Cardiology department nursing monitoring strap

By introducing pressure and triboelectric sensors into the cardiology nursing monitoring strap, the problem of detector displacement was solved, the stability and accuracy of monitoring data were achieved, and the treatment effect was ensured.

CN223541924UActive Publication Date: 2025-11-14陈婷婷
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Patent Information

Application Number
CN202422794056.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-11-14
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

During use, the detectors on the cardiology nursing monitoring strap may shift due to patient movement or loosening, leading to inaccurate monitoring data and affecting diagnostic and treatment outcomes.

Method used

A cardiology nursing monitoring strap was designed, which includes a pressure sensor and a triboelectric sensor for detector displacement and alerts the patient or healthcare worker to make adjustments via an audible and visual alarm. It also ensures close contact between the monitor and the skin, and includes an anti-slip pad and a return spring for stable connection.

Benefits of technology

This effectively reduces the risk of inaccurate monitoring data caused by detector displacement, ensures the accuracy of physiological data, and avoids incorrect diagnostic and treatment decisions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of monitoring straps, and particularly relates to a cardiology nursing monitoring strap which comprises a monitoring strap body, the monitoring strap body comprises a chest strap and two shoulder straps, a mounting hole is formed in one side of the monitoring strap body, a monitor is connected to the inner wall of the mounting hole in a clamped mode, an electrode plate is arranged on one side of the monitor, and the electrode plate is connected with the chest strap. A connecting rod is installed at one end of the electrode plate, a plurality of nursing sensing modules are installed in the monitor, and an inner sliding groove is formed in the monitor; looseness and movement displacement generated between the monitor and a patient are detected through the touch pressure sensor, so that the audible and visual alarm starts to give an alarm, the patient or a medical worker is timely reminded to tidy the straps and suggest that the movement range and strength of the patient are reduced, and it is guaranteed that physiological monitoring of the patient is stable; and the situation that a doctor may make wrong diagnosis and treatment decisions according to wrong data due to inaccurate monitored physiological data caused by displacement of the monitor, so that the treatment effect is affected is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of monitoring strap technology, specifically relating to a cardiology nursing monitoring strap. Background Technology

[0002] A cardiology monitoring strap is a wearable device used by cardiology patients to monitor their physiological parameters and provide some auxiliary treatment functions. The monitoring strap is typically equipped with sensors such as electrocardiogram (ECG) sensors, heart rate sensors, and respiration sensors to collect the patient's physiological signals. When wearing the monitoring strap, cardiology patients may engage in activities such as turning over, sitting up, or walking, which may cause the sensors to shift on their body. Improper adjustment of the strap or loosening during use can also cause sensor shifting. Sensor shifting may lead to inaccurate physiological data, potentially causing doctors to make incorrect diagnoses and treatment decisions based on erroneous data, thus affecting treatment outcomes. Utility Model Content

[0003] This invention provides a cardiology nursing monitoring strap, which facilitates timely response to the impact of detector displacement on monitoring data.

[0004] This utility model provides the following technical solution: a monitoring strap including a chest strap and two shoulder straps. A mounting hole is provided on one side of the monitoring strap, and a monitor is engaged with the inner wall of the mounting hole. An electrode pad is provided on one side of the monitor, and a connecting rod is installed at one end of the electrode pad. Several nursing sensor modules are installed inside the monitor, and an inner groove is provided inside the monitor. A pressure sensor is installed in the inner groove, and the connecting rod is slidably connected to the inner wall of the inner groove. The pressure sensor contacts one side of the connecting rod. An audible and visual alarm is installed on the other side of the monitor, and the pressure sensor transmits an opening / closing signal to the audible and visual alarm via a circuit.

[0005] The monitoring strap has an anti-slip pad fixedly connected to the side near the electrode pad, and the anti-slip pad has a clearance hole, with the electrode pad engaging with the inner wall of the clearance hole.

[0006] A return spring is installed on the inner wall of the inner groove, and one end of the return spring is fixedly connected to the side wall of the connecting rod.

[0007] Among them, a signal transmission line is provided between several of the nursing sensing modules and the connecting rod, and several clearance slots corresponding to the inner sliding groove space are opened and closed in the monitor, and the touch pressure sensor is located inside the corresponding clearance slot.

[0008] The monitor is equipped with several triboelectric sensors arranged in a circular array. The positions of the triboelectric sensors do not correspond to those of the electrode plates. The triboelectric sensors transmit activation and deactivation signals to the audible and visual alarm wirelessly.

[0009] The monitor is fixedly connected to an outer side with a mounting ring, which is flush with one side of the monitor and is installed inside the mounting hole.

[0010] The beneficial effects of this invention are: by using a touch pressure sensor to detect loosening and displacement between the monitor and the patient, the sound and light alarm is activated, promptly reminding the patient or medical staff to adjust the strap and suggesting that the patient reduce the range and intensity of movement, thus ensuring stable physiological monitoring of the patient and reducing the possibility that the monitor displacement may lead to inaccurate physiological data, which could cause doctors to make incorrect diagnoses and treatment decisions based on incorrect data, thereby affecting the treatment effect.

[0011] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0012] Figure 1 This is a three-dimensional exploded structural diagram of the present invention;

[0013] Figure 2 This is a top view enlarged cross-sectional schematic diagram of the monitor in this utility model;

[0014] Figure 3 This is a rear-view magnified structural diagram of the monitor in this utility model;

[0015] Figure 4 for Figure 2 Enlarged schematic diagram of part A in the middle.

[0016] In the diagram: 1. Monitoring shoulder strap; 11. Chest strap; 12. Shoulder strap; 13. Mounting hole; 2. Monitor; 21. Electrode pad; 211. Connecting rod; 22. Nursing sensor module; 221. Signal transmission line; 23. Inner slide groove; 231. Clearance groove; 24. Touch pressure sensor; 25. Return spring; 26. Triboelectric sensor; 3. Anti-slip pad; 31. Clearance hole; 4. Audible and visual alarm; 5. Mounting ring. Detailed Implementation

[0017] Please see Figures 1-4The present invention provides the following technical solution: a monitoring strap 1, which includes a chest strap 11 and two shoulder straps 12. A mounting hole 13 is provided on one side of the monitoring strap 1, and a monitor 2 is connected to the inner wall of the mounting hole 13. An electrode plate 21 is provided on one side of the monitor 2, and a connecting rod 211 is installed at one end of the electrode plate 21. Several nursing sensor modules 22 are installed inside the monitor 2. An inner groove 23 is provided inside the monitor 2, and a touch pressure sensor 24 is installed inside the inner groove 23. The connecting rod 211 is slidably connected to the inner wall of the inner groove 23, and the touch pressure sensor 24 is in contact with one side of the connecting rod 211. An audible and visual alarm 4 is installed on the other side of the monitor 2, and the touch pressure sensor 24 transmits an opening and closing signal to the audible and visual alarm 4 through a circuit.

[0018] In this implementation scheme: the monitoring strap 1 is secured to the patient via a chest strap 11 and shoulder straps 12. The mounting hole 13 corresponds to the patient's heart position and accommodates the monitor 2, ensuring the monitor 2 aligns with the patient's heart area. The monitor 2 supports several nursing sensor modules 22. These nursing sensor modules 22 contact the patient's skin at the heart area via electrode pads 21. Each nursing sensor module 22 includes an ECG sensor, heart rate sensor, respiration sensor, blood pressure sensor, and blood oxygen saturation sensor, allowing the patient's physiological data to be transmitted to the nursing sensor modules 22 for sensing and analysis, thereby monitoring the patient's health. The electrode pads 21 are connected to the monitor 2 via a connecting rod 211. An anti-slip pad 3 limits the connection rod 211 to prevent the electrode pads 21 from detaching from the monitor 2. When in use, sensor 24 is pressed by connecting rod 211, enabling it to sense changes in the position of electrode pad 21 and monitor 2. When the patient's carrying strap becomes loose or moves, causing monitor 2 to shift from its original position on the skin, the distance between monitor 2 and the skin changes, increasing the distance between the pressure sensor 24 and connecting rod 211. This allows the pressure sensor 24 to trigger a signal to the audible and visual alarm 4, activating the alarm and promptly reminding the patient or medical staff to adjust the carrying strap and suggest reducing the patient's range and intensity of activity. This ensures stable physiological monitoring of the patient and reduces the risk of inaccurate physiological data due to monitor 2 shifting, which could lead to incorrect diagnoses and treatment decisions by doctors, thus affecting treatment outcomes.

[0019] An anti-slip pad 3 is fixedly connected to the side of the monitoring strap 1 near the electrode pad 21. The anti-slip pad 3 has a clearance hole 31, and the electrode pad 21 is engaged with the inner wall of the clearance hole 31. When the monitor 2 is in use, it contacts the patient's skin through the anti-slip pad 3, which increases the frictional resistance between the monitor 2 and the patient's skin, thereby reducing the occurrence of monitor 2 displacement. In addition, the electrode pad 21 is engaged into the clearance hole 31 under pressure during use, so that the electrode pad 21 and the anti-slip pad 3 can maintain a uniform plane, ensuring that both the electrode pad 21 and the anti-slip pad 3 can have good contact with the skin.

[0020] A return spring 25 is installed on the inner wall of the inner slide groove 23. One end of the return spring 25 is fixedly connected to the side wall of the connecting rod 211. The return spring 25 pushes the connecting rod 211 outward, so that when the strap is loose, the electrode plate 21 can be pulled apart from the monitor 2, so that the touch pressure sensor 24 can stably sense the occurrence of the situation and improve the monitoring sensitivity.

[0021] Signal transmission lines 221 are provided between several nursing sensing modules 22 and connecting rods 211. Several clearance slots 231 corresponding to the space of the inner sliding groove 23 are opened and closed inside the monitor 2. The touch pressure sensor 24 is located inside the corresponding clearance slot 231. The nursing sensing module 22 is movably connected to the electrode plate 21 through the signal transmission lines 221, so that the electrode plate 21 can stably transmit data between the nursing sensing module 22 and the monitor 2 during the change of the distance between the electrode plate 21 and the monitor 2, thereby improving the stability of the monitoring.

[0022] The monitor 2 is equipped with several triboelectric sensors 26 arranged in a circular array. The positions of the triboelectric sensors 26 and the electrode plates 21 are not corresponding. The triboelectric sensors 26 transmit opening and closing signals to the audible and visual alarm 4 wirelessly. When the anti-slip mat 3 is in contact with the skin, the triboelectric sensors 26 are also in contact with the skin. The triboelectric sensors 26 are within the coverage area of ​​the anti-slip mat 3 and the skin, so that the skin and the anti-slip mat 3 can maintain relative stability. When the monitor 2 slides laterally against the skin, the triboelectric sensors 26 can detect the displacement in time, so that the triboelectric sensors 26 can transmit the displacement signal to the audible and visual alarm 4 in time, so that the audible and visual alarm 4 can sound an alarm.

[0023] A mounting ring 5 is fixedly connected to the outside of the monitor 2. The mounting ring 5 is flush with one side of the monitor 2 and is installed inside the mounting hole 13. The monitor 2 is installed inside the mounting hole 13 through the mounting ring 5. The mounting ring 5 and the mounting hole 13 can be connected and fixed by various means such as buckles and bolts, so that the monitor 2 and the chest strap 11 can be installed and disassembled for flexible use.

[0024] The working principle and usage process of this utility model: The monitoring strap 1 is bound to the patient through the chest strap 11 and shoulder strap 12. The chest strap 11 and shoulder strap 12 are fixed together, allowing the monitor 2 to be in close contact with the patient's skin. The monitor 2 compresses the electrode pad 21, allowing it to enter the space of the clearance hole 31. The electrode pad 21 and the anti-slip pad 3 maintain a uniform plane, ensuring good contact between both. The nursing sensing module 22 is connected to the electrode pad 21 via the signal transmission line 221. This allows the electrode pad 21 to stably transmit data to the nursing sensing module 22 during changes in the distance between it and the monitor 2, improving monitoring stability. When the monitor 2 makes contact with the skin... When the device slides, the triboelectric sensor 26 can promptly detect the displacement and transmit the displacement signal to the audible and visual alarm 4, causing the alarm 4 to sound an alarm. When the patient's carrying strap becomes loose or moves, causing the monitor 2 to shift from its original position on the skin, the distance between the monitor 2 and the skin changes, and the end of the pressure sensor 24 extends, triggering the audible and visual alarm 4 to sound an alarm. This promptly reminds the patient or medical staff to adjust the carrying strap and suggests that the patient reduce the range and intensity of their activities, ensuring stable physiological monitoring of the patient. This reduces the possibility that the displacement of the monitor 2 might lead to inaccurate physiological data, which could cause doctors to make incorrect diagnoses and treatment decisions based on erroneous data, thus affecting the treatment outcome.

Claims

1. A cardiology nursing monitoring harness, comprising a monitoring harness (1), wherein the monitoring harness (1) includes a chest strap (11) and two shoulder straps (12), characterized in that: The monitoring strap (1) has a mounting hole (13) on one side, and a monitor (2) is attached to the inner wall of the mounting hole (13). An electrode plate (21) is provided on one side of the monitor (2), and a connecting rod (211) is installed at one end of the electrode plate (21). Several nursing sensor modules (22) are installed inside the monitor (2). An inner groove (23) is provided inside the monitor (2), and a touch pressure sensor (24) is installed inside the inner groove (23). The connecting rod (211) is slidably connected to the inner wall of the inner groove (23), and the touch pressure sensor (24) is in contact with one side of the connecting rod (211). An audible and visual alarm (4) is installed on the other side of the monitor (2), and the touch pressure sensor (24) transmits an opening and closing signal to the audible and visual alarm (4) through a circuit.

2. The cardiology nursing monitoring harness according to claim 1, characterized in that: The monitoring strap (1) has an anti-slip pad (3) fixedly connected to the side of the electrode plate (21) near the electrode plate (21). The anti-slip pad (3) has a clearance hole (31) and the electrode plate (21) is engaged with the inner wall of the clearance hole (31).

3. A cardiology nursing monitoring harness according to claim 1, characterized in that: A return spring (25) is installed on the inner wall of the inner groove (23), and one end of the return spring (25) is fixedly connected to the side wall of the connecting rod (211).

4. A cardiology nursing monitoring harness according to claim 1, characterized in that: A signal transmission line (221) is provided between each of the nursing sensing modules (22) and the connecting rod (211). The monitor (2) has several clearance slots (231) that correspond to the space of the inner slide groove (23). The touch pressure sensor (24) is located inside the corresponding clearance slot (231).

5. A cardiology nursing monitoring harness according to claim 1, characterized in that: The monitor (2) is equipped with several triboelectric sensors (26), which are arranged in a circular array. The positions of the triboelectric sensors (26) and the electrode plate (21) are not corresponding. The triboelectric sensors (26) transmit the opening and closing signals to the sound and light alarm (4) wirelessly.

6. A cardiology nursing monitoring harness according to claim 1, characterized in that: A mounting ring (5) is fixedly connected to the outside of the monitor (2). The mounting ring (5) is flush with one side of the monitor (2) and is installed inside the mounting hole (13).