Hospital monitoring equipment and monitoring method thereof

Through negative pressure adsorption and press-type adjustment mechanism, the problem of easy damage of electrocardiograph and electroencephalogram monitor electrode patches is solved, the stable fixation of the equipment and the automatic storage of the electrodes are achieved, ensuring the stability of the monitoring process and the accuracy of the data.

CN120814828AInactive Publication Date: 2025-10-21SUZHOU TONGQI SUMU SOFTWARE CO LTD
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Patent Information

Application Number
CN202511326328.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-10-21
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing electrocardiograph (ECG) monitor electrode patches are easily damaged after use, mainly due to the release film falling off or not being removed in time, which affects subsequent use.

Method used

It uses negative pressure adsorption fixed legs and a push-type adjustment mechanism to achieve automatic positioning of the electrocardiograph and brain electrocardiogram monitor through gravity and negative pressure adsorption. Combined with automatic storage and positioning functions, it prevents the device from slipping, and the push-type adjustment mechanism realizes automatic storage and stable application of PET self-adhesive electrodes.

Benefits of technology

Effectively prevent equipment from slipping and damage, ensure the stability of the monitoring process and signal accuracy, reduce contamination and physical damage to the electrodes, and improve the accuracy of monitoring data.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses hospital monitoring equipment and a monitoring method thereof, and relates to the technical field of monitoring equipment.The hospital monitoring equipment comprises a cardio-electroencephalogram monitor host, a display screen is installed on the front end face of the cardio-electroencephalogram monitor host, and a handle is fixed to the upper end face of the cardio-electroencephalogram monitor host; the cardio-electroencephalogram monitor host is connected with a monitoring mechanism mounted in the cylinder through a wire; the automatic positioning function of the cardio-electroencephalogram monitor main machine is achieved through the gravity and negative pressure adsorption function, and the fixing supporting feet are installed on the lower end face of the cardio-electroencephalogram monitor main machine. According to the hospital monitoring equipment and the monitoring method thereof, the fixing supporting legs fixed through negative pressure adsorption are adopted, when the heart and brain electricity monitor host is placed, negative pressure adsorption can be automatically formed between the fixing suction cups and the bedside table panel through the gravity effect, and therefore the automatic fixing effect of the heart and brain electricity monitor host is achieved; equipment is effectively prevented from falling off and being damaged due to collision or vibration, and the stability of the monitoring process is ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of monitoring equipment, and in particular to a hospital monitoring device and a monitoring method thereof. Background Art

[0002] In clinical medicine, in order to monitor patients with neurological conditions such as epilepsy, stroke, impaired consciousness, and sleep disorders, it is necessary to use electrocardioencephalogram (ECG) monitors to collect and analyze the patient's physiological signals, so that personnel can assess the patient's neurological and cardiovascular function status, and thus facilitate subsequent targeted treatment of the patient. When existing electrocardiograph and brain electrocardiogram monitors are actually used, they mainly collect the patient's physiological signals by applying electrode patches to the patient. However, when existing electrode patches are actually used, they mainly rely on the release film attached to the surface to achieve the protection of the electrode patch surface. After use, if the medical staff forgets to stick the release film to the electrode patch or the release film falls off after sticking, the electrode patch application surface is directly exposed to the outside, which is very easy to be damaged and affect the subsequent normal use. Summary of the Invention

[0003] The object of the present invention is to provide a hospital monitoring device and a monitoring method thereof to solve the problems raised in the above background technology.

[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a hospital monitoring device, comprising a cardio-encephalogram (ECG) monitor main unit, a display screen mounted on the front end of the cardio-encephalogram (ECG) monitor main unit, a handle fixed to the upper end of the cardio-encephalogram (ECG) monitor main unit, and the cardio-encephalogram (ECG) monitor main unit being interconnected with a monitoring mechanism mounted in a cylinder via a wire; The fixed support leg realizes the automatic positioning of the cardio-encephalogram monitor host through gravity and negative pressure adsorption, and the fixed support leg is installed on the lower end surface of the cardio-encephalogram monitor host; The adjusting mechanism is used to realize the storage protection and auxiliary positioning functions of the monitoring mechanism, and the adjusting mechanism is connected to the cylinder.

[0005] Preferably, the fixed support leg includes a fixed cylinder fixed to the lower end surface of the electrocardiograph monitor main unit, and air holes are evenly opened on the fixed cylinder, and a first spring is fixed between the fixed cylinder and the piston head. At the same time, the piston head is located on the lower side of the air hole. Through the action of the air hole, the air pressure balance in the fixed cylinder above the piston head can be ensured, thereby ensuring the normal operation of the device, and through the elastic action of the first spring, a basic force can be provided for the automatic reset of the piston head.

[0006] Preferably, the piston head and one end of the piston rod are fixed to each other, and the piston rod and the fixed cylinder are slidably connected, and the other end of the piston rod is fixed to the fixed suction cup, and the fixed suction cup is connected to the fixed cylinder through a catheter. Through the action of the fixed suction cup, the automatic adsorption and fixing effect can be achieved after the electrocardiograph and brain electrocardiogram monitor host is placed, effectively avoiding the problem of the electrocardiograph and brain electrocardiogram monitor host being damaged by slipping due to accidental collision, thereby ensuring the service life of the device.

[0007] Preferably, a convex ring is fixed on the outer side of the upper end of the cylinder, and a clamping seat is fixed at an equal angle on the upper end surface of the cylinder, and a fixing plate is fixed inside the cylinder. The clamping seat can provide basic guarantee for the positioning of the adjustment mechanism.

[0008] Preferably, the adjustment mechanism includes a pressure plate arranged above the cylinder, and four clamping blocks are fixed at equal angles on the lower end surface of the pressure plate, and the clamping blocks and the clamping seats are distributed one-to-one. At the same time, the clamping blocks and the clamping seats can cooperate to achieve a positioning effect. Through the positioning effect between the clamping blocks and the clamping seats, the stability of the pressure plate can be guaranteed, thereby ensuring the stability of the entire device.

[0009] Preferably, the pressure plate is connected to one end of the vertical rod by a bearing, the vertical rod and the cylinder are slidably connected, and the other end of the vertical rod is fixedly connected to the circular plate, and a second spring is fixed between the circular plate and the fixed plate. At the same time, there are four second springs distributed at equal angles about the center of the circular plate. Through the elastic action of the second spring, a basic force can be provided for the automatic reset of the pressure plate to ensure the normal operation of the device.

[0010] Preferably, four inclined panels are fixed at equal angles on the lower end surface of the circular plate, and a connecting rod is nested and slidably connected in the sliding groove opened on the inclined panel, and the connecting rod and the cylinder are slidably connected. The inclined panel is driven to move by the downward movement of the circular plate, and the sliding action between the inclined panel and the connecting rod can provide a basic force for the movement of the connecting rod.

[0011] Preferably, the connecting rod and the baffle are fixedly connected, and the baffle cooperates with the opening at the lower end of the cylinder to achieve a sealing and shielding effect, and the baffle contacts and slides with the lower end surface of the cylinder. At the same time, an auxiliary suction cup is evenly fixed on the lower end surface of the baffle. Through the action of the baffle, the protection function of the monitoring mechanism can be automatically realized to avoid damage to the PET self-adhesive electrode sheet, and through the action of the auxiliary suction cup, auxiliary fixed support of the PET self-adhesive electrode sheet can be achieved to ensure the stability of the installation of the PET self-adhesive electrode sheet.

[0012] Preferably, the monitoring mechanism includes a mounting plate arranged below the fixed plate, and a PET self-adhesive electrode sheet is fixed on the lower end surface of the mounting plate, and the PET self-adhesive electrode sheet is connected to the host of the electrocardiovascular monitor through a wire. A sliding rod is fixed on the upper end surface of the mounting plate, and the sliding rod and the fixed plate are slidably connected, and a third spring is also fixed to the sliding rod and the fixed plate. Through the above structure, a basic guarantee can be provided for realizing the position adjustment of the PET self-adhesive electrode sheet, thereby ensuring the normal use of the device.

[0013] A monitoring method, the specific steps are as follows: S1: The handle makes the entire device easy to carry. When monitoring a patient, the EEG monitor can be placed on a bedside table. The weight of the monitor allows the suction cup to adhere to the bedside table panel, preventing the monitor from sliding due to collisions and other issues, ensuring safe use of the device. S2: When monitoring a patient, by pressing the pressure plate, the baffle can be moved outward to release the sealing effect of the opening at the lower end of the cylinder. The inclined plate exerts pressure on the slide bar to move the PET self-adhesive electrode sheet out of the cylinder so that the PET self-adhesive electrode sheet can be in contact with the patient for monitoring. After use, the PET self-adhesive electrode sheet can be automatically stored to avoid damage to the PET self-adhesive electrode sheet. S3: When the PET self-adhesive electrode sheet is in contact with the patient, the auxiliary suction cup can increase the fixed support area, thereby ensuring the stability of the PET self-adhesive electrode sheet in contact with the patient; S4: PET self-adhesive electrodes are used to monitor the patient's cardiac and cerebral electrical activities, thereby achieving patient monitoring.

[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. This hospital monitoring device and its monitoring method utilize negative pressure fixed feet. When the EKG monitor is placed, gravity automatically creates negative pressure between the fixed suction cups and the bedside table panel, thereby automatically securing the monitor. This effectively prevents damage to the monitor caused by collision or vibration, ensuring stability during the monitoring process. 2. The hospital monitoring equipment and monitoring method thereof adopt a push-type adjustment mechanism, which can automatically control the opening and closing of the baffle to realize the automatic storage and protection of the PET self-adhesive electrode sheet, and can also automatically realize the removal and storage of the PET self-adhesive electrode sheet, thereby effectively preventing the PET self-adhesive electrode sheet from being exposed to the outside and causing contamination or physical damage. At the same time, when the PET self-adhesive electrode sheet is removed and applied to the patient, it cooperates with the auxiliary suction cup to increase the stability of the application and reduce the signal interference caused by the patient's movement, thereby effectively ensuring the accuracy of the monitoring data. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the device of the present invention; Figure 2 This is a schematic diagram of a bottom-view cross-sectional three-dimensional structure of the fixed support leg assembly of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of the cylinder of the present invention when viewed from above; Figure 4 This is a schematic diagram of the front cross-sectional three-dimensional structure of the cylinder of the present invention; Figure 5 This is a schematic diagram of the bottom-view cross-sectional three-dimensional structure of the cylinder of the present invention; Figure 6 This is a schematic diagram of the three-dimensional structure of the adjustment mechanism of the present invention; Figure 7 It is a schematic diagram of the three-dimensional structure of the monitoring mechanism of the present invention.

[0016] In the figure: 1. Cardio-encephalogram monitor main unit; 101. Display screen; 2. Handle; 3. Fixed support foot; 301. Fixed cylinder; 302. Air hole; 303. First spring; 304. Piston head; 305. Piston rod; 306. Fixed suction cup; 4. Cylinder; 401. Protruding ring; 402. Clamping seat; 403. Fixed plate; 5. Adjustment mechanism; 501. Pressing plate; 502. Block; 503. Vertical rod; 504. Circular plate; 505. Second spring; 506. Inclined panel; 507. Connecting rod; 508. Baffle; 509. Auxiliary suction cup; 6. Monitoring mechanism; 601. Mounting plate; 602. PET self-adhesive electrode sheet; 603. Sliding rod; 604. Third spring. DETAILED DESCRIPTION

[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0018] See also Figure 1-Figure 7 The present invention provides a technical solution: a hospital monitoring device, comprising a cardio-encephalogram monitor main unit 1, a display screen 101 being installed on the front end surface of the cardio-encephalogram monitor main unit 1, a handle 2 being fixed on the upper end surface of the cardio-encephalogram monitor main unit 1, and the cardio-encephalogram monitor main unit 1 being connected to a monitoring mechanism 6 installed in a cylinder 4 through a wire; The fixed support leg 3 realizes the automatic positioning of the cardio-encephalogram monitor main unit 1 through gravity and negative pressure adsorption. The fixed support leg 3 is installed on the lower end surface of the cardio-encephalogram monitor main unit 1; The adjusting mechanism 5 is used to realize the storage, protection and auxiliary positioning functions of the monitoring mechanism 6. The adjusting mechanism 5 is connected to the cylinder 4.

[0019] The fixed support 3 includes a fixed cylinder 301 fixed to the lower end surface of the electrocardioencephalogram monitor main unit 1, and the fixed cylinder 301 is evenly provided with air holes 302. A first spring 303 is fixed between the fixed cylinder 301 and the piston head 304, and the piston head 304 is located below the air holes 302. The piston head 304 is fixed to one end of a piston rod 305, and the piston rod 305 is slidably connected to the fixed cylinder 301. The other end of the piston rod 305 is fixed to a fixed suction cup 306, and the fixed suction cup 306 is connected to the fixed cylinder 301 through a catheter. When using this hospital monitoring equipment, if Figure 1-Figure 7 As shown, the device can be easily carried by the handle 2, which is suitable for various scenarios such as wards, emergency rooms or homes. During use of the device, the ECG monitor main unit 1 is first placed on the bedside table panel. At this time, the fixed suction cup 306 is in contact with the bedside table panel. Through the self-weight of the ECG monitor main unit 1, the piston rod 305 and the piston head 304 are forced to slide upward relative to the fixed cylinder 301, thereby achieving the suction effect in the fixed cylinder 301 below the piston head 304. In combination with the effect of the catheter, the gap between the fixed suction cup 306 and the bedside table panel can be sucked, so that a negative pressure state is formed between the fixed suction cup 306 and the bedside table panel, thereby achieving the fixing effect of the ECG monitor main unit 1 and the bedside table panel, effectively ensuring the stability of the ECG monitor main unit 1 and preventing the ECG monitor main unit 1 from slipping and being damaged due to collision or vibration (the bedside table panel can also be other cabinet panels, as long as it can be used to place the ECG monitor main unit 1); A convex ring 401 is fixed to the outer side of the upper end of the cylinder 4, and a holder 402 is fixed at equal angles on the upper end surface of the cylinder 4, and a fixed plate 403 is fixed inside the cylinder 4; the adjusting mechanism 5 includes a pressing plate 501 arranged above the cylinder 4, and four clamping blocks 502 are fixed at equal angles on the lower end surface of the pressing plate 501, and the clamping blocks 502 are distributed one-to-one with the holder 402, and the clamping blocks 502 cooperate with the holder 402 to achieve a positioning effect; the pressing plate 501 is connected to one end of the vertical rod 503 by a bearing, the vertical rod 503 is connected to the cylinder 4 in a sliding connection, and the other end of the vertical rod 503 is fixed to the circular plate 504, and a second spring 505 is fixed between the circular plate 504 and the fixed plate 403, and four second springs 505 are distributed at equal angles about the center of the circular plate 504; four inclined panels 506 are fixed at equal angles on the lower end surface of the circular plate 504, and A connecting rod 507 is nested and slidably connected in the sliding groove opened on the inclined plate 506, and the connecting rod 507 is slidably connected to the cylinder 4; the connecting rod 507 is fixedly connected to the baffle 508, and the baffle 508 cooperates with the opening at the lower end of the cylinder 4 to achieve a sealing and shielding effect, and the baffle 508 slides in contact with the lower end surface of the cylinder 4, and an auxiliary suction cup 509 is evenly fixed on the lower end surface of the baffle 508; the monitoring mechanism 6 includes a mounting plate 601 arranged below the fixed plate 403, and a PET self-adhesive electrode sheet 602 is fixed on the lower end surface of the mounting plate 601, and the PET self-adhesive electrode sheet 602 is connected to the cardio-encephalogram monitor host 1 through a wire, a sliding rod 603 is fixed on the upper end surface of the mounting plate 601, and the sliding rod 603 is slidably connected to the fixed plate 403, and a third spring 604 is also fixed to the sliding rod 603 and the fixed plate 403; After the host computer 1 of the electrocardiograph monitor is placed, Figure 1-Figure 7 As shown, when the PET self-adhesive electrode sheet 602 is attached to the patient, the pressing plate 501 is first pressed, so that the vertical rod 503, the circular plate 504 and the inclined plate 506 are forced to move downward, and the sliding action between the vertical rod 503 and the cylinder 4 can ensure the stability of the movement of the circular plate 504 and the inclined plate 506. At this time, the second spring 505 is forced to shrink, and when the inclined plate 506 moves downward, the sliding action between the inclined plate 506 and the connecting rod 507 makes the connecting rod 507 slide toward the outside of the cylinder 4, thereby synchronously driving the baffle 508 to move, and realizing the unsealing effect of the opening at the lower end of the cylinder 4. When the connecting rod 507 slides due to the inclined groove on the inclined plate 506 sliding to the flat groove, the lower end of the inclined plate 506 is just in contact with the sliding rod 603, and the opening at the lower end of the cylinder 4 is completely opened, which is convenient for the PET self-adhesive electrode sheet 602 to move outward; When the inclined plate 506 contacts the slide bar 603, the pressing plate 501 is pressed downward, so that the slide bar 603 is forced to slide downward, thereby driving the mounting plate 601 and the PET self-adhesive electrode sheet 602 to move downward, thereby achieving the removal of the PET self-adhesive electrode sheet 602. At this time, the third spring 604 is forced to shrink until the block 502 on the lower end face of the pressing plate 501 contacts the upper end of the cylinder 4, thereby completing the removal of the PET self-adhesive electrode sheet 602, and then by rotating the pressing plate 501, the block 502 is driven to rotate until the block 502 cooperates with the holder 402 to achieve positioning. At this time, the second spring 505 provides a force for the clamping block 502, thereby increasing the friction between the clamping block 502 and the clamping base 402, ensuring the stability of the device's positioning, thereby completing the removal and self-locking of the PET self-adhesive electrode sheet 602. The PET self-adhesive electrode sheet 602 is then applied to the patient. During the application process, the auxiliary suction cup 509 on the lower end surface of the baffle 508 and the patient's skin can achieve auxiliary positioning of the PET self-adhesive electrode sheet 602, ensuring the stability of the PET self-adhesive electrode sheet 602 and reducing signal interference caused by patient movement. To ensure the accuracy of the detection data, after the monitoring is completed, according to the above principle, the clamping block 502 and the clamping base 402 can be separated by simply rotating the pressure plate 501. The second spring 505 and the third spring 604 can automatically reset the PET self-adhesive electrode sheet 602 and the baffle 508, thereby achieving the automatic storage and protection of the PET self-adhesive electrode sheet 602, and preventing damage or contamination of the PET self-adhesive electrode sheet 602 due to human negligence.

[0020] A monitoring method, the specific steps are as follows: S1: The handle 2 makes it easy to carry the entire device. When monitoring a patient, the EEG monitor main unit 1 is placed on a bedside table. The fixed suction cup 306 is fixed to the bedside table panel by the weight of the EEG monitor main unit 1, thereby preventing the EEG monitor main unit 1 from sliding due to collisions and other problems in the future, thereby ensuring the safety of the device. S2: When monitoring a patient, by pressing the pressure plate 501, the baffle 508 can be moved outward, releasing the sealing effect of the lower opening of the cylinder 4. The inclined plate 506 exerts pressure on the slide bar 603, so that the PET self-adhesive electrode sheet 602 moves out of the cylinder 4, so that the PET self-adhesive electrode sheet 602 can be in contact with the patient for monitoring. After use, the PET self-adhesive electrode sheet 602 can be automatically stored to avoid damage to the PET self-adhesive electrode sheet 602. S3: When the PET self-adhesive electrode sheet 602 is in contact with the patient, the auxiliary suction cup 509 can be used to increase the fixed support area, thereby ensuring the stability of the PET self-adhesive electrode sheet 602 in contact with the patient; S4: The patient's cardiac and cerebral electrical activities are monitored through the PET self-adhesive electrode sheet 602, thereby achieving patient monitoring.

[0021] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements that are inherent to such process, method, article or apparatus.

[0022] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only used to help understand the method and core ideas of the present invention. The above is only a preferred implementation method of the present invention. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principles of the present invention, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, should be regarded as the scope of protection of the present invention.

Claims

1. A hospital monitoring device, comprising a cardio-encephalogram monitor host (1), characterized in that: The front end surface of the electrocardio-encephalogram monitor main unit (1) is provided with a display screen (101), the upper end surface of the electrocardio-encephalogram monitor main unit (1) is provided with a handle (2), and the electrocardio-encephalogram monitor main unit (1) is connected to a monitoring mechanism (6) installed in the cylinder (4) via a wire; The fixed support leg (3) realizes the automatic positioning of the electrocardioencephalogram monitor main unit (1) through gravity and negative pressure adsorption, and the fixed support leg (3) is installed on the lower end surface of the electrocardioencephalogram monitor main unit (1); The regulating mechanism (5) is used to realize the storage protection and auxiliary positioning functions of the monitoring mechanism (6), and the regulating mechanism (5) is interconnected with the cylinder (4).

2. A hospital monitoring device according to claim 1, characterized in that: The fixed support leg (3) comprises a fixed cylinder (301) fixed to the lower end surface of the electrocardioencephalogram monitor main unit (1), and air holes (302) are evenly opened on the fixed cylinder (301), and a first spring (303) is fixed between the fixed cylinder (301) and the piston head (304), and the piston head (304) is located at the lower side of the air hole (302).

3. A hospital monitoring device according to claim 2, characterized in that: The piston head (304) and one end of the piston rod (305) are fixed to each other, and the piston rod (305) and the fixed cylinder (301) are slidably connected, and the other end of the piston rod (305) and the fixed suction cup (306) are fixed to each other, and the fixed suction cup (306) is connected to the fixed cylinder (301) through a conduit.

4. A hospital monitoring device according to claim 3, characterized in that: A convex ring (401) is fixed on the outer side of the upper end of the cylinder (4), a clamping seat (402) is fixed at an equal angle on the upper end surface of the cylinder (4), and a fixing plate (403) is fixed inside the cylinder (4).

5. A hospital monitoring device according to claim 4, characterized in that: The adjustment mechanism (5) comprises a pressing plate (501) arranged above the cylinder (4), and four clamping blocks (502) are fixed at equal angles on the lower end surface of the pressing plate (501), and the clamping blocks (502) and the clamping seats (402) are distributed in a one-to-one correspondence. At the same time, the clamping blocks (502) cooperate with the clamping seats (402) to achieve a positioning function.

6. A hospital monitoring device according to claim 5, characterized in that: The pressure plate (501) is connected to one end of the vertical rod (503) by a bearing, the vertical rod (503) is connected to the cylinder (4) by a sliding connection, and the other end of the vertical rod (503) is fixedly connected to the circular plate (504), and a second spring (505) is fixed between the circular plate (504) and the fixed plate (403), and four second springs (505) are distributed at equal angles with respect to the center of the circular plate (504).

7. A hospital monitoring device according to claim 6, characterized in that: Four inclined panels (506) are fixed at equal angles on the lower end surface of the circular plate (504), and a connecting rod (507) is nested and slidably connected in a chute provided on the inclined panel (506), and the connecting rod (507) is slidably connected to the cylinder (4).

8. A hospital monitoring device according to claim 7, characterized in that: The connecting rod (507) and the baffle (508) are fixedly connected, and the baffle (508) cooperates with the opening at the lower end of the cylinder (4) to achieve a sealing and shielding effect, and the baffle (508) contacts and slides with the lower end surface of the cylinder (4), and an auxiliary suction cup (509) is evenly fixed on the lower end surface of the baffle (508).

9. The hospital monitoring device according to claim 8, characterized in that: The monitoring mechanism (6) includes a mounting plate (601) arranged below the fixing plate (403), and a PET self-adhesive electrode sheet (602) is fixed to the lower end surface of the mounting plate (601), and the PET self-adhesive electrode sheet (602) is connected to the electrocardioencephalogram monitor host (1) through a wire, and a sliding rod (603) is fixed to the upper end surface of the mounting plate (601), and the sliding rod (603) and the fixing plate (403) are in sliding connection, and a third spring (604) is also fixed to the sliding rod (603) and the fixing plate (403).

10. A monitoring method, applied to the hospital monitoring device according to claim 9, characterized in that: The specific steps are as follows: S1: The handle (2) can be used to facilitate the carrying of the entire device. When monitoring a patient, the electrocardiogram and encephalogram monitor main unit (1) is placed on a bedside table, and the electrocardiogram and encephalogram monitor main unit (1) is used to force its own gravity so that the fixed suction cup (306) is adsorbed and fixed to the bedside table panel, thereby preventing the electrocardiogram and encephalogram monitor main unit (1) from sliding due to collisions and other problems in the later stage, thereby ensuring the safety of the device. S2: When monitoring a patient, by pressing the pressure plate (501), the baffle (508) can be moved outward, thereby releasing the sealing effect of the lower end opening of the cylinder (4), and cooperating with the inclined plate (506) to generate pressure on the slide bar (603), so that the PET self-adhesive electrode sheet (602) moves out of the cylinder (4), so that the PET self-adhesive electrode sheet (602) can be applied to the patient for monitoring, and after use, the PET self-adhesive electrode sheet (602) can be automatically stored to avoid damage to the PET self-adhesive electrode sheet (602); S3: When the PET self-adhesive electrode sheet (602) is in contact with the patient, the auxiliary suction cup (509) can be used to increase the fixed support area, thereby ensuring the stability of the PET self-adhesive electrode sheet (602) in contact with the patient; S4: The patient's cardiac and cerebral electrical activities are monitored by the PET self-adhesive electrode sheet (602), thereby achieving patient monitoring.

Citation Information

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