Safety monitoring wrist strap

By designing a safety monitoring wristband that includes detection mechanism and communication functions, the problem of insufficient safety monitoring and wear comfort of existing monitoring and early warning wristbands is solved, real-time monitoring of patient positioning and physiological parameters is achieved, and data accuracy and medical communication efficiency are improved.

CN120392011APending Publication Date: 2025-08-01SHENZHEN SECOND PEOPLES HOSPITAL (SHENZHEN INST OF TRANSLATIONAL MEDICINE)
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Patent Information

Application Number
CN202510455578.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

The existing monitoring and early warning medical wristbands cannot achieve safety monitoring, and the wearing comfort and data detection accuracy are insufficient.

Method used

A safety monitoring wristband is designed, including a host, a first wristband and a second wristband. The host is equipped with a detection mechanism, a touch display screen and a sensor, which can monitor the physiological parameters of the patient in real time, and connect it to the hospital medical platform to set up range of activities alerts and communication functions.

Benefits of technology

It realizes accurate positioning of the patient's location and real-time monitoring of physiological parameters, which facilitates medical staff to understand the patient's status, improves wear comfort and data detection accuracy, and promptly solves communication problems between medical staff and patients.

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Patent Text Reader

Abstract

The invention relates to the technical field of medical instruments, in particular to a safety monitoring wrist strap which comprises a host, a first wrist strap is arranged at one end of the host, a second wrist strap is arranged at the other end of the host, a touch display screen is arranged at the top end of the host, and a mainboard is arranged in the host. A clamping groove, a lithium battery, a receiving module and a transmission module are sequentially arranged on the surface of the mainboard, a detection mechanism is arranged at the bottom end of the host, and an infrared sensor, a temperature sensor, a photoelectric sensor and a light emitting diode are sequentially arranged on the surface of the detection mechanism; the beneficial effects are that the host is connected with the hospital medical care platform, the activity range allowed by the host is set in the medical care platform software, the host refreshes the positioning information in real time and displays the positioning information in the medical care platform software, and when the positioning information exceeds the activity range, the medical care platform gives an alarm to remind medical staff. Therefore, the effect of accurately positioning the position of the patient is achieved, nursing is facilitated, and accidents are avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and particularly to a safety monitoring wristband. Background Art

[0002] Medical devices refer to instruments, equipment, apparatuses, in vitro diagnostic reagents and calibrators, materials, and other similar or related items that are directly or indirectly used on the human body, including the required computer software. Medical devices include medical equipment and medical consumables. Their effects are mainly obtained through physical means, not through pharmacological, immunological, or metabolic means, or although these means are involved, they only play an auxiliary role.

[0003] A novel medical wristband for monitoring and warning disclosed in the Chinese utility model patent application publication number CN 221635771 U includes a monitor and a first wristband and a second wristband respectively connected to both sides thereof. A plurality of ventilation slots are evenly spaced on both the first wristband and the second wristband. The adjustment holes on the first wristband and the second wristband, the fixing ring, and the adjustment rod can be adjusted according to the thickness of the patient's wrist guard. At the same time, the airbag block fits with the patient's wrist, making the first wristband and the second wristband firmly fixed and improving the wearing comfort. Also, the monitor is closely attached to the human body under the action of the airbag block, ensuring the accuracy of data detection. The sweat-absorbing cotton sheet contacts the patient's skin, preventing pressure sores from occurring during long-term use of the airbag block and improving the wearing comfort. When the affected area sweats during wearing, the sweat is absorbed by the sweat-absorbing cotton sheet, so that the first wristband and the second wristband do not shake due to sweat, further improving the accuracy of data detection. However, the novel medical wristband for monitoring and warning cannot achieve the effect of safety monitoring. Summary of the Invention

[0004] The purpose of the present invention is to provide a safety monitoring wristband to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solutions:

[0006] A safety monitoring wristband, comprising:

[0007] A main unit, one end of the main unit is provided with a first wristband, the other end of the main unit is provided with a second wristband, a touch display screen is arranged on the top end of the main unit, a main board is arranged inside the main unit, a card slot, a lithium battery, a receiving module, and a transmission module are sequentially arranged on the surface of the main board, a detection mechanism is arranged at the bottom end of the main unit, and an infrared sensor, a temperature sensor, a photoelectric sensor, and a light-emitting diode are sequentially arranged on the surface of the detection mechanism.

[0008] Preferably, grooves are formed at both ends of the host. A first wristband is snap-connected to one end of the host, and a second wristband is snap-connected to the other end of the host. Both the first wristband and the second wristband are snap-connected inside the grooves.

[0009] Preferably, a plurality of adjustment holes are evenly formed on the surface of the first wristband. A buckle is fixedly connected to the other end of the second wristband. The buckle and the adjustment holes are cooperatively connected to each other. A touch display screen is fixedly connected to the top end of the host.

[0010] Preferably, a volume adjustment knob is rotatably connected above one side of the host. A microphone is fixedly connected below the volume adjustment knob on one side of the host. A power button is fixedly connected to the middle of one side of the host. A speaker is fixedly connected below one side of the host.

[0011] Preferably, a main board is fixedly connected inside the host. A card slot is fixedly connected to one side of the main board. A lithium battery is fixedly connected to the other side of the main board. A receiving module is fixedly connected above the card slot on the main board. A transmission module is fixedly connected below the card slot on the main board.

[0012] Preferably, a detection mechanism is fixedly connected to the bottom end of the host. An infrared sensor is fixedly connected to one side of the detection mechanism. A temperature sensor is fixedly connected to one end of the detection mechanism. A photoelectric sensor is fixedly connected to the other side of the detection mechanism. A light-emitting diode is fixedly connected to the other end of the detection mechanism.

[0013] Preferably, a usage method of the safety monitoring wristband includes:

[0014] S1: First, snap the first wristband and the second wristband into the grooves respectively, and then snap the buckle on the surface of the second wristband into a suitable adjustment hole on the surface of the first wristband to wear the host on the patient's wrist. Through the setting of the adjustment holes, it can be worn by different people, making the detection mechanism at the bottom end of the host fit more closely to the patient's wrist, so as to achieve a more accurate detection of the patient's physiological parameters by the subsequent detection mechanism;

[0015] S2: Then insert the SIM card into the card slot and power on the host through the power button to enable the host to perform network configuration. Then store the patient's personal information in the host's internal system and connect the host to the hospital's medical staff platform. The patient's name and brief information about the patient's condition can be displayed in real time on the host's display screen, facilitating different medical staff to confirm the patient's information. At the same time, the detailed information about the patient's condition is recorded at the hospital's server end. The changes in the patient's condition and daily doctor's orders can also be modified and recorded at the hospital's server sub-end. A QR code of the patient can also be displayed on the host's display screen. The server sub-end of the medical staff can enter the information database of the hospital terminal through the QR code to view the detailed changes in the patient's condition and doctor's orders, and can also query the patient's previous conditions and doctor's orders. The patient's family members can also scan the code with their mobile phones to enter the hospital mini-program to view the daily doctor's orders;

[0016] S3: Set the allowed activity range of the host in the medical staff platform software. The host refreshes the positioning information in real time and displays it in the medical staff platform software. When the positioning information exceeds the activity range, the medical staff platform will issue an alarm to remind the medical staff, thus achieving the effect of accurately positioning the patient's location, facilitating care, and avoiding accidents. When the medical staff needs to communicate with the patient or the patient's family members, the medical staff can directly shout at the host through the medical staff platform terminal. Conversely, the patient or the patient's family members can also directly shout at the medical staff platform through the host, thus achieving a more convenient communication effect and further achieving the effect of timely problem-solving;

[0017] S4: The testing agency continuously detects the patient's physiological parameters. The infrared rays generated by the light-emitting diode are irradiated to the patient's blood vessel position, and then the infrared sensor receives the transmission or reflection of the blood vessel and the blood flow signal to obtain the patient's real-time heart rate. The photoelectric sensor collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor continuously detects the patient's body temperature information, and synchronizes these physiological parameters into the medical staff platform system through the transmission module, thus achieving the effect of facilitating medical staff to understand the patient's physiological signs. And these data will be transmitted to the hospital's big data platform, and doctors can retrieve the reference data at any time, thus achieving a more effective treatment effect.

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

[0019] By connecting the host to the hospital's medical staff platform, setting the allowed activity range of the host in the medical staff platform software, refreshing the positioning information in real time and displaying it in the medical staff platform software, when the positioning information exceeds the activity range, the medical staff platform will issue an alarm to remind the medical staff, the present invention achieves the effect of accurately positioning the patient's location, facilitating care, and avoiding accidents;

[0020] When medical staff needs to communicate with patients or their family members, the medical staff can directly shout at the host through the medical platform terminal. Conversely, patients or their family members can also directly shout at the medical platform through the host, thus achieving a more convenient communication effect and further achieving the effect of timely problem-solving.

[0021] By displaying the patient's name, basic information about the patient's disease, and the patient's personal QR code on the host, medical staff can confirm the patient through the name and basic information on the host and enter the information page for recording the patient's condition changes and medical orders in the hospital server terminal through the mobile device in the medical staff's hand, so as to facilitate the medical staff to distribute medicines and communicate precautions to the patient's family members. The patient's family members can also scan the QR code with their mobile phones to enter the hospital mini-program to view the daily medical orders.

[0022] Through the setting of the detection mechanism, during use, the detection mechanism continuously detects the patient's physiological parameters. The infrared rays generated by the light-emitting diodes irradiate the patient's blood vessel position, and then the infrared sensor receives the transmission or reflection of the blood vessels and the blood flow signal to obtain the patient's real-time heart rate. The photoelectric sensor collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor continuously detects the patient's body temperature information, and synchronizes these physiological parameters into the medical platform system through the transmission module, thus achieving the effect of facilitating medical staff to understand the patient's physiological signs. And these data will be transmitted to the hospital big data platform, and doctors can retrieve the reference data at any time, thus achieving a more effective treatment effect. Brief Description of the Drawings

[0023] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;

[0024] Figure 2 It is a front structure schematic diagram of the host of the present invention;

[0025] Figure 3 It is an internal structure schematic diagram of the host of the present invention;

[0026] Figure 4 It is a back structure schematic diagram of the host of the present invention;

[0027] Figure 5 It is a data transmission flow chart of the host of the present invention.

[0028] In the figure: 1. Main unit; 101. Groove; 2. First wristband; 201. Adjustment hole; 3. Second wristband; 4. Buckle; 5. Touch display screen; 6. Volume adjustment knob; 7. Microphone; 8. Power button; 9. Speaker; 10. Motherboard; 11. Card slot; 12. Lithium battery; 13. Receiving module; 14. Transmission module; 15. Detection mechanism; 16. Infrared sensor; 17. Temperature sensor; 18. Photoelectric sensor; 19. Light-emitting diode. Detailed implementation mode

[0029] In order to more clearly explain the overall concept of the present invention, the following will be further described in detail by way of examples in combination with the accompanying drawings of the specification.

[0030] Example 1:

[0031] Please refer to Figures 1 to 4 , the present invention provides a technical solution: a safety monitoring wristband, including:

[0032] Main unit 1, one end of the main unit 1 is provided with a first wristband 2, the other end of the main unit 1 is provided with a second wristband 3, the top end of the main unit 1 is provided with a touch display screen 5, the inside of the main unit 1 is provided with a motherboard 10, and the surface of the motherboard 10 is successively provided with a card slot 11, a lithium battery 12, a receiving module 13 and a transmission module 14. The bottom end of the main unit 1 is provided with a detection mechanism 15, and the surface of the detection mechanism 15 is successively provided with an infrared sensor 16, a temperature sensor 17, a photoelectric sensor 18 and a light-emitting diode 19.

[0033] Through the setting of the detection mechanism 15, during use, the detection mechanism 15 detects the physiological parameters of the patient in real time. The infrared rays generated by the light-emitting diode 19 irradiate the blood vessel position of the patient, and then the infrared sensor 16 receives the transmission or reflection of the blood vessel and the blood flow signal to obtain the real-time heart rate of the patient. The photoelectric sensor 18 collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor 17 detects the patient's body temperature information in real time, and synchronizes these physiological parameters into the medical care platform system through the transmission module 14, so as to facilitate medical staff to understand the patient's physiological signs. And these data will be transmitted to the hospital big data platform, and doctors can retrieve reference data at any time, so as to achieve a more effective treatment effect.

[0034] Example 2:

[0035] As Figure 1 shown, a safety monitoring wristband disclosed in the second embodiment of the present invention has basically the same structure as that in the first embodiment, and the difference lies in:

[0036] Both ends of the host 1 are provided with grooves 101. A first wristband 2 is clamped at one end of the host 1, and a second wristband 3 is clamped at the other end of the host 1. Both the first wristband 2 and the second wristband 3 are clamped inside the groove 101.

[0037] A number of adjustment holes 201 are evenly arranged on the surface of the first wristband 2. The other end of the second wristband 3 is fixedly connected with a buckle 4. The buckle 4 and the adjustment holes 201 are cooperatively connected with each other. The top end of the host 1 is fixedly connected with a touch display screen 5.

[0038] Through the arrangement of the adjustment holes 201, it can be suitable for different people to wear, making the detection mechanism 15 at the bottom end of the host 1 fit more closely to the patient's wrist, so as to achieve a more accurate effect for the subsequent detection mechanism 15 to detect the patient's physiological parameters.

[0039] Embodiment Three:

[0040] As Figures 2 to 4 shown, a safety monitoring wristband disclosed in Embodiment Three of the present invention has basically the same structure as that in Embodiment Two, and the difference lies in:

[0041] A volume adjustment knob 6 is rotatably connected above one side of the host 1. A microphone 7 is fixedly connected below the volume adjustment knob 6 on one side of the host 1. A power button 8 is fixedly connected to the middle of one side of the host 1. A speaker 9 is fixedly connected below one side of the host 1.

[0042] A main board 10 is fixedly connected inside the host 1. A card slot 11 is fixedly connected to one side of the main board 10. A lithium battery 12 is fixedly connected to the other side of the main board 10. A receiving module 13 is fixedly connected above the card slot 11 on the main board 10. A transmission module 14 is fixedly connected below the card slot 11 on the main board 10.

[0043] A detection mechanism 15 is fixedly connected to the bottom end of the host 1. An infrared sensor 16 is fixedly connected to one side of the detection mechanism 15. A temperature sensor 17 is fixedly connected to one end of the detection mechanism 15. A photoelectric sensor 18 is fixedly connected to the other side of the detection mechanism 15. A light emitting diode 19 is fixedly connected to the other end of the detection mechanism 15.

[0044] The usage method of the safety monitoring wristband includes:

[0045] S1: First, respectively snap the first wristband 2 and the second wristband 3 inside the groove 101. Then, snap the buckle 4 on the surface of the second wristband 3 into a suitable adjustment hole 201 on the surface of the first wristband 2, and wear the main unit 1 on the patient's wrist. Through the setting of the adjustment hole 201, it can be worn by different people, making the detection mechanism 15 at the bottom of the main unit 1 fit more closely to the patient's wrist, so as to achieve a more accurate detection of the patient's physiological parameters by the subsequent detection mechanism 15;

[0046] S2: Then, insert the SIM card into the card slot 11 and turn on the main unit 1 through the power button 8 to enable the main unit 1 to perform network configuration. Then, store the patient's personal information in the internal system of the main unit 1 and connect the main unit 1 to the hospital's medical staff platform. The patient's name and a brief information of the patient's illness can be displayed in real time on the touch display screen 5 of the main unit 1, which is convenient for different medical staff to confirm the patient's information. At the same time, the detailed information of the patient's condition is recorded at the end of the hospital's server. The changes in the patient's condition and the daily doctor's orders can also be modified and recorded at the sub-end of the hospital server. A QR code of the patient can also be displayed on the main unit display screen. The sub-end of the medical staff's server can enter the information database of the hospital terminal through the QR code to view the changes in the patient's condition and doctor's orders in detail, and can also query the patient's previous condition and doctor's orders. The patient's family members can also scan the code with their mobile phones to enter the hospital mini-program to view the daily doctor's orders;

[0047] S3: Then, set the allowed activity range of the main unit 1 in the medical staff platform software. The main unit 1 refreshes the positioning information in real time and displays it in the medical staff platform software. When the positioning information exceeds the activity range, the medical staff platform will issue an alarm to remind the medical staff, so as to achieve the effect of accurately positioning the patient's location, facilitating care and avoiding accidents. When the medical staff needs to talk to the patient or the patient's family members, the medical staff can directly shout at the main unit 1 through the medical staff platform terminal. Conversely, the patient or the patient's family members can also directly shout at the medical staff platform through the main unit 1, so as to achieve a more convenient communication effect, and further achieve the effect of being able to solve problems in a timely manner;

[0048] S4: The detection mechanism 15 detects the patient's physiological parameters in real time. The infrared rays generated by the light-emitting diode 19 irradiate the blood vessel position of the patient, and then the infrared sensor 16 receives the transmission or reflection of the blood vessel and the blood flow signal to obtain the patient's real-time heart rate. The photoelectric sensor 18 collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor 17 detects the patient's body temperature information in real time, and synchronizes these physiological parameters to the medical staff platform system through the transmission module 14, so as to achieve the effect of facilitating medical staff to understand the patient's physiological signs, and these data will be transmitted to the hospital's big data platform, and doctors can retrieve the reference data at any time, so as to achieve a more effective treatment effect.

[0049] By connecting the host 1 to the hospital medical care platform, setting the allowable activity range of the host in the medical care platform software, the host 1 refreshes the positioning information in real time and displays it in the medical care platform software. When the positioning information exceeds the activity range, the medical care platform will issue an alarm to remind the medical staff, so as to achieve the effect of accurately positioning the patient's location, facilitating care and avoiding accidents.

[0050] The patient's name, basic disease conditions and personal QR code of the patient are displayed on the touch display screen 5. Medical staff can confirm the patient through the name and basic information on the touch display screen 5, and enter the information page for recording the patient's condition changes and doctor's orders in the hospital server terminal through the mobile device in the medical staff's hands, so as to facilitate the medical staff to distribute medicines and communicate precautions to the patient's family members. The patient's family members can also scan the code with their mobile phones to enter the hospital mini-program to view the daily doctor's orders.

[0051] When the medical staff needs to communicate with the patient or the patient's family members, the medical staff can directly shout at the host 1 through the medical care platform terminal. Conversely, the patient or the patient's family members can also directly shout at the medical care platform through the host 1, so as to achieve a more convenient communication effect and further achieve the effect of timely problem-solving.

[0052] The specific solution is as follows: First, the first wristband 2 and the second wristband 3 are respectively snapped into the interior of the groove 101. Then, the buckle 4 on the surface of the second wristband 3 is snapped into a suitable adjustment hole 201 on the surface of the first wristband 2. The main unit 1 is worn on the patient's wrist. Through the setting of the adjustment hole 201, it can be worn by different people, making the detection mechanism 15 at the bottom end of the main unit 1 fit more closely to the patient's wrist, so as to achieve a more accurate detection of the patient's physiological parameters by the subsequent detection mechanism 15. Then, insert the SIM card into the card slot 11 and turn on the main unit 1 through the power button 8, so that the main unit 1 performs network configuration. Then, store the patient's personal information in the internal system of the main unit 1 and connect the main unit 1 to the hospital's medical staff platform. The touch display screen 5 of the main unit 1 can display the patient's name and brief information about the patient's condition in real time, which is convenient for different medical staff to confirm the patient's information. At the same time, the detailed information about the patient's condition is recorded at the end of the hospital's server. The changes in the patient's condition and the daily doctor's advice information can also be modified and recorded at the sub-end of the hospital server. The main unit display screen can also display the QR code of the patient. The sub-end of the medical staff's server can enter the information database of the hospital terminal through the QR code to view the detailed changes in the patient's condition and doctor's advice, and at the same time can query the patient's previous conditions and doctor's advice. Then, set the allowed activity range of the main unit 1 in the medical staff platform software. The main unit 1 refreshes the positioning information in real time and displays it in the medical staff platform software. When the positioning information exceeds the activity range, the medical staff platform will issue an alarm to remind the medical staff, so as to achieve the effect of accurately positioning the patient's location, facilitating care and avoiding accidents. When the medical staff needs to talk to the patient or the patient's family, the medical staff can directly shout at the main unit 1 through the medical staff platform terminal. Conversely, the patient or the patient's family can also directly shout at the medical staff platform through the main unit 1, so as to achieve a more convenient connection effect, and then achieve the effect of being able to solve problems in a timely manner. The detection mechanism 15 detects the patient's physiological parameters in real time. The infrared rays generated by the light-emitting diode 19 irradiate the blood vessel position of the patient, and then the infrared sensor 16 receives the transmission or reflection of the blood vessel and the blood flow signal to obtain the patient's real-time heart rate. The photoelectric sensor 18 collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor 17 detects the patient's body temperature information in real time, and synchronizes these physiological parameters to the medical staff platform system through the transmission module 14, so as to achieve the effect of facilitating medical staff to understand the patient's physiological signs. And these data will be transmitted to the hospital's big data platform, and doctors can retrieve the reference data at any time, so as to achieve a more effective treatment effect. When the patient is discharged, format the main unit 1 to clear the patient's personal information and related parameters for the next patient to use.

[0053] Those of ordinary skill in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of the present invention (including the claims) is limited to these examples; under the concept of the present invention, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations in different aspects of the present invention as described above, which are not provided in detail for the sake of brevity.

[0054] The present invention is intended to cover all such substitutions, modifications, and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A safety monitoring wristband, characterized in that, Including: A main unit (1), one end of the main unit (1) is provided with a first wristband (2), the other end of the main unit (1) is provided with a second wristband (3), the top end of the main unit (1) is provided with a touch display screen (5), the interior of the main unit (1) is provided with a main board (10), on the surface of the main board (10) are successively provided with a card slot (11), a lithium battery (12), a receiving module (13) and a transmission module (14), the bottom end of the main unit (1) is provided with a detection mechanism (15), and on the surface of the detection mechanism (15) are successively provided with an infrared sensor (16), a temperature sensor (17), a photoelectric sensor (18) and a light-emitting diode (19).

2. The safety monitoring wristband according to claim 1, characterized in that, Both ends of the main unit (1) are provided with grooves (101), one end of the main unit (1) is clamped with the first wristband (2), the other end of the main unit (1) is clamped with the second wristband (3), and both the first wristband (2) and the second wristband (3) are clamped inside the grooves (101).

3. The safety monitoring wristband according to claim 2, characterized in that, A number of adjustment holes (201) are evenly opened on the surface of the first wristband (2), the other end of the second wristband (3) is fixedly connected with a buckle (4), the buckle (4) and the adjustment holes (201) are cooperatively connected with each other, and the top end of the main unit (1) is fixedly connected with a touch display screen (5).

4. The safety monitoring wristband according to claim 3, wherein, Above one side of the main unit (1) is rotatably connected with a volume adjustment knob (6), below the volume adjustment knob (6) on one side of the main unit (1) is fixedly connected with a microphone (7), in the middle of one side of the main unit (1) is fixedly connected with a power button (8), and below one side of the main unit (1) is fixedly connected with a speaker (9).

5. The safety monitoring wristband according to claim 4, wherein The interior of the main unit (1) is fixedly connected with a main board (10), one side of the main board (10) is fixedly connected with a card slot (11), the other side of the main board (10) is fixedly connected with a lithium battery (12), above the card slot (11) on the main board (10) is fixedly connected with a receiving module (13), and below the card slot (11) on the main board (10) is fixedly connected with a transmission module (14).

6. The safety monitoring wristband according to claim 5, wherein, The bottom end of the main unit (1) is fixedly connected with a detection mechanism (15), one side of the detection mechanism (15) is fixedly connected with an infrared sensor (16), one end of the detection mechanism (15) is fixedly connected with a temperature sensor (17), the other side of the detection mechanism (15) is fixedly connected with a photoelectric sensor (18), and the other end of the detection mechanism (15) is fixedly connected with a light-emitting diode (19).

7. A safety monitoring wristband, characterized in that, Including a safety monitoring wristband according to any one of claims 1-6, the usage method of the safety monitoring wristband includes: S1: First, respectively snap the first wristband (2) and the second wristband (3) inside the groove (101), and then snap the buckle (4) on the surface of the second wristband (3) inside a suitable adjustment hole (201) on the surface of the first wristband (2) to wear the main unit (1) on the patient's wrist. Through the setting of the adjustment hole (201), it can be worn by different people, making the detection mechanism (15) at the bottom end of the main unit (1) fit more closely to the patient's wrist, so as to achieve a more accurate detection effect of the subsequent detection mechanism (15) on the patient's physiological parameters; S2: Then insert the SIM card inside the card slot (11) and turn on the main unit (1) through the power button (8) to enable the main unit (1) to perform network configuration. Then store the patient's personal information in the internal system of the main unit (1) and connect the main unit (1) to the hospital's medical staff platform. The patient's name and brief information of the patient's illness can be displayed in real time on the touch display screen (5) of the main unit (1), which is convenient for different medical staff to confirm the patient's information. At the same time, the detailed information of the patient's condition is recorded at the end of the hospital's server, and the changes in the patient's condition and the daily doctor's advice information can also be modified and recorded on the sub-end of the hospital server. A QR code of the patient can also be displayed on the main unit display screen. The sub-end of the medical staff's server can enter the information database of the hospital terminal through the QR code to view the changes in the patient's condition and doctor's advice in detail, and at the same time can query the patient's previous conditions and doctor's advice. The patient's family members can also scan the code with their mobile phones to enter the hospital mini-program to view the daily doctor's advice; S3: Then set the allowed activity range of the main unit (1) in the medical staff platform software. The main unit (1) refreshes the positioning information in real time and displays it in the medical staff platform software. When the positioning information exceeds the activity range, the medical staff platform will issue an alarm to remind the medical staff, so as to achieve the effect of accurately positioning the patient's location, which is convenient for care and avoids accidents. When the medical staff needs to talk to the patient or the patient's family members, the medical staff can directly shout at the main unit (1) through the medical staff platform terminal. Conversely, the patient or the patient's family members can also directly shout at the medical staff platform through the main unit (1), so as to achieve a more convenient communication effect, and further achieve the effect of being able to solve problems in time; S4: The detection mechanism (15) detects the patient's physiological parameters in real time. The infrared rays generated by the light-emitting diode (19) irradiate the patient's blood vessel position, and then the infrared sensor (16) receives the transmission or reflection of the blood vessel and the blood flow signal to obtain the patient's real-time heart rate. The photoelectric sensor (18) collects the pulse wave at the patient's wrist and comprehensively analyzes it to obtain the patient's blood pressure and blood oxygen information. The temperature sensor (17) detects the patient's body temperature information in real time, and synchronizes these physiological parameters to the medical staff platform system through the transmission module (14), so as to achieve the effect of facilitating the medical staff to understand the patient's physiological signs, and these data will be transmitted to the hospital's big data platform, and doctors can retrieve the reference data at any time, so as to achieve a more effective treatment effect.

Citation Information

Patent Citations

  • Novel medical wrist strap for monitoring and early warning

    CN221635771U