Embedded electrocardiogram monitoring bracelet

By integrating the inpatient wristband with the ECG monitoring bracelet, and adopting a soft breathable strap and a rotating shaft adjustment structure, the problems of wearing discomfort and cleaning and disinfection of the ECG monitoring bracelet are solved, achieving comfortable, safe and accurate multi-function monitoring.

CN223262947UActive Publication Date: 2025-08-26THE FIRST AFFILIATED HOSPITAL OF SUN YAT-SEN UNIV GUANGXI HOSPITAL
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Patent Information

Application Number
CN202422684734.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-08-26
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The strap design of the existing ECG monitoring bracelet is not suitable for postoperative patients, resulting in discomfort and discontinuous monitoring. The traditional strap buckle structure is clean and disinfected in complex, making it difficult to meet hospital hygiene standards.

Method used

The inpatient wristband is fused with the electrocardiogram monitoring bracelet, adopts a soft and breathable strap design, combined with the adhesive layer and the rotary shaft adjustment structure, to achieve convenient installation and disassembly, adapt to changes in the patient's limbs, and is easy to clean and disinfect.

Benefits of technology

It improves wear comfort and monitoring continuity, enhances hygiene safety, is highly adaptable, complies with hospital environmental sanitation standards, and integrates a variety of sensors to improve monitoring accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an embedded electrocardiogram monitoring bracelet and system, and relates to the technical field of electrocardiogram bracelet equipment. Comprising a watch body terminal and a watchband, and an electrocardio sensor, a heart rate sensor, a blood oxygen sensor, a motion sensor, a temperature sensor, a Beidou positioning module, a Bluetooth module, an ultrasonic sensor and a processor are arranged in the watch body terminal; a mounting structure corresponding to the watch body terminal is arranged in the middle of the watchband; the mounting structure comprises a mounting hole penetrating through the watchband and adjusting bands arranged on two sides of the mounting hole, and a first adhesive layer is arranged on the outer side surface of each adjusting band; the watchband is provided with a second bonding layer along the circular ring area of the outer side surface of the mounting hole; the middle of the bottom of the meter body terminal is provided with an acquisition window protruding relatively, and the acquisition window is opposite to the mounting hole in size. The two ends of the terminal of the watch body are provided with long-strip-shaped holes for the adjusting belt to penetrate through. According to the utility model, the problems of wearing comfort, adaptive adjustment, sanitary maintenance and the like of the existing wristband type electrocardiogram monitoring equipment are solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of electrocardiogram bracelet equipment, and particularly relates to an embedded electrocardiogram monitoring bracelet. Background Art

[0002] In recent years, with the advancement of technology, portable ECG monitoring bracelets or watches have emerged, aiming to provide more flexible and convenient monitoring solutions. However, these innovative devices are not perfect: the strap design they use is often borrowed from smart wearable devices, using hypoallergenic materials such as silicone to ensure wearing comfort. Unfortunately, the strap fastening mechanism of these devices causes a lot of discomfort for inpatients in cardiology departments. Postoperative patients are prone to limb edema, and existing strap designs may exacerbate this discomfort and even affect the continuity and accuracy of monitoring due to the need for frequent adjustments. In addition, the hospital environment has strict requirements on hygiene standards, and the traditional strap fastening structure has operational complexity issues when it comes to cleaning and disinfection.

[0003] Furthermore, hospitalization wristbands have become standard equipment in daily hospital management, widely used to identify patients and their health status. Their disposable nature ensures a high degree of hygiene and safety. Therefore, the question of how to integrate hospitalization identification bands with ECG monitoring wristbands to address existing ECG monitoring equipment issues such as wearing comfort, adaptability, and hygienic maintenance is currently being addressed. Utility Model Content

[0004] To address the shortcomings of the aforementioned existing technologies, the present invention provides an embedded ECG monitoring wristband, aiming to address the issues existing wristband-type ECG monitoring devices face in terms of wearing comfort, adaptability, and hygienic maintenance. By integrating a hospitalization wristband with an ECG monitoring wristband, the present invention aims to provide a solution that is both convenient for patients to wear, adaptable to changes in their limbs, and easy to clean and disinfect.

[0005] The specific technical solutions are as follows:

[0006] First, the embedded ECG monitoring bracelet includes a watch body terminal and a watch strap. The watch body terminal is equipped with an ECG sensor, a heart rate sensor, a blood oxygen sensor, a motion sensor, a temperature sensor, a Beidou positioning module, a Bluetooth module and a processor, and the surface of the watch body terminal is provided with control buttons;

[0007] The watch strap is a hospitalization wristband, and a mounting structure corresponding to a terminal of the watch body is provided in the middle of the watch strap; the mounting structure includes a mounting hole for passing the watch strap, and adjustment straps are provided on both sides of the mounting hole, and the outer side of the adjustment strap is provided with a first adhesive layer; the circular area of ​​the watch strap located on the outer side of the mounting hole is provided with a second adhesive layer, and the second adhesive layer is laminated to the terminal of the watch body;

[0008] A relatively raised collection window is provided in the middle of the bottom of the meter body terminal, and the collection window is relatively large in size relative to the mounting hole; long strip holes for the adjustment belt to pass through are provided at both ends of the meter body terminal, so that the adjustment belt can pass through the long strip holes, be folded over, and then be fixed by the first adhesive layer.

[0009] Furthermore, in the above solution, side wings with a third adhesive layer are provided on both sides of the corresponding mounting hole on the watch strap, and the third adhesive layer is provided on the side corresponding to the watch body terminal.

[0010] Furthermore, the above scheme has adjustment structures on the left and right sides of the watch body terminal, and the adjustment structure includes a rotating shaft and a connecting seat. The connecting seat is fixedly connected to the watch body terminal, and one end of the corresponding watch strap is a U-shaped structure. The rotating shaft is rotatably connected to the two ends of the U-shaped structure of the connecting seat, and the long strip hole is formed between the rotating shaft and the connecting seat.

[0011] Furthermore, in the above solution, the strap is made of tear-resistant paper, polyethylene or polyvinyl chloride.

[0012] In the above solution, the side wings include a first side wing and a second side wing, which are located at both ends of the meter body terminal. The first side wing and the second side wing between the two pairs of sides can be wrapped around the meter body terminal and adhered to fix the meter body terminal.

[0013] Furthermore, in the above solution, the middle of the watchband is a tearable portion, the mounting hole is arranged in the middle of the tearable portion, and an easy-tear line is formed between the tearable portion and the watchband to facilitate tearing of the tearable portion.

[0014] Furthermore, the tearable portions on both sides of the strap are provided with elastic cords, and a straight tear line made of adhesive is provided between the elastic cords and the tearable portions; the tearable portions at both ends of the strap are provided with arc-shaped structures; and an annular groove corresponding to the elastic cord and the arc-shaped structure of the strap is provided on the side of the collection window of the watch body terminal, and the arc-shaped structure of the strap after the tearable portion is removed can be fastened in the annular groove through the elastic cord.

[0015] Furthermore, in the above solution, a limiting protrusion is provided in the side of the annular groove corresponding to the elastic rope, and the side of the limiting protrusion corresponding to the elastic rope is an inclined structure, so that the elastic rope can pass through the limiting protrusion and be stuck in the annular groove.

[0016] Furthermore, the above solution can generate a patient ID QR code on the watch terminal, which is used for the PDA terminal to scan and identify the patient's identity information.

[0017] In a second aspect, an embedded ECG monitoring system includes an embedded ECG monitoring system using the embedded ECG monitoring bracelet.

[0018] Compared with the prior art, the beneficial effects of the present invention are:

[0019] This utility model improves and enhances adaptability. Through the structure of the adjustment strap, the user can choose whether to install the watch body terminal after wearing the strap. If the watch body terminal is not installed, the strap functions as a standard ward marking wristband; if the watch body terminal is installed, it becomes an ECG monitoring wristband. The adjustment strap can be tightened after the watch body terminal is aligned with the mounting hole, making it easy to adjust according to installation needs. The watch body terminal housing can be constructed of lightweight materials, making the entire wristband even lighter. The strap can easily adapt to the needs of the patient's limbs and is particularly suitable for patients prone to limb swelling after surgery.

[0020] The utility model improves wearing comfort and adopts a hospital wristband as the watch strap, which is made of soft and breathable material, reducing discomfort caused by long-term wearing.

[0021] The utility model improves hygiene and safety. The disposable feature of the hospitalization wristband ensures a high degree of hygiene and safety. At the same time, it is easy to clean and disinfect, and meets the hygiene standards of the hospital environment.

[0022] The utility model realizes multifunctional integration. The meter terminal integrates multiple sensors and modules, which can monitor the patient's electrocardiogram, heart rate, blood oxygen and other physiological indicators in real time, improving the accuracy and comprehensiveness of monitoring. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic diagram of the bracelet structure;

[0024] Figure 2 yes Figure 1 Middle A partial view;

[0025] Figure 3 It is a schematic diagram of the terminal structure of the meter body;

[0026] Figure 4 1. It is a structural diagram of a watch strap;

[0027] Figure 5 It is another structural diagram and unfolding diagram of the watch strap;

[0028] Figure 6 It is a schematic diagram of the installation structure of the watch strap and the watch body terminal.

[0029] In the accompanying drawings, 1-body terminal, 2-band, 3-adjustment belt, 4-connecting seat, 5-collection window, 6-rotating axis, 7-annular groove, 8-mounting hole, 9-side wing, 10-third adhesive layer, 11-first adhesive layer, 12-second adhesive layer, 13-tearable part, 14-elastic rope, 15-fourth adhesive layer. DETAILED DESCRIPTION

[0030] The following is a further detailed description of the implementation of the utility model in conjunction with the accompanying drawings to make the purpose, technical solution and technical effect of the utility model more clearly presented.

[0031] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0032] like Figure 1-4 As shown, the utility model discloses an embedded ECG monitoring bracelet, including a watch body terminal 1 and a watch strap 2. The watch body terminal 1 is equipped with an ECG sensor, a heart rate sensor, a blood oxygen sensor, a motion sensor, a temperature sensor, a Beidou positioning module, a Bluetooth module and a processor, and control buttons are provided on the surface of the watch body terminal 1.

[0033] Among them, the electrocardiogram (ECG) of the user is monitored in real time through the electrocardiogram (ECG) sensor, helping users understand the health of their heart and promptly detect problems such as arrhythmia. The heart rate sensor can monitor the user's heart rate in real time, accurately recording both resting and exercise heart rate, and providing heart rate data support for the user. The blood oxygen sensor can measure the user's blood oxygen saturation, which is important for assessing respiratory system function and cardiovascular health. Motion sensors, such as accelerometers and gyroscopes, can record the user's exercise data, such as steps, distance, calorie consumption, etc., to help users understand their daily exercise volume.

[0034] The temperature sensor can monitor the user's body temperature or ambient temperature, providing health and environmental information. The Bluetooth module allows for wireless connection to smart devices at the nurse station in the inpatient ward, enabling data synchronization and transmission. Health data recorded by the bracelet can also be viewed through mobile apps, providing timely information on the patient's condition.

[0035] The watch terminal 1 can generate a patient ID QR code, which is used by the PDA terminal to scan and identify the patient's identity information. This allows doctors or nurses to quickly obtain the patient's identity information by scanning the QR code, improving work efficiency and accuracy.

[0036] Here, the watchband 2 is a hospitalization wristband with a mounting structure in the middle of the watchband 2 corresponding to the watch body terminal 1. This mounting structure includes a mounting hole 8 through which the watchband 2 is passed, and adjustment straps 3 disposed on either side of the mounting hole 8. The outer surfaces of the adjustment straps 3 are provided with a first adhesive layer 11. The outer ring area of ​​the watchband 2, located outside the mounting hole 8, is provided with a second adhesive layer 12, which is bonded to the watch body terminal 1. The watchband 2 is made of tear-resistant paper, polyethylene, or polyvinyl chloride.

[0037] In order to facilitate the watch strap 2 to be used as a normal hospital wristband when the watch body terminal 1 is not installed, a hollow hole can be set in the middle of one adjustment strap 3, and the other adjustment strap 3 corresponds to the hollow hole, so that it can be pre-glued to the watch strap 2.

[0038] A relatively raised collection window 5 is provided in the middle of the bottom of the meter body terminal 1, and the collection window 5 is relatively large in size relative to the mounting hole 8; long strip holes for the adjustment belt 3 to pass through are provided at both ends of the meter body terminal 1, so that the adjustment belt 3 can pass through the long strip holes, be folded over, and then be glued and fixed by the first adhesive layer 11.

[0039] The strap 2 features a mounting structure in the middle for securing the watch terminal 1. This structure includes mounting holes 8 for the strap 2 and adjustment straps 3 on either side. These straps 3 are equipped with adhesive layers to securely attach the watch terminal 1 to the strap 2. Furthermore, a data collection window 5 is located at the bottom of the watch terminal 1, allowing the sensor to collect the patient's physiological data. Through a Bluetooth module and processor, this data can be transmitted in real time to a mobile phone, computer, or other terminal device for viewing and analysis by the doctor or patient.

[0040] To further enhance the fixation of the watch body terminal 1 on the watch strap 2 and prevent the watch body terminal 1 from loosening or falling off due to patient movement, side wings 9 with a third adhesive layer 10 are provided on both sides of the watch strap 2 corresponding to the mounting hole 8. The third adhesive layer 10 is provided on the side corresponding to the watch body terminal 1.

[0041] Here, the watch body terminal 1 is provided with an adjustment structure on both sides. The adjustment structure includes a rotating shaft 6 and a connecting seat 4. The connecting seat 4 is fixedly connected to the watch body terminal 1 and has a U-shaped structure at one end of the corresponding watch strap 2. The rotating shaft 6 is rotatably connected to both ends of the U-shaped structure of the connecting seat 4, and the elongated hole is formed between the rotating shaft 6 and the connecting seat 4. The adjustment structure allows the bracelet to more flexibly adapt to changes in the patient's limbs, improving wearing comfort and stability.

[0042] In order to further enhance the side fixing effect of the meter body terminal 1, the side wing 9 includes a first side wing and a second side wing. The first side wing and the second side wing are located at both ends of the meter body terminal 1. The first side wing and the second side wing between the two pairs of sides can be wrapped around the meter body terminal 1 and adhered to form a fixation for the meter body terminal 1.

[0043] like Figure 4-6 As shown, the center of the watchband 2 is a tearable portion 13, with a mounting hole 8 located in the center of the tearable portion 13. A tear line is formed between the tearable portion 13 and the watchband 2 to facilitate removal of the tearable portion 13. Elastic cords 14 are located on both sides of the watchband 2 corresponding to the tearable portion 13, with a straight tear line made of adhesive between the elastic cords 14 and the tearable portion 13. The ends of the watchband 2 corresponding to the tearable portion 13 are curved. The side of the collection window 5 of the watch body terminal 1 is provided with an annular groove 7 corresponding to the elastic cord 14 and the curved structure of the watchband 2. The elastic cord 14 can secure the curved structure of the watchband 2 after the tearable portion 13 is removed in the annular groove 7. A retaining protrusion is provided on the side of the annular groove 7 corresponding to the elastic cord 14. The retaining protrusion is inclined on the side corresponding to the elastic cord 14, making it easier for the elastic cord 14 to pass through the retaining protrusion and snap into the annular groove 7. The introduction of the limiting protrusion here further enhances the fixing effect of the elastic cord 14 in the annular groove 7, preventing the bracelet from loosening or falling off during wearing.

[0044] The elastic cord 14 and the curved structure of the watchband 2 fit into the corresponding annular groove 7. The elastic cord 14 further secures the curved structure of the watchband 2 through its elasticity, thus further integrating the watchband 2 with the watch terminal 1. To remove the watchband, simply pull the ends of the watchband 2 to remove the elastic cord 14 and the curved structure of the watchband 2 from the annular groove 7. The first adhesive layer 11 of the adjustment strap 3 can be made of a multi-adhesive material, allowing the watch terminal 1 to be removed for CT examinations.

[0045] like Figure 6 As shown, a fourth adhesive layer 15 may be further provided at the arc structure of the watch strap 2 for further adhering and fixing the watch body terminal 1 through the fourth adhesive layer 15 after the watch strap 2 is inserted into the annular groove 7 .

[0046] Based on the above solution, an embedded ECG monitoring system can be formed, which is an embedded ECG monitoring system using the embedded ECG monitoring bracelet. The system can be embedded in the existing patient monitoring ward to strengthen the monitoring of the patient's ECG condition.

[0047] In actual use, for example, in a hospital inpatient department, patients wear this embedded ECG monitoring bracelet. The hospitalization wristband on the bracelet clearly displays patient information, making it easy for medical staff to identify. When medical staff need to monitor the patient's ECG, heart rate, and other data, they collect information through the installed and fixed watch terminal. The data is transmitted via a Bluetooth module to the monitoring system at the nurse's station or the doctor's mobile device for immediate viewing. If the patient requires special examinations or treatment, the watch terminal can be removed by tearing off the adjustment strap of the watch band. After the examination, the elastic cord and the circular groove can be quickly reattached. For example, if a patient needs a CT scan of the hand, the bracelet can be removed and then reattached to the patient's wrist after the examination to continue monitoring, ensuring a smooth medical process and continuous data monitoring.

[0048] The above description is only a preferred embodiment of the present invention and is not intended to limit the scope of the patent application of the present invention. All equivalent changes, equivalent replacements or modified changes within the technical spirit and principles suggested by the present invention should be included in the scope of patent protection covered by the present invention.

Claims

1. An embedded ECG monitoring wristband, comprising a wristband and a wristband. The wristband is equipped with an ECG sensor, a heart rate sensor, a blood oxygen sensor, a motion sensor, a temperature sensor, a Beidou positioning module, a Bluetooth module, and a processor. Control buttons are provided on the wristband surface. These features include: The watch strap is a hospitalization wristband, and a mounting structure corresponding to a terminal of the watch body is provided in the middle of the watch strap; the mounting structure includes a mounting hole for passing the watch strap, and adjustment straps are provided on both sides of the mounting hole, and the outer side of the adjustment strap is provided with a first adhesive layer; the circular area of ​​the watch strap located on the outer side of the mounting hole is provided with a second adhesive layer, and the second adhesive layer is laminated to the terminal of the watch body; A relatively raised collection window is provided in the middle of the bottom of the meter body terminal, and the collection window is relatively large in size relative to the mounting hole; long strip holes for the adjustment belt to pass through are provided at both ends of the meter body terminal, so that the adjustment belt can pass through the long strip holes, be folded over, and then be fixed by the first adhesive layer.

2. The embedded ECG monitoring bracelet according to claim 1, characterized in that: Side wings with a third adhesive layer are provided on both sides of the corresponding mounting hole on the watch strap, and the third adhesive layer is provided on the side corresponding to the terminal of the watch body.

3. The embedded ECG monitoring bracelet according to claim 2, characterized in that: An adjustment structure is provided on the left and right sides of the watch body terminal, and the adjustment structure includes a rotating shaft and a connecting seat. The connecting seat is fixedly connected to the watch body terminal, and one end of the corresponding watch strap is a U-shaped structure. The rotating shaft is rotatably connected to the two ends of the U-shaped structure of the connecting seat, and the long strip hole is formed between the rotating shaft and the connecting seat.

4. The embedded ECG monitoring wristband according to claim 1, characterized in that: The strap is made of tear-resistant paper, polyethylene or polyvinyl chloride.

5. The embedded ECG monitoring wristband according to claim 1, characterized in that: The side wings include a first side wing and a second side wing, which are located at both ends of the meter body terminal. The first side wing and the second side wing between the two pairs of sides can be wrapped around the meter body terminal and adhered to form a fixed meter body terminal.

6. The embedded ECG monitoring bracelet according to claim 1, characterized in that: The middle of the watchband is a tearable portion, the mounting hole is arranged in the middle of the tearable portion, and an easy-tear line is formed between the tearable portion and the watchband to facilitate tearing of the tearable portion.

7. The embedded ECG monitoring bracelet according to claim 6, characterized in that: The tearable parts on both sides of the watch strap are provided with elastic ropes, and a straight tear line made of adhesive is provided between the elastic ropes and the tearable parts; the tearable parts at both ends of the watch strap are provided with arc-shaped structures; the side of the collection window of the watch body terminal is provided with an annular groove corresponding to the elastic rope and the arc-shaped structure of the watch strap, and the arc-shaped structure of the watch strap after the tearable part is removed can be fastened in the annular groove through the elastic rope.

8. The embedded ECG monitoring bracelet according to claim 6, characterized in that: A limiting protrusion is provided in the annular groove on a side corresponding to the elastic rope, and the limiting protrusion on the side corresponding to the elastic rope is an inclined surface structure, which facilitates the elastic rope to pass through the limiting protrusion and be clamped into the annular groove.