Dynamic electrocardiogram examination monitoring wearing device
By designing a compact and lightweight dynamic electrocardiogram (ECG) monitoring device, the problem of large size and complexity of traditional ECG testing equipment has been solved. This allows patients to wear the device themselves and transmit data in real time, improving the efficiency and accuracy of arrhythmia detection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-03-27
AI Technical Summary
Existing ECG monitoring equipment is bulky and complex to use, cannot quickly transmit and view data, and requires stress testing in a hospital, making it impossible to simulate daily physiological and psychological stress, which makes it difficult to detect arrhythmias.
A compact and lightweight dynamic electrocardiogram (ECG) monitoring device was designed, including a recorder and sensor components. It uses a silicone connecting sleeve and an ultra-thin ECG sensor, and is equipped with a buckle design. It supports real-time data transmission and viewing, and simplifies the operation process.
It improves the detection rate of arrhythmias, simplifies the operation process, enables patients to wear it themselves and transmit data in real time, shortens the diagnosis time, is suitable for various life scenarios, and has high data accuracy.
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Figure CN224039222U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of electrocardiogram medical sensor, concretely is a dynamic electrocardiogram examination monitoring wearing device. BACKGROUND
[0002] Arrhythmia is a common symptom, but it is difficult to detect. The traditional method is to use an electrocardiograph (EKG), and the patient must complete the detection in the hospital, including a stress test. The problem is that arrhythmia does not occur as you want it to occur, and the stress test in the hospital, such as making the user run for 15 minutes on a treadmill, is different from the physiological and psychological stress that the patient encounters in daily life. The electrocardiogram medical sensor commonly seen on the market is relatively large in size, relatively complex to use, has more processes, and cannot quickly transmit and view data.
[0003] Therefore, it is necessary to provide a dynamic electrocardiogram examination monitoring wearing device to solve the above technical problems. UTILITY MODEL CONTENT
[0004] The utility model solves the technical problem to provide a dynamic electrocardiogram examination monitoring wearing device which is simple to operate, convenient to wear, can greatly improve the detection rate of arrhythmia, can be worn by the patient at any time, and can transmit and view data, and simplifies the operation process of arrhythmia.
[0005] To solve the above technical problems, the utility model provides a dynamic electrocardiogram examination monitoring wearing device, which comprises:
[0006] A recorder, which comprises a recorder host and a sensor component, is used to record and monitor related data;
[0007] The recorder host comprises a shell, a first circuit board is arranged in the inner cavity of the shell, a connecting antenna and a light guide column are arranged on the circuit board, and are used for signal reception and transmission;
[0008] The sensor component comprises a connecting sleeve which is buckled to the bottom of the shell, an installation groove is arranged in the connecting sleeve, five adapter copper columns are arranged in the installation groove and are used for transmitting electrical signals, an adhesive tape is arranged at the bottom of the connecting sleeve, an electrocardiogram sensor is arranged on the adhesive tape and is used for collecting electrocardiogram data, PU waterproof membranes are arranged on both sides of the adhesive tape and are used for enhancing the adhesion and waterproof performance of the sensor, and water gels are further arranged on the PU waterproof membranes and are used for adhering to human skin;
[0009] The recorder data box is divided into a bottom bin and a bin cover, the bottom bin and the bin cover are hingedly connected, and the bottom bin and the bin cover are provided with a placing groove for placing the recorder host;
[0010] The material of the connecting sleeve is silica gel material, which has good flexibility and durability, the two ends of the connecting sleeve are also provided with clamping blocks, the bottom of the shell is provided with grooves corresponding to the clamping blocks, which is used for realizing stable buckle connection, the two ends of the connecting sleeve are provided with buckling plates, the buckling plates are connected with the clamping blocks, and the buckling plates are convenient for users to take off the buckle connection, and the sensor is installed or taken off.
[0011] Preferably, the shape of the placing groove corresponds to the shape of the recorder host, so as to ensure stable placement of the recorder host.
[0012] Preferably, the bottom bin is provided with a data interface on one side, which is used for connecting with external equipment for data transmission.
[0013] Preferably, a second circuit board is arranged in the bottom bin, and the second circuit board is connected with the data interface circuit.
[0014] Preferably, five receiving copper columns are arranged on the second circuit board, the receiving copper columns are connected with the corresponding interfaces at the bottom of the recorder host and penetrate the bottom bin, which is used for realizing circuit connection and data transmission.
[0015] Preferably, the thickness of the electrocardio sensor is 0.05 mm, which is used for ensuring low sensitivity and comfort of the sensor.
[0016] Compared with the prior art, the utility model has the advantages that:
[0017] 1、The utility model discloses a small and light, convenient for patient to wear at any time, can realize the continuous monitoring of patient's electrocardio signal, thereby greatly improve the detection rate of heart arrhythmia and other heart diseases.
[0018] 2、Through the connection of the recorder data box and external equipment, the device can realize real-time transmission and remote viewing of electrocardio data, doctors or patient's family members can obtain the electrocardio data of patients through mobile phones or computers and other equipment at any time and any place, make diagnosis or take corresponding measures in time, effectively shorten the diagnosis time, and improve the treatment efficiency.
[0019] 3、The electrocardio sensor of the utility model is ultra-thin and non-inductive, light in weight, and has no burden for long-time wearing, is suitable for various social life scenes, is waterproof and anti-interference through a PU waterproof film, is waterproof and sweatproof, reduces the influence of external factors on electrocardio signals, improves the reliability of data, realizes quick installation and dismounting through buckle and buckling plate design, and simplifies the operation process. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings are used to provide further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation to the present application. In the drawings:
[0021] Fig. 1 is a three-dimensional structural schematic diagram of the present application;
[0022] Fig. 2 is a structural schematic diagram of a recorder data box of the present application;
[0023] Fig. 3 is a structural schematic diagram of a data interface of the present application.
[0024] In the drawings: 1, recorder; 11, recorder host; 12, sensor component; 123, connecting sleeve; 124, adhesive tape; 125, electrocardiogram sensor; 126, clamping block; 127, buckle plate; 128, adapter copper column; 2, recorder data box; 21, bottom bin; 22, bin cover; 23, data interface; 24, receiving copper column. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0026] Please refer to Figs. 1 to 3 The present application provides a technical solution: a dynamic electrocardiogram examination and monitoring wearing device comprises:
[0027] The recorder 1 and the recorder data box 2;
[0028] The recorder 1 is composed of the recorder host 11 and the sensor component 12. The recorder host 11 comprises a shell, and a first circuit board is arranged in the inner cavity of the shell. A connecting antenna and a light guide column are arranged on the circuit board, and are used for receiving and transmitting signals. The bottom of the shell is designed to be connected with the clamping buckle structure of the sensor component 12.
[0029] The sensor component 12 comprises a connecting sleeve 123 which is snap-connected with the bottom of the shell. The connecting sleeve 123 is internally provided with a mounting groove, and five adapter copper columns 128 are arranged in the mounting groove for transmitting electrical signals. The bottom of the connecting sleeve 123 is provided with an adhesive tape 124, and an electrocardio sensor 125 is arranged on the adhesive tape 124 for collecting electrocardio data. The thickness of the electrocardio sensor 125 is 0.05 mm, which ensures low sensitization and comfort of the sensor. PU waterproof films are arranged on both sides of the adhesive tape 124 to enhance the adhesion and waterproof performance of the sensor. The PU waterproof films are further coated with hydrogel for adhering to human skin and improving the signal collection effect.
[0030] In this embodiment, the connecting sleeve 123 is made of silica gel material, which has good flexibility and durability. The two ends of the connecting sleeve 123 are provided with clamping blocks 126, and the bottom of the shell is provided with grooves corresponding to the clamping blocks 126 for realizing stable snap connection. The two ends of the connecting sleeve 123 are further provided with buckling plates 127 which are connected with the clamping blocks 126. The buckling plates 127 are designed to facilitate the user to remove the snap connection and install or remove the sensor.
[0031] In this embodiment, the recorder data box 2 is divided into a bottom bin 21 and a bin cover 22 which are hingedly connected. The bottom bin 21 and the bin cover 22 are provided with placing grooves which correspond in shape to the shape of the recorder main machine 11 to ensure stable placement of the recorder main machine 11. One side of the bottom bin 21 is provided with a data interface 23 for connecting with external equipment for data transmission. The bottom bin 21 is internally provided with a second circuit board which is electrically connected with the data interface 23. The second circuit board is provided with five receiving copper columns 24 which penetrate through the bottom bin 21 and are connected with the corresponding interfaces at the bottom of the recorder main machine 11 for realizing circuit connection and data transmission.
[0032] Firstly, the recorder main machine 11 is connected with the sensor component 12 through the clamping blocks 126. At this time, the five adapter copper columns 128 in the mounting groove are connected with the corresponding interfaces at the bottom of the recorder main machine 11, and the device can start working. When the patient wears the device, the electrocardio sensor 125 is closely adhered to the patient's body surface through the hydrogel, which can capture the patient's cardiac electrical activity in real time and convert it into electrical signals. The collected electrocardio signals are transmitted to the first circuit board in the recorder main machine 11 through the internal circuit of the sensor component 12.
[0033] When it is necessary to check or analyze the electrocardio data of the patient, the recorder main machine 11 can be removed from the sensor component 12 due to the flexibility of the silica gel material of the connecting sleeve 123 by pressing the buckling plates 127 downward. Then, the recorder main machine 11 is placed in the placing groove of the recorder data box 2, and the bin cover 22 is closed. At this time, the recorder main machine 11 is electrically connected with the second circuit board in the recorder data box 2 through the receiving copper column 24 interface.
[0034] Through the data interface 23 on one side of the data box 2 of the recorder, the external device such as a computer is connected by using a data line, and the electrocardio data stored in the recorder host 11 is exported, and further analysis, processing and diagnosis are carried out.
[0035] In summary, the dynamic electrocardio examination monitoring and wearing device is small and light, is convenient to wear at any time, improves the detection rate of arrhythmia, supports real-time data transmission at the same time, and shortens the diagnosis time.
[0036] Through the ultra-thin design of the sensor, wearing is comfortable and burden-free, the silicone connecting sleeve is flexible and durable, adapts to various wearing scenes, PU waterproof film is adopted, effective waterproof and sweat prevention are realized, external interference is reduced, and data accuracy is ensured.
[0037] Through the buckle and buckle plate design, quick installation and disassembly are realized, and the operation process is simplified.
[0038] A more efficient and comfortable solution is provided for monitoring and treatment of heart diseases.
[0039] It should be noted that the equipment structure and the drawings mainly describe the principle of the utility model, and the setting of the power mechanism, the power supply system and the control system of the device is not completely described in the design principle technology, and under the premise that the above-mentioned principle of the utility model is understood by the person skilled in the art, the specific of the power mechanism, the power supply system and the control system can be clearly known, and the control mode of the application file is automatically controlled through the controller, and the control circuit of the controller can be realized by simple programming of the person skilled in the art;
[0040] The standard parts used can be purchased from the market, and can be ordered according to the description and drawings, and the specific connection mode of each part adopts the conventional bolt, rivet, welding and other conventional means in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the components known by the person skilled in the art, the structure and principle thereof are known by the person skilled in the art through technical manual or conventional experimental method.
[0041] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations or direct or indirect application can be made to these embodiments without departing from the principle and spirit of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents, and the same reason includes the patent protection range of the utility model.
Claims
1. A dynamic electrocardiogram examination monitoring wearing device, characterized in that, Including: Recorder (1), the recorder (1) includes recorder host (11) and sensor component (12); The recorder host (11) includes a shell, a first circuit board is arranged in the cavity of the shell, a connecting antenna and a light guide column are arranged on the circuit board; The sensor component (12) includes a connecting sleeve (123) buckled with the bottom of the shell, an installation groove is arranged in the connecting sleeve (123), five adapter copper columns (128) are arranged in the installation groove, an adhesive tape (124) is arranged at the bottom of the connecting sleeve (123), an electrocardiogram sensor (125) is arranged on the adhesive tape (124), PU waterproof membranes are arranged on both sides of the adhesive tape (124), and hydrogels are further arranged on the PU waterproof membranes; The recorder data box (2) is divided into a bottom bin (21) and a bin cover (22), the bottom bin (21) and the bin cover (22) are hingedly connected, and the bottom bin (21) and the bin cover (22) are provided with a placing groove for placing the recorder host (11); The connecting sleeve (123) is made of silica gel, the connecting sleeve (123) is further provided with clamping blocks (126) at both ends, the bottom of the shell is provided with grooves corresponding to the clamping blocks (126), the connecting sleeve (123) is provided with buckling plates (127) at both ends, and the buckling plates (127) are connected with the clamping blocks (126).
2. The dynamic electrocardiogram examination monitoring wearing device according to claim 1, characterized in that, The shape of the placing groove corresponds to the shape of the recorder host (11).
3. The dynamic electrocardiogram examination monitoring wearing device according to claim 2, characterized in that, One side of the bottom bin (21) is provided with a data interface (23).
4. The dynamic electrocardiogram examination monitoring wearing device according to claim 3, characterized in that, The second circuit board is arranged in the bottom bin (21) and is electrically connected with the data interface (23).
5. The dynamic electrocardiogram examination monitoring wearing device according to claim 4, characterized in that, Five receiving copper columns (24) are arranged on the second circuit board, the receiving copper columns (24) penetrate through the bottom bin (21) and are connected with corresponding interfaces at the bottom of the recorder host (11).
6. The dynamic electrocardiogram examination monitoring wearing device according to claim 5, characterized in that, The thickness of the electrocardiogram sensor (125) is 0.05mm.