Portable multi-parameter physiological monitoring device

By using the movable cover and disinfection support structure of the portable physiological monitoring device, the problems of time-consuming and laborious cleaning of the detection module and the spread of germs are solved, realizing automatic disinfection and efficient monitoring.

CN224206816UActive Publication Date: 2026-05-08THE AFFILIATED HOSPITAL OF SHANDONG UNIV OF TCM
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
THE AFFILIATED HOSPITAL OF SHANDONG UNIV OF TCM
Filing Date
2025-01-09
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing physiological monitoring devices have small detection modules, which are time-consuming and labor-intensive to clean, and each device needs to be disinfected individually when used by different patients, posing a risk of germ transmission.

Method used

A portable multi-parameter physiological monitoring device was designed, which adopts a movable cover and a disinfection support structure. The detection module is disinfected inside the movable cover by a rotating rod and a drive cylinder. Combined with a sealing plate to reduce external light interference, automatic disinfection and sealing are achieved.

Benefits of technology

This reduces the workload of disinfecting the detection module, lowers the risk of pathogen transmission, and improves the accuracy and ease of operation of physiological parameter monitoring.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224206816U_ABST
    Figure CN224206816U_ABST
Patent Text Reader

Abstract

The utility model provides a portable multi-parameter physiological monitoring device, which relates to the technical field of medical instruments and comprises a monitoring body, the top of the monitoring body is provided with an operation display screen, and the top of the inner side of the monitoring body is provided with a positioning plate; driving cylinders are installed on the two sides of the positioning plate, and movable covers are installed at the output ends of the driving cylinders. A storage cover is mounted at one end of the monitoring body; a positioning inner plate is mounted on the inner side of the storage cover; an ultraviolet lamp module is mounted on the side surface of the bottom of the positioning inner plate; a mounting groove is formed in the outer side of the monitoring body; a disinfection support is slidably mounted in the movable cover, and two driving cylinders are mounted on the inner side of the disinfection support. The detection modules are cleaned by using the disinfection part, so that the workload of disinfecting the detection modules one by one is reduced, the operation is more convenient, and the problems that the detection modules need to be disinfected when used by different patients, and the cleaning is time-consuming and labor-consuming are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to a portable multi-parameter physiological monitoring device. Background Technology

[0002] A multi-parameter physiological monitoring device is a medical device that integrates multiple physiological parameter monitoring functions. It can detect important physiological parameters such as electrocardiogram signals, heart rate, blood oxygen saturation, blood pressure, and body temperature in real time. When a patient's physiological parameter exceeds the preset safety range, the monitor will automatically issue an alarm to remind medical staff to take timely intervention measures.

[0003] In existing technologies, when physiological monitoring devices monitor a patient's physiological parameters, the detection module on the device usually comes into contact with the patient's skin for detection. However, when different patients use the device, the detection module needs to be disinfected. But the detection module is small in size and cleaning it is time-consuming and laborious. Summary of the Invention

[0004] This disclosure relates to a portable multi-parameter physiological monitoring device to address the problem that in the prior art, when physiological monitoring devices monitor patients' physiological parameters, the detection module on the physiological monitoring device usually comes into contact with the patient's skin for detection. However, when different patients use the device, the detection module needs to be disinfected, but the detection module is small in size and cleaning is time-consuming and laborious.

[0005] In a first aspect, this disclosure provides a portable multi-parameter physiological monitoring device, specifically comprising: a monitoring body having an oval structure, wherein the monitoring body has an operation display screen on its top and a positioning plate is mounted on the inner top side of the monitoring body; drive cylinders are mounted on both sides of the positioning plate, and movable covers are mounted on the output ends of the drive cylinders; a storage cover is mounted on one end of the monitoring body; a positioning inner plate is mounted on the inner side of the storage cover; a UV lamp module is mounted on the bottom side of the positioning inner plate; an installation groove is provided on the outer side of the monitoring body; and a disinfection bracket is slidably mounted inside the movable cover, wherein two drive cylinders are mounted on the inner side of the disinfection bracket.

[0006] Furthermore, a ventilation groove and a positioning groove are provided on the bottom outer side of the monitoring body, and an inner wall groove is provided on the side wall of the monitoring body; the inner wall groove is connected to the side of the ventilation groove and the positioning groove.

[0007] Furthermore, a sealing plate is slidably installed inside the inner wall groove; the sealing plate is also slidably installed inside the ventilation groove and the positioning groove, and a connector is provided on the top inner side of the sealing plate.

[0008] Furthermore, the movable cover is slidably installed inside the monitoring body, and a rotating rod is rotatably installed at the bottom of the movable cover; the rotating rod has a cylindrical structure, and both ends of the rotating rod are slidably installed inside the positioning groove, and a detection module is installed at the middle position of the rotating rod; the detection module is installed at the bottom of the movable cover.

[0009] Furthermore, a storage wheel is rotatably mounted on the inner side of the storage cover; a return spring is mounted at both ends of the storage wheel, the return spring is connected to the inner side of the storage cover, and a restraint strap is wound around the outer side of the storage wheel; an elastic sheet is mounted at the other end of the monitoring body; the side end of the elastic sheet is connected to the side end of the restraint strap.

[0010] Furthermore, a fixing plate is installed at the top of the output end of the storage cover; the bottom of the fixing plate is installed on the restraint strap; a traction plate is installed at the top of the fixing plate; and one side of the bottom of the traction plate is connected to the top of the output end of the storage cover by a spring.

[0011] Furthermore, the disinfection bracket has guide grooves at both ends and guide groove 2 in the middle; guide slides are slidably installed inside guide grooves 1 and 2; a disinfection component is installed at the bottom of the guide slides; and the disinfection component is slidably installed on the detection module.

[0012] This utility model provides a portable multi-parameter physiological monitoring device, which has the following beneficial effects:

[0013] In use, this invention cleans the detection module using a disinfection component, reducing the workload of disinfecting each detection module individually. When the physiological monitoring device monitors multiple physiological parameters of a patient, after the detection module detects the patient's physiological parameters, rotating the rotating rod causes one side of the used detection module to be inside the movable cover. Under the action of the drive cylinder, the guide slide moves the disinfection component to wipe and disinfect the used detection module, reducing bacteria that may adhere to the detection module and preventing the spread of germs when used between different patients. Furthermore, timely disinfection via the disinfection component reduces the workload of medical staff in disinfecting each module individually, making operation more convenient.

[0014] In addition, by sealing the detection environment with a sealing plate, interference from external light to the detection module is reduced. When the physiological monitoring device monitors multiple physiological parameters of the patient, the movable cover moves the detection module to contact the patient's skin while simultaneously moving the sealing plate downward to seal the ventilation slot and positioning slot, reducing the entry of external light and ensuring that the detection module is in an ideal environment for detection. This ensures that the light emitted from the detection module is reflected through the skin to obtain accurate parameters, thereby improving the accuracy of physiological parameter monitoring. Attached Figure Description

[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0016] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the present invention.

[0017] In the attached diagram:

[0018] Figure 1 A schematic diagram of the overall structure of this application is shown;

[0019] Figure 2 A schematic diagram of the cross-sectional structure of the monitoring body of this application is shown;

[0020] Figure 3 A schematic cross-sectional view of the active cover structure of this application is shown;

[0021] Figure 4 A cross-sectional view of the storage cover structure of this application is shown;

[0022] Figure 5 A three-dimensional structural diagram of the storage wheels of this application is shown;

[0023] Figure 6 A schematic diagram of the three-dimensional structure of the guide slide plate of this application is shown;

[0024] List of reference numerals

[0025] 1. Monitoring body; 101. Ventilation slot; 102. Positioning slot; 103. Inner wall slot; 104. Sealing plate; 105. Positioning plate; 106. Movable cover; 107. Rotating rod; 108. Detection module;

[0026] 2. Storage cover; 201. Positioning inner plate; 202. Ultraviolet light module; 203. Storage wheels; 204. Restraint straps; 205. Elastic sheet; 206. Fixing pressure plate; 207. Traction plate;

[0027] 3. Mounting slot; 301. Disinfection bracket; 302. Guide slot one; 303. Guide slot two; 304. Guide slide plate; 305. Disinfection component. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0029] Please refer to Figures 1 to 6 :

[0030] Example 1:

[0031] This utility model proposes a portable multi-parameter physiological monitoring device, comprising: a monitoring body 1, which has an oval structure and an operation display screen on the top of the monitoring body 1, and a positioning plate 105 installed on the inner top of the monitoring body 1; drive cylinders are installed on both sides of the positioning plate 105, and a movable cover 106 is installed on the output end of the drive cylinders; a ventilation groove 101 and a positioning groove 102 are opened on the outer bottom of the monitoring body 1, and an inner wall groove 103 is opened in the side wall of the monitoring body 1; the inner wall groove 103 is connected to the side of the ventilation groove 101 and the positioning groove 102. A sealing plate 104 is slidably installed inside the inner wall groove 103; the sealing plate 104 is also slidably installed inside the ventilation groove 101 and the positioning groove 102, and a connector is provided on the top inner side of the sealing plate 104; the movable cover 106 is slidably installed inside the monitoring body 1, and a rotating rod 107 is rotatably installed at the bottom of the movable cover 106; the rotating rod 107 has a cylindrical structure, and both ends of the rotating rod 107 are also slidably installed inside the positioning groove 102, and a detection module 108 is installed at the middle position of the rotating rod 107; the detection module 108 is installed at the bottom of the movable cover 106.

[0032] In this embodiment, when the physiological monitoring device monitors multiple physiological parameters of a patient, a circuit board, a battery, and other electronic components are installed between the inner top of the monitoring body 1 and the positioning plate 105. When the monitoring body 1 is installed on the patient's arm or other parts of the body, it dissipates heat through the ventilation slot 101. When detecting the patient's physiological parameters, two drive cylinders on the positioning plate 105 drive the movable cover 106 to move downwards. The movable cover 106 drives the detection module 108 to move downwards to contact the patient and monitor physiological parameters. The two detection modules 108 can monitor the patient's electrocardiogram signal, heart rate, blood oxygen saturation, blood pressure, and body temperature. The system monitors important physiological parameters such as temperature. Simultaneously, the movable cover 106 moves the sealing plate 104 downward inside the inner wall groove 103, sealing the ventilation groove 101 and the positioning groove 102. This ensures that the detection module 108 is in an ideal environment for detection, preventing external light from interfering with the detection light emitted by the detection module 108 and improving the accuracy of monitoring the patient's physiological parameters. After use by different patients, the rotating rod 107 is rotated in the positioning groove 102, causing the detection module 108 to rotate at the bottom of the movable cover 106. After use, the detection module 108 is disinfected inside the movable cover 106, reducing the spread of germs between different patients.

[0033] In Example 2, based on Example 1, a storage cover 2 is installed at one end of the monitoring body 1; a positioning inner plate 201 is installed on the inner side of the storage cover 2; a UV lamp module 202 is installed on the bottom side of the positioning inner plate 201; a storage wheel 203 is rotatably installed on the inner side of the storage cover 2; return springs are installed at both ends of the storage wheel 203, the return springs are connected to the inner side of the storage cover 2, and a restraint strap 204 is wrapped around the outer side of the storage wheel 203; an elastic sheet 205 is installed at the other end of the monitoring body 1; the side end of the elastic sheet 205 is connected to the side end of the restraint strap 204; a fixing pressure plate 206 is installed at the top of the output end of the storage cover 2; the bottom of the fixing pressure plate 206 is installed on the restraint strap 204; a traction plate 207 is installed at the top of the fixing pressure plate 206; one side of the bottom of the traction plate 207 is connected to the top of the output end of the storage cover 2 via a spring. The physiological monitoring device monitors the patient... When monitoring multiple physiological parameters of the patient, the length of the restraint strap 204 is adjusted according to the installation position of the monitoring body 1. The restraint strap 204 is pulled outward from inside the storage cover 2, causing the restraint strap 204 to drive the storage wheel 203 to rotate, which tightens the return springs at both ends of the storage wheel 203. The elastic plate 205 is connected to one end of the restraint strap 204, allowing the restraint strap 204 to be placed on the patient's arm or other parts of the body, making it convenient to place it in different positions for use. Under the action of the spring, the traction plate 207 drives the fixing pressure plate 206 to move downward to fix the restraint strap 204 and prevent the restraint strap 204 from being retracted. When not in use, the fixing pressure plate 206 releases the pressure on the restraint strap 204, and under the action of the return spring, the storage wheel 203 stores the restraint strap 204. Then, the ultraviolet light module 202 on the side of the positioning inner plate 201 disinfects and sterilizes the restraint strap 204.

[0034] In Example 3, based on Example 1, an installation groove 3 is provided on the outer side of the monitoring body 1; a disinfection bracket 301 is slidably installed inside the movable cover 106, wherein two drive cylinders are installed on the inner side of the disinfection bracket 301; guide groove 1 302 is provided at both ends of the disinfection bracket 301, and guide groove 2 303 is provided in the middle of the disinfection bracket 301; guide slide plate 304 is slidably installed inside the guide groove 1 302 and guide groove 2 303; a disinfection component 305 is installed at the bottom of the guide slide plate 304; the disinfection component 305 is slidably installed on the detection module 108, and the physiological monitoring device monitors the patient. When monitoring multiple physiological parameters, after the detection module 108 is rotated and placed inside the movable cover 106, the two drive cylinders on the inner side of the disinfection bracket 301 drive the guide slide plate 304 to move along the guide groove 1 302 and the guide groove 2 303, so that the disinfection component 305 at the bottom of the guide slide plate 304 wipes and disinfects the detection module 108, reducing the workload of manual disinfection. After use, the disinfection component 305 is periodically removed from the disinfection bracket 301 and replaced by removing the disinfection bracket 301 through the installation groove 3, so as to ensure the disinfection effect of the disinfection component 305 on the detection module 108.

[0035] The working principle of this embodiment is as follows: Pulling the restraint strap 204 outward from inside the storage cover 2 causes the storage wheel 203 to rotate, tightening the return springs at both ends of the storage wheel 203. The restraint strap 204 then moves the monitoring body 1 to the patient's arm or other parts of the body. Under the action of the springs, the traction plate 207 moves the fixing plate 206 downward to fix the restraint strap 204. The monitoring body 1 is installed on the patient's arm and other parts of the body. Two drive cylinders on the positioning plate 105 move the movable cover 106 downward, which in turn moves the detection module 108 downward to monitor important physiological parameters such as the patient's electrocardiogram, heart rate, blood oxygen saturation, blood pressure, and body temperature. During monitoring, the movable cover 106 drives the sealing plate 104 to move downwards within the inner wall groove 103, sealing the ventilation groove 101 and the positioning groove 102 to prevent external light from interfering with the detection light emitted by the detection module 108. After use by different patients, the rotating rod 107 is rotated within the positioning groove 102, causing the detection module 108 to rotate at the bottom of the movable cover 106. After use, the detection module 108 rotates and is placed inside the movable cover 106. The two drive cylinders inside the disinfection bracket 301 drive the guide slide plate 304 to move along the guide groove 1 302 and the guide groove 2 303. The disinfection component 305 at the bottom of the guide slide plate 304 wipes and disinfects the detection module 108.

[0036] The following points should be noted in this article:

[0037] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.

[0038] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0039] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. A portable multi-parameter physiological monitoring device, comprising: The monitoring body (1) has an operation display screen on its top and a positioning plate (105) installed on the inner top of the monitoring body (1). The positioning plate (105) has drive cylinders installed on both sides and a movable cover (106) installed on the output end of the drive cylinder. A storage cover (2) is installed at one end of the monitoring body (1). A positioning inner plate (201) is installed on the inner side of the storage cover (2). A UV lamp module (202) is installed on the bottom side of the positioning inner plate (201). An installation groove (3) is opened on the outer side of the monitoring body (1). A disinfection bracket (301) is slidably installed inside the movable cover (106), wherein two drive cylinders are installed on the inner side of the disinfection bracket (301).

2. The portable multi-parameter physiological monitoring device according to claim 1, characterized in that, The monitoring body (1) has a ventilation groove (101) and a positioning groove (102) at its outer bottom, and an inner wall groove (103) is provided in the side wall of the monitoring body (1); the inner wall groove (103) is connected to the side of the ventilation groove (101) and the positioning groove (102).

3. The portable multi-parameter physiological monitoring device according to claim 2, characterized in that, A sealing plate (104) is slidably installed inside the inner wall groove (103); the sealing plate (104) is also slidably installed inside the ventilation groove (101) and the positioning groove (102), and a connector is provided on the top inner side of the sealing plate (104).

4. A portable multi-parameter physiological monitoring device according to claim 3, characterized in that, The movable cover (106) is slidably installed inside the monitoring body (1), and a rotating rod (107) is rotatably installed at the bottom of the movable cover (106); both ends of the rotating rod (107) are also slidably installed inside the positioning groove (102), and a detection module (108) is installed at the middle position of the rotating rod (107); the detection module (108) is installed at the bottom of the movable cover (106).

5. A portable multi-parameter physiological monitoring device according to claim 4, characterized in that, The storage cover (2) is rotatably mounted with a storage wheel (203); the storage wheel (203) is equipped with a return spring at both ends, the return spring is connected to the inside of the storage cover (2), and a restraint strap (204) is wrapped around the outside of the storage wheel (203); an elastic sheet (205) is mounted at the other end of the monitoring body (1); the side end of the elastic sheet (205) is connected to the side end of the restraint strap (204).

6. A portable multi-parameter physiological monitoring device according to claim 5, characterized in that, A fixing plate (206) is installed on the top of the output end of the storage cover (2); the bottom of the fixing plate (206) is installed on the restraint strap (204); a traction plate (207) is installed on the top of the fixing plate (206); the bottom side of the traction plate (207) is connected to the top of the output end of the storage cover (2) by a spring.

7. A portable multi-parameter physiological monitoring device according to claim 6, characterized in that, The disinfection bracket (301) has guide grooves (302) at both ends and guide groove (303) in the middle. Guide slides (304) are slidably installed inside the guide grooves (302) and guide grooves (303). Disinfection components (305) are installed at the bottom of the guide slides (304). Disinfection components (305) are slidably installed on the detection module (108).