setting multiple first elastic members 12;The arc slot 13 is arranged on the connecting plate 11 and is matched with the back of the hand of a human body, when the medical staff collects the lead body, the medical staff places the lead body between the finger joints, then the medical staff places the hand on the arc slot 13 of the connecting plate 11, the medical staff drives the connecting plate 11 to slide downwards along the track of the connecting slot 10 by the back of the hand, the connecting plate 11 compresses the first elastic member 12 (the first elastic member 12 is an original member capable of elastic reset, preferably a spring) to make the first elastic member 12 in a compressed state, meanwhile, the connecting plate 11 drives the driving rack 9 to slide downwards along the track of the through slot 8, the driving rack 9 and the driven gear 5 are matched with each other, the driving rack 9 drives the driven gear 5 to rotate by 90 degrees, the driven gear 5 drives the intercepting rod 4 to rotate by 90 degrees, the intercepting rod 4 rotates into the recess 6, that is, the intercepting rod 4 opens the opening of the through slot 3, then the medical staff slides the lead body between the finger joints to the bottom of the through slot 3, the medical staff releases the pressure on the connecting plate 11, the first elastic member 12 pushes the connecting plate 11 to slide upwards along the track of the connecting slot 10 under the elastic reset of the first elastic member 12, the connecting plate 11 drives the driving rack 9 to slide upwards along the track of the through slot 8, the driving rack 9 drives the driven gear 5 to rotate by 90 degrees, the driven gear 5 drives the intercepting rod 4 to rotate by 90 degrees, the intercepting rod 4 rotates out of the recess 6, that is, the intercepting rod 4 closes the opening of the through slot 3, the intercepting rod 4 clamps and limits the lead body in the through slot 3, the lead body is combed, and it is convenient for the medical staff to take and use next time, when the medical staff needs to take out the lead body, the medical staff presses the connecting plate 11 to slide downwards along the track of the connecting slot 10 by one hand, the connecting plate 11 drives the intercepting rod 4 to rotate by 90 degrees through the driving rack 9 and the driven gear 5, the intercepting rod 4 rotates into the recess 6, that is, the intercepting rod 4 opens the opening of the through slot 3, the medical staff clamps the lead body in each through slot 3 by the finger joints of the other hand respectively, the lead body can be respectively between the finger joints of the medical staff, it is convenient for the medical staff to classify the lead body and connect the lead body with the electrocardiograph body 1.

[0033] The prior art has the problem that the number of leads on the electrocardiograph is large, and the leads are easily knotted and wound together every time the medical staff uses or after using, so that the medical staff needs to comb the leads again, the connection of the leads is troublesome, and the use of the electrocardiograph and the leads is affected.

[0034] The beneficial effect of the embodiment is that when the medical staff retracts the lead wire body, the medical staff places the lead wire body in the finger gap, and then the medical staff places the lead wire body from each finger gap into the through groove 3, so that the lead wire body is placed into each through groove 3, and the lead wire body is positioned in the through groove 3 through the closing mechanism, the lead wire body is combed, and it is convenient for the medical staff to take and use next time.

[0035] In another embodiment of the utility model, the side wall of the electrocardiograph body 1 is provided with a sliding rail 14; the hanging plate 2 is slidingly arranged on the sliding rail 14; the bottom side of the hanging plate 2 is provided with a positioning groove 15, and a straight plate 16 is slidingly arranged in the positioning groove 15; the straight plate 16 is uniformly provided with a plurality of suction cups 17, and each suction cup 17 is mutually adsorbed with the inner wall of the sliding rail 14; the straight plate 16 is provided with a U-shaped rod 18, the U-shaped rod 18 is slidingly arranged in the positioning groove 15, and the straight plate 16 and the inner wall of the positioning groove 15 are connected through a plurality of second elastic elements 19.

[0036] Specifically, when the medical staff needs to hang the hanging plate 2 on the electrocardiograph body 1, the medical staff pulls the U-shaped rod 18 to slide to the outer end of the positioning groove 15, the U-shaped rod 18 drives the straight plate 16 to slide to the outer end of the positioning groove 15, so that the straight plate 16 extrudes the second elastic element 19 (the second elastic element 19 is an element capable of elastic reset, preferably a spring), so that the second elastic element 19 is in a compressed state, the straight plate 16 drives the suction cup 17 to slide to the inner end of the positioning groove 15, the medical staff slidingly installs the hanging plate 2 in the sliding rail 14, so that the hanging plate 2 slides to the appropriate installation position (that is, the end of the hanging plate 2 and the end of the sliding rail 14 are mutually abutted), the medical staff releases the pulling of the U-shaped rod 18, under the rebounding action of the second elastic element 19, the second elastic element 19 pushes the straight plate 16 to slide to the side close to the sliding rail 14, the straight plate 16 drives the suction cup 17 to adsorb on the sliding rail 14, through the adsorption of the suction cup 17 on the sliding rail 14, the suction cup 17 and the straight plate 16 limit the hanging plate 2 to a certain extent, realizing the stable installation of the hanging plate 2.

[0037] When the hanging plate 2 needs to be installed at other positions (such as a wall, an electrocardiograph cart), the suction cup 17 can also be adsorbed on the wall or the electrocardiograph cart, that is, the medical staff pulls the U-shaped rod 18 to slide to the outer end of the positioning groove 15, the U-shaped rod 18 drives the straight plate 16 to slide to the outer end of the positioning groove 15, so that the straight plate 16 extrudes the second elastic member 19, and the second elastic member 19 is in a compressed state, the straight plate 16 drives the suction cup 17 to slide to the inner end of the positioning groove 15, the medical staff aligns the hanging plate 2 with a suitable position on the wall or the electrocardiograph cart, then the medical staff releases the pulling of the U-shaped rod 18, under the rebounding action of the second elastic member 19, the second elastic member 19 pushes the straight plate 16 to slide to the side close to the wall or the electrocardiograph cart, the straight plate 16 drives the suction cup 17 to be adsorbed on the wall or the electrocardiograph cart, through the adsorption of the suction cup 17 on the wall or the electrocardiograph cart, the suction cup 17 and the straight plate 16 limit the hanging plate 2 to a certain extent, and the stable installation of the hanging plate 2 is realized.

[0038] In another embodiment of the utility model, a side wall of one of the intercepting rods 4 in the same through groove 3 is provided with a square groove 20, and a separation rod 21 is rotatably installed in each square groove 20. Figure 7 and Figure 8 When the two intercepting rods 4 in the same through groove 3 close the through groove 3 (as shown in the figure), the separation rod 21 on the intercepting rod 4 rotates under the action of its own gravity, so that the separation rod 21 divides the accommodating space composed of the inner wall of the through groove 3 and the two intercepting rods 4 into two different spaces, so that the lead body can be combed again in the through groove 3, and uniform distribution and placement of the lead body are realized. Figure 9 When the intercepting rod 4 is in the open position in the through groove 3 (as shown in the figure), the separation rod 21 on the intercepting rod 4 rotates under the action of its own gravity, and the separation rod 21 rotates into the square groove 20 on the intercepting rod 4, so that the separation rod 21 does not affect the placement of the lead body in the through groove 3.

[0039] The above has only described certain exemplary embodiments of the present application by way of illustration, and it is needless to say that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application for those skilled in the art. Therefore, the above drawings and descriptions are illustrative in nature, and should not be understood as limiting the scope of protection of the claims of the present application.

Claims

1. A convenient electrocardiograph, comprising an electrocardiograph body and a lead wire body, the electrocardiograph body being electrically connected with the lead wire body, characterized in that, The auxiliary unit comprises a hanging plate, a plurality of through slots are uniformly arranged on the hanging plate, a lead wire body is arranged in each through slot, a closing mechanism is arranged in each through slot to open or close the through slot, and the closing mechanism limits the lead wire body arranged in the through slot. The closing mechanism comprises an intercepting rod and a driven gear, a recess is arranged on the side wall of each through slot, a positioning shaft is arranged in each recess, a driven gear is rotatably arranged on the positioning shaft, an intercepting rod is arranged on each driven gear, and the two corresponding intercepting rods in the same through slot are in contact with each other to close the through slot. A through groove is arranged at the bottom end of each through slot, a driving rack is slidably arranged in each through groove, and the driving rack and the corresponding driven gear are in meshing engagement. A connecting groove is arranged at the bottom end of all the through slots on the hanging plate, the connecting groove and the through groove are in communication, a connecting plate is slidably arranged in the connecting groove, and the connecting plate and the driving rack are in connection. The connecting plate and the inner wall of the connecting groove are connected by a plurality of first elastic members.

2. The ECG machine of claim 1, wherein, An arc groove is arranged on the connecting plate.

3. The ECG machine of claim 1, wherein, A slide rail is arranged on the side wall of the electrocardiograph body.

4. The electrocardiograph of claim 3, wherein, The hanging plate is slidably arranged on the slide rail.

5. The electrocardiograph of claim 4, wherein, A positioning groove is arranged at the bottom side of the hanging plate, a straight plate is slidably arranged in the positioning groove, a plurality of suction cups are uniformly arranged on the straight plate, and each suction cup is in suction with the inner wall of the slide rail.

6. The electrocardiograph of claim 5, wherein, A U-shaped rod is arranged on the straight plate, the U-shaped rod is slidably arranged in the positioning groove, and the straight plate and the inner wall of the positioning groove are connected by a plurality of second elastic members.

Citation Information

Patent Citations

  • Limb lead clip suspension rod for electrocardiograph

    CN202223226U