Intelligent blood pressure monitoring equipment for elderly patients

Through the automatic lifting and clamping function of the intelligent blood pressure monitoring device, the problem of cumbersome blood pressure monitoring operation in elderly patients is solved, improving operation efficiency and reducing pain risk.

CN120436601APending Publication Date: 2025-08-08THE SECOND XIANGYA HOSPITAL OF CENT SOUTH UNIV
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Patent Information

Application Number
CN202510733443.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The existing blood pressure monitoring equipment for elderly patients is complicated to operate, and requires one hand to raise the arm and the other hand to tie the cuff. The arm needs to be straightened during the monitoring process to increase the workload of staff.

Method used

An intelligent blood pressure monitoring device is designed, including a support clamp seat, lifting seat, splint and strap. The arm is automatically lifted through an electric telescopic column and lifting rod. The splint is automatically clamped, and the strap is fixed by Velcro. The monitoring panel displays blood pressure data.

Benefits of technology

It improves the operational efficiency of medical staff, reduces the trouble of arm lifting and strap tying, and reduces the risk of arm pain in elderly patients.

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Abstract

The invention belongs to the technical field of blood pressure monitoring, and particularly relates to intelligent blood pressure monitoring equipment for elderly patients, which comprises a supporting clamping seat, a lifting seat is slidably arranged on the side wall of the supporting clamping seat, the lifting seat can move up and down on the side wall of the supporting clamping seat, and a mounting seat is mounted on the side of the supporting clamping seat through a connecting support. A blood pressure monitor is arranged below the mounting base, the blood pressure monitor is composed of a first clamping plate, a second clamping plate, a bandage and a monitoring panel, the first clamping plate and the second clamping plate are rotationally arranged below the blood pressure monitor, and the first clamping plate and the second clamping plate are used for clamping the brachial artery of the upper arm of the elderly patient; the binding band is used for binding the brachial artery of the upper arm of the elderly patient and achieving blood pressure monitoring treatment, when the lifting seat moves upwards, the arm of the elderly patient can be automatically supported, the second clamping plate is opened, and the brachial artery of the upper arm of the elderly patient is automatically clamped.
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Description

Technical Field

[0001] The present invention belongs to the technical field of blood pressure monitoring, and in particular to an intelligent blood pressure monitoring device for elderly patients. Background Art

[0002] Blood pressure monitoring devices are called blood pressure monitors. A wrist cuff inflates and compresses the monitored area, blocking blood flow. The air in the cuff is then released to allow blood to flow again. Blood pressure is determined by changes in the sound and vibration produced by blood flow as blood begins to flow again. There are various types of blood pressure monitors available, suitable for different users.

[0003] The existing technology also proposes some solutions for blood pressure monitoring of elderly patients. For example, a Chinese patent with publication number CN221205413U discloses a blood pressure monitoring device for elderly patients, which includes a blood pressure monitor body, which is fixed on a flat strap. Positioning blocks are fixedly installed at both ends of the strap, so that the strap can be put on and taken off only by opening and closing the electromagnet. The convenient disassembly and assembly design meets the needs of the elderly and can avoid monitoring errors caused by improper wearing.

[0004] Elderly patients need to have their blood pressure monitored regularly, and some elderly patients are lying in bed and have difficulty moving their limbs. When monitoring the blood pressure of these patients, one hand is needed to lift the elderly patient's arm first, and then the other hand is used to tie the cuff of the blood pressure monitoring device to the brachial artery of the elderly patient's upper arm, and then the panel is used to observe whether the elderly patient's blood pressure is normal. When doing this, one hand is used to lift the arm and the other hand is used to tie the cuff, which is more troublesome and less efficient. Moreover, during the monitoring process, in order to ensure normal blood circulation, the elderly patient's arm needs to be straightened, which increases the workload of the staff.

[0005] To this end, the present invention provides an intelligent blood pressure monitoring device for elderly patients. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0007] The technical solution adopted by the present invention to solve its technical problems is: the intelligent blood pressure monitoring device for elderly patients described in the present invention comprises a support clamp seat, the side wall of the support clamp seat is slidably provided with a lifting seat, and the lifting seat can move up and down on the side wall of the support clamp seat, and a mounting seat is installed on the side of the support clamp seat through a connecting bracket, and a blood pressure monitor is arranged below the mounting seat, and the blood pressure monitor consists of a first splint, a second splint, a strap and a monitoring panel, and the first splint and the second splint are both rotatably arranged below the blood pressure monitor, the first splint and the second splint are used to clamp the brachial artery of the upper arm of the elderly patient, and the strap is used to tighten the brachial artery of the upper arm of the elderly patient and realize blood pressure monitoring processing, one end of the strap is arranged on the surface of the first splint, and the surface of the strap and the surface of the second splint are both provided with Velcro, and the monitoring panel is used to monitor the blood pressure of the elderly patient, and when the lifting seat moves upward, it can automatically support the arm of the elderly patient and open the second splint to realize automatic clamping of the brachial artery of the upper arm of the elderly patient.

[0008] When the lifting rod is fully extended under the arm of the elderly patient, the electric telescopic column is stopped and the lifting seat is controlled to move upward, so that the lifting seat lifts the arm of the elderly patient to a certain height. The height here represents convenience for subsequent medical personnel to tie the strap on the arm of the elderly patient. Such design improves the operating efficiency of medical personnel.

[0009] Preferably, the side wall of the support clamp seat is installed with an electric telescopic column 2, the telescopic end of the electric telescopic column 2 is connected to the upper end surface of the lifting seat, the side wall of the support clamp seat is provided with a limiting groove, and the side wall of the lifting seat close to the limiting groove is installed with a limiting slider, the shape of the limiting slider is adapted to the shape of the limiting groove, and the limiting slider is slidably arranged inside the limiting groove; During operation, when the lifting rod is extended under the arm of the elderly patient and the lifting seat needs to be controlled to move upward, the telescopic end of the electric telescopic column 2 can be controlled to move upward. During the upward movement of the lifting seat, it will simultaneously drive the limit slider to move inside the limit slot. Under the mutual limitation of the limit slider and the limit slot, the lifting rod is convenient for lifting the elderly patient's arm.

[0010] Preferably, the two lifting rods have different bending angles relative to the horizontal plane, and the bending degree of one of the lifting rods relative to the horizontal plane is greater than the bending angle of the other lifting rod; the outer surfaces of the two lifting rods are both sleeved with rubber pads, and the two lifting rods are designed to be separated from each other and placed at the side wall edge of the connecting seat.

[0011] Preferably, the side wall of the second splint is installed with a force-bearing frame 1, and the side wall of the connecting seat is installed with a force-bearing frame 2. When the connecting seat and the second force-bearing frame move upward, the second force-bearing frame will contact the first force-bearing frame on the side wall of the second splint, and the second splint will open to clamp the arm of the elderly patient.

[0012] Preferably, an elastic telescopic rod is installed on the side wall of the second splint, a telescopic spring is sleeved on the outer circumference of the elastic telescopic rod, and the side of the elastic telescopic rod away from the second splint is connected to the side wall of the blood pressure monitor.

[0013] Preferably, the second splint is rotatably arranged below the blood pressure monitor via a rotating shaft, a plurality of damping blocks one are installed on the outer peripheral surface of the rotating shaft, a circular groove adapted to the rotating shaft is provided inside the blood pressure monitor, and a damping block two corresponding to the damping block one is installed on the groove wall of the circular groove.

[0014] Preferably, the damping blocks 1 are designed in a circular array on the outer peripheral surface of the rotating shaft, and the damping blocks 1 and 2 are both made of rubber; such a design facilitates the slow recovery of the rotating shaft.

[0015] Preferably, two clamping frames are installed below the support clamping seat, and the two clamping frames are used to clamp the support clamping seat at the edge of the elderly patient's bed.

[0016] The beneficial effects of the present invention are as follows: 1. The intelligent blood pressure monitoring device for elderly patients described in the present invention stops the movement of the electric telescopic column when the lifting rod is fully extended under the elderly patient's arm, and controls the lifting seat to move upward, so that the lifting seat lifts the elderly patient's arm to a certain height. The height here represents the convenience for subsequent medical staff to tie the strap on the elderly patient's arm. This design improves the operating efficiency of medical staff.

[0017] 2. The intelligent blood pressure monitoring device for elderly patients described in the present invention slows down the recovery speed of the rotating shaft due to the obstruction of the damping block 1 by the damping block 2 during the recovery process of the rotating shaft, thereby avoiding the problem of arm pain in elderly patients caused by the faster recovery speed of the splint 2 due to the telescopic spring and the elastic telescopic rod, that is, the greater clamping force of the splint 2. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] Figure 1 It is a perspective view of the present invention; Figure 2 It is a structural diagram of the strap portion of the present invention; Figure 3 This is a schematic diagram of the structure of the connecting seat in the present invention; Figure 4 It is a side view structural diagram of the present invention; Figure 5 This is a schematic structural diagram of the first and second forced wheels in the present invention when they are in initial contact; Figure 6 This is a schematic diagram of the structure after the second force-bearing wheel moves above the first force-bearing wheel in the present invention; Figure 7 It is a structural schematic diagram of a portion of the load-bearing frame in the present invention; Figure 8 2 is a schematic cross-sectional view of the first and second force-bearing wheels in the present invention; Figure 9 This is a schematic diagram of the cross-sectional structure of the second splint in the present invention; Figure 10 It is a schematic structural diagram of the damping block 1 and the damping block 2 in the present invention.

[0020] In the figure: 1. Support clamp seat; 101. Limiting groove; 2. Lifting seat; 3. Mounting seat; 301. Blood pressure monitor; 302. Clamp 1; 303. Clamp 2; 304. Strap; Strap; 305. Monitoring panel; 4. Electric telescopic column 1; 5. Connecting seat; 6. Lifting rod; 7. Electric telescopic column 2; 8. Limiting slider; 9. Force frame 1; 10. Force frame 2; 11. Rectangular groove 1; 12. Horizontal axis 1; 13. Force wheel 1; 14. Force wheel 2; 15. Elastic telescopic rod; 16. Telescopic spring; 17. Rotating shaft; 18. Damping block 1; 19. Circular groove; 20. Damping block 2; 21. Clamp. DETAILED DESCRIPTION

[0021] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0022] like Figures 1 to 4As shown, an embodiment of the present invention relates to an intelligent blood pressure monitoring device for elderly patients, comprising a support clamp 1, a lifting seat 2 being slidingly provided on the side wall of the support clamp 1, and the lifting seat 2 being movable up and down on the side wall of the support clamp 1, a mounting seat 3 being installed on the side of the support clamp 1 via a connecting bracket, a blood pressure monitor 301 being provided below the mounting seat 3, and the blood pressure monitor 301 being composed of a splint 1 302, a splint 2 303, a strap 304 and a monitoring panel 305, the splint 1 302 and the splint 2 303 being rotatably provided below the blood pressure monitor 301, The first splint 302 and the second splint 303 are used to clamp the brachial artery of the upper arm of the elderly patient. The bandage 304 is used to tie the brachial artery of the upper arm of the elderly patient and realize blood pressure monitoring. One end of the bandage 304 is set on the surface of the first splint 302. The surface of the bandage 304 and the surface of the second splint 303 are both provided with Velcro. The monitoring panel 305 is used to monitor the blood pressure of the elderly patient. When the lifting seat 2 moves upward, it can automatically support the arm of the elderly patient and open the second splint 303 to realize automatic clamping of the brachial artery of the upper arm of the elderly patient. Elderly patients need regular blood pressure monitoring during work, and some elderly patients lie in bed and have difficulty moving their limbs. To monitor the blood pressure of these patients, one needs to first lift the elderly patient's arm with one hand, and then use the other hand to tie the blood pressure monitoring device's cuff to the elderly patient's upper arm brachial artery. The panel is then used to observe whether the elderly patient's blood pressure is normal. This operation is cumbersome and inefficient because one hand is used to lift the arm and the other hand is used to tie the cuff. In addition, during the monitoring process, in order to ensure normal blood circulation, the elderly patient's arm needs to be straightened, which increases the workload of the staff. Therefore, when using the intelligent blood pressure monitoring device in the embodiment of the present invention, the elderly patient's arm is first lifted and straightened by the lifting seat 2. At the same time, the lifting seat 2 will automatically open the second splint 303 during the process of lifting the elderly patient's arm. At this time, the brachial artery of the elderly patient's upper arm is just between the first splint 302 and the second splint 303. Then, the brachial artery of the elderly patient's upper arm is clamped by the first splint 302 and the second splint 303. The medical staff only needs to pull the strap 304 out from one side of the first splint 302, wrap it around the elderly patient's upper arm and stick it to the Velcro on the surface of the second splint 303 on the other side. Then, the blood pressure data displayed on the monitoring panel 305 can be used to detect whether the elderly patient's blood pressure is normal, which is convenient for the medical staff to operate. It should be noted that the monitoring functions of the monitoring panel 305 and the blood pressure monitor 301 in the embodiment of the present invention are existing technologies, that is, they can monitor the patient's blood pressure, heart rate, blood oxygen, etc., and also have a built-in voice broadcast function to guide the user's operation. The other intelligent aspects will not be elaborated on.

[0023] It should also be noted that, in the embodiment of the present invention, the strap 304 is the wrist arm strap in the prior art, and contains an inflatable rubber airbag inside. After clamping the brachial artery of the upper arm of the elderly patient, the rubber airbag inside will quickly inflate the strap 304, compress the brachial artery of the upper arm, and block the blood flow. Then, the pressure of the strap 304 is reduced at a rate of 2-3 mmHg per second, and the signal is transmitted to the monitoring panel 305 through the sensor. The monitoring panel 305 can record the pressure changes generated when the blood flow in the artery is restored, thereby realizing blood pressure monitoring of the elderly patient and determining the systolic and diastolic pressures.

[0024] The lifting seat 2 includes an electric telescopic column 4 fixedly mounted on its side wall, a connecting seat 5 fixedly mounted on the telescopic end of the electric telescopic column 4, the outer surface of the connecting seat 5 is sleeved with a rubber sleeve, and two lifting rods 6 are installed on the side of the connecting seat 5 away from the electric telescopic column 4, and the lifting rods 6 are used to lift the arms of the elderly patient; During operation, when an elderly patient lies on a hospital bed and needs blood pressure monitoring, and after the support clamp 1 is fixed, the lifting seat 2 and the lifting rod 6 are first controlled to move to the side flush with the elderly patient's arm, and then the electric telescopic column 4 is controlled so that its telescopic end drives the connecting seat 5 to move toward the side close to the elderly patient's arm, so that the connecting seat 5 drives the lifting rod 6 to move under the elderly patient's arm. When the lifting rod 6 is fully extended under the elderly patient's arm, the electric telescopic column 4 is stopped from moving, and the lifting seat 2 is controlled to move upward, so that the lifting seat 2 lifts the elderly patient's arm to a certain height. The height here is for the convenience of subsequent medical staff to tie the strap 304 on the elderly patient's arm. This design improves the operating efficiency of medical staff.

[0025] like Figures 2 to 6 As shown, the side wall of the support clamp seat 1 is installed with an electric telescopic column 2 7, the telescopic end of the electric telescopic column 2 7 is connected to the upper end surface of the lifting seat 2, the side wall of the support clamp seat 1 is provided with a limit groove 101, and the side wall of the lifting seat 2 close to the limit groove 101 is installed with a limit slider 8, the shape of the limit slider 8 is adapted to the shape of the limit groove 101, and the limit slider 8 is slidably arranged inside the limit groove 101; During operation, when the lifting rod 6 is extended under the arm of the elderly patient and the lifting seat 2 needs to be controlled to move upward, it is sufficient to control the telescopic end of the electric telescopic column 2 7 to move upward. During the upward movement of the lifting seat 2, it will simultaneously drive the limit slider 8 to move inside the limit groove 101. Under the mutual limitation of the limit slider 8 and the limit groove 101, the lifting rod 6 is convenient for lifting the elderly patient's arm.

[0026] The two lifting rods 6 have different bending angles relative to the horizontal plane, and the bending angle of one of the lifting rods 6 relative to the horizontal plane is greater than the bending angle of the other lifting rod 6; the outer surfaces of the two lifting rods 6 are sleeved with rubber pads, and the two lifting rods 6 are designed to be separated from each other and placed at the edge of the side wall of the connecting seat 5; When working, refer to the attached Figure 4 As shown, the two lifting rods 6 have different bending angles relative to the horizontal plane, that is, when the lifting rods 6 move upward to lift the elderly patient's arm, the lifting rod 6 with a higher bending angle relative to the horizontal plane will first contact the elderly patient's arm near the axillary artery. At this time, before the other lifting rod 6 contacts the elderly patient's arm, the elderly patient's arm will be in a suspended state. Then, the elderly patient's arm will be straightened according to its own tendency, and the front arm will be pressed on top of the other lifting rod 6. In this way, the elderly patient's arm can be straightened conveniently, that is, the blood pressure of the elderly patient can be monitored conveniently under the condition of unobstructed blood flow. It should also be noted that the two lifting rods 6 are designed to be separated from each other, which makes it convenient for subsequent medical staff to wrap the strap 304 around the brachial artery of the patient's arm. It should also be noted that the lifting rod 6 with a higher curvature relative to the horizontal plane will first contact the side of the elderly patient's arm close to the axillary artery, not the elderly patient's armpit, but between the brachial artery and the axillary artery of the arm.

[0027] The side wall of the second splint 303 is installed with a force frame 9, and the side wall of the connecting seat 5 is installed with a force frame 10. When the connecting seat 5 and the force frame 10 move upward, the force frame 10 will contact the force frame 9 on the side wall of the second splint 303, and the second splint 303 will open to clamp the elderly patient's arm; During operation, when the two lifting rods 6 are placed under the elderly patient's arms and the lifting seat 2 moves up following the telescopic end of the electric telescopic column 2 7, the lifting seat 2 will simultaneously drive the connecting seat 5 and the force-bearing frame 2 10 to move, so that the force-bearing frame 2 10 moves to the side close to the force-bearing frame 1 9, and then the force-bearing frame 2 10 will contact and press with the force-bearing frame 1 9, so that the force-bearing frame 1 9 drives the splint 2 303 to rotate at a certain angle, and at this time the elderly patient's arm also just moves between the splint 1 302 and the splint 2 303, thereby improving the subsequent blood pressure monitoring efficiency of the elderly patient.

[0028] like Figures 3 to 9 As shown, a rectangular groove 11 is formed on the surface of the force-bearing frame 1 9 , a horizontal shaft 12 is installed inside the rectangular groove 11 , a force-bearing wheel 13 is rotatably provided on the outer circumference of the horizontal shaft 12 , and a force-bearing wheel 2 14 is installed inside the force-bearing frame 2 10 . When the force-bearing frame 2 10 moves upward, the force-bearing wheel 2 14 will contact the force-bearing wheel 13 ; During operation, when the connecting seat 5 moves upward, that is, when the connecting seat 5 moves upward and drives the force frame 2 10 and the force wheel 2 14 to move, the force wheel 2 14 will contact the force wheel 1 13 and press the force wheel 1 13. Since the force wheel 13 is rotatably arranged on the outer surface of the horizontal axis 12, the force wheel 2 14 will have two states when contacting the force wheel 1 13, and refer to the attached Figure 5 and Figure 6 Move as shown; The first state: when the force wheel 2 14 is in initial contact with the force wheel 1 13, refer to the attached Figure 5 As shown, at this time, under the pressure of the second force wheel 14 on the first force wheel 13, the second splint 303 connected to the first force wheel 13 will rotate to a certain extent, that is, the second splint 303 will rotate to the side away from the first splint 302. At this time, the elderly patient's arm will gradually rise between the second splint 303 and the first splint 302. The second state: Since the force wheel 13 is rotated and arranged on the outer peripheral surface of the horizontal axis 12, and as the force wheel 2 14 continues to move upward, the force wheel 2 14 will gradually separate from the force wheel 13 and move to the position as shown in the figure. Figure 6 As shown, at this time, the elderly patient's arm has been completely placed between splint 2 303 and splint 1 302. At this time, the force-bearing wheel 1 13 is not in contact with the force-bearing wheel 2 14, that is, splint 2 303 is no longer subjected to the supporting force, so splint 2 303 will return to its initial position and clamp the elderly patient's arm, realizing the function of automatically clamping the elderly patient's arm, and the operation is more convenient.

[0029] The side wall of the second splint 303 is installed with an elastic telescopic rod 15, the outer circumference of which is sleeved with a telescopic spring 16. The side of the elastic telescopic rod 15 away from the second splint 303 is connected to the side wall of the blood pressure monitor 301; During operation, when the second splint 303 rotates to the side away from the first splint 302, that is, when it rotates as in the first state mentioned above, the second splint 303 will simultaneously compress the elastic telescopic rod 15 and the telescopic spring 16 on its side wall. Subsequently, when it moves to the second state mentioned above, that is, when the second splint 303 is no longer subjected to the supporting force, under the elastic force of the elastic telescopic rod 15 and the telescopic spring 16, the second splint 303 will return to its initial position, and under the pressure of the elastic telescopic rod 15 and the telescopic spring 16, the clamping force of the first splint 302 and the second splint 303 on the arm of the elderly patient can be improved, making it convenient for subsequent medical staff to directly tie the strap 304 to the brachial artery of the elderly patient's arm, which is more convenient to operate.

[0030] The second clamping plate 303 is rotatably disposed below the blood pressure monitor 301 via a rotating shaft 17. A plurality of damping blocks 18 are mounted on the outer circumference of the rotating shaft 17. A circular groove 19 adapted to the rotating shaft 17 is disposed within the blood pressure monitor 301. Damping blocks 20 corresponding to the damping blocks 18 are mounted on the groove wall of the circular groove 19. During operation, when the second splint 303 follows the elastic telescopic rod 15 and the telescopic spring 16 to recover, refer to the attached Figure 9 and Figure 10 As shown, due to the design of the damping block 18 and the damping block 2 20, during the rotation recovery process of the shaft 17, the damping block 2 20 blocks the damping block 18, which slows down the recovery speed of the shaft 17, thereby avoiding the problem of arm pain in elderly patients caused by the faster recovery speed of the splint 2 303 due to the telescopic spring 16 and the elastic telescopic rod 15, that is, the larger clamping force of the splint 2 303.

[0031] The damping blocks 18 are arranged in a circular array on the outer peripheral surface of the rotating shaft 17 . The damping blocks 18 and 20 are both made of rubber. This design facilitates the slow recovery of the rotating shaft 17 .

[0032] Two clamping frames 21 are installed below the support clamping base 1 , and the two clamping frames 21 are used to clamp the support clamping base 1 at the edge of the elderly patient's bed.

[0033] During operation, the arm of the elderly patient is lifted and straightened by the lifting seat 2. At the same time, the lifting seat 2 will automatically open the second splint 303 during the process of lifting the elderly patient's arm. At this time, the brachial artery of the elderly patient's upper arm is just between the first splint 302 and the second splint 303. Then, the brachial artery of the elderly patient's upper arm is clamped by the first splint 302 and the second splint 303. The medical staff only needs to pull the strap 304 out from one side of the first splint 302, wrap it around the elderly patient's upper arm and stick it to the Velcro on the surface of the second splint 303 on the other side. Then, the blood pressure data displayed on the monitoring panel 305 can be used to check whether the blood pressure of the elderly patient is normal, which is convenient for the medical staff to operate. When the elderly patient lies on the bed and needs blood pressure monitoring, and after the support clamp seat 1 is fixed, the lifting seat 2 and the lifting rod 6 are first controlled to move to the side flush with the elderly patient's arm, and then the electric telescopic column 1 is controlled to make its telescopic end drive the connecting seat 5 to move toward the side close to the elderly patient's arm, so that the connecting seat 5 drives the lifting rod 6 to move under the elderly patient's arm. When the lifting rod 6 is completely extended under the elderly patient's arm, the electric telescopic column 1 is stopped from moving, and the lifting seat 2 is controlled to move up, so that the lifting seat 2 lifts the elderly patient's arm to A certain height, the height here means that it is convenient for subsequent medical staff to tie the strap 304 on the arm of the elderly patient. Such a design improves the operating efficiency of the medical staff; when the lifting rod 6 is extended under the arm of the elderly patient and it is necessary to control the lifting seat 2 to move up, at this time, it is sufficient to control the telescopic end of the electric telescopic column 2 7 to move up, and during the upward movement of the lifting seat 2, it will simultaneously drive the limit slider 8 to move inside the limit slot 101. Under the mutual limitation of the limit slider 8 and the limit slot 101, it is convenient for the lifting rod 6 to lift the elderly patient's arm.

[0034] Refer to the attached Figure 4 As shown, the two lifting rods 6 have different bending angles relative to the horizontal plane, that is, when the lifting rods 6 move upward to lift the elderly patient's arm, the lifting rod 6 with a higher bending angle relative to the horizontal plane will first contact the side of the elderly patient's arm close to the axillary artery. At this time, before the other lifting rod 6 contacts the elderly patient's arm, the elderly patient's arm will be in a vacant state first, and then the elderly patient's arm will be straightened according to the trend of the arm itself, and the front arm will be pressed on top of the other lifting rod 6, so that the elderly patient's arm can be straightened conveniently, that is, it is convenient to keep the blood flowing smoothly. Blood pressure monitoring for elderly patients; when the two lifting rods 6 are placed under the elderly patient's arms, and the lifting seat 2 moves up following the telescopic end of the electric telescopic column 2 7, the lifting seat 2 will simultaneously drive the connecting seat 5 and the force-bearing frame 2 10 to move, so that the force-bearing frame 2 10 moves toward the side close to the force-bearing frame 1 9, and then the force-bearing frame 2 10 will contact and press against the force-bearing frame 1 9, so that the force-bearing frame 1 9 drives the splint 2 303 to rotate at a certain angle, and at this time the elderly patient's arm also just moves between the splint 1 302 and the splint 2 303, thereby improving the subsequent blood pressure monitoring efficiency of the elderly patient.

[0035] When the connecting seat 5 moves upward, that is, when the connecting seat 5 moves upward and drives the force frame 2 10 and the force wheel 2 14 to move, the force wheel 2 14 will contact the force wheel 1 13 and press the force wheel 1 13. Since the force wheel 13 is rotatably arranged on the outer surface of the horizontal axis 12, the force wheel 2 14 will have two states when contacting the force wheel 1 13, and refer to the attached figure. Figure 5 and Figure 6 As shown in the movement, one state: when the force wheel 2 14 is initially in contact with the force wheel 1 13, refer to the attached Figure 5 As shown, at this time, under the pressure of the force-bearing wheel 2 14 on the force-bearing wheel 1 13, the splint 2 303 connected to the force-bearing wheel 1 13 will be rotated to a certain extent, that is, the splint 2 303 will be rotated to the side away from the splint 1 302. At this time, the elderly patient's arm will gradually rise to between the splint 2 303 and the splint 1 302; the second state: since the force-bearing wheel 1 13 is rotated and set on the outer peripheral surface of the horizontal axis 12, and as the force-bearing wheel 2 14 continues to move upward, the force-bearing wheel 2 14 will gradually separate from the force-bearing wheel 1 13 and move to the position shown in the attached figure. Figure 6 As shown, at this time, the elderly patient's arm has been completely placed between the second splint 303 and the first splint 302. At this time, the force-bearing wheel 13 is no longer in contact with the force-bearing wheel 14, that is, the second splint 303 is no longer subjected to the supporting force, so the second splint 303 will return to its initial position and clamp the elderly patient's arm, realizing the function of automatically clamping the elderly patient's arm, which is more convenient to operate. When the second splint 303 is rotated to the side away from the first splint 302, that is, when it is rotated as in the first state mentioned above, the second splint 303 will simultaneously compress the elastic telescopic rod 15 and the telescopic spring 16 of its side wall. Subsequently, when it moves to the second state mentioned above, that is, when the second splint 303 is no longer subjected to the supporting force, under the elastic force of the elastic telescopic rod 15 and the telescopic spring 16, the second splint 303 will return to its initial position, and under the pressure of the elastic telescopic rod 15 and the telescopic spring 16, the clamping force of the first splint 302 and the second splint 303 on the elderly patient's arm can be improved, making it convenient for subsequent medical staff to directly tie the bandage 304 to the brachial artery of the elderly patient's arm, which is more convenient to operate; when the second splint 303 follows the elastic telescopic rod 15 and the telescopic spring 16 to recover, refer to the attached Figure 9 and Figure 10 As shown, due to the design of the damping block 18 and the damping block 2 20, during the rotation recovery process of the shaft 17, the damping block 2 20 blocks the damping block 18, which slows down the recovery speed of the shaft 17, thereby avoiding the problem of arm pain in elderly patients caused by the faster recovery speed of the splint 2 303 due to the telescopic spring 16 and the elastic telescopic rod 15, that is, the larger clamping force of the splint 2 303.

[0036] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. An intelligent blood pressure monitoring device for elderly patients, characterized by: The invention comprises a support clamp seat (1), a lifting seat (2) is slidingly provided on the side wall of the support clamp seat (1), and the lifting seat (2) can move up and down on the side wall of the support clamp seat (1); a mounting seat (3) is installed on the side of the support clamp seat (1) through a connecting bracket; a blood pressure monitor (301) is provided below the mounting seat (3); the blood pressure monitor (301) is composed of a first splint (302), a second splint (303), a strap (304) and a monitoring panel (305); the first splint (302) and the second splint (303) are both rotatably provided below the blood pressure monitor (301); the first splint (302) and the second splint (303) are ... ) and the second splint (303) are used to clamp the brachial artery of the upper arm of the elderly patient, the strap (304) is used to tie the brachial artery of the upper arm of the elderly patient and realize blood pressure monitoring, one end of the strap (304) is set on the surface of the first splint (302), and the surface of the strap (304) and the surface of the second splint (303) are both provided with Velcro, the monitoring panel (305) is used to monitor the blood pressure of the elderly patient, and the lifting seat (2) can automatically support the arm of the elderly patient when moving upward, and open the second splint (303) to realize automatic clamping of the brachial artery of the upper arm of the elderly patient.

2. The intelligent blood pressure monitoring device for elderly patients according to claim 1, characterized in that: The lifting seat (2) includes an electric telescopic column (4) fixedly mounted on its side wall, a connecting seat (5) fixedly mounted on the telescopic end of the electric telescopic column (4), a rubber sleeve being sleeved on the outer surface of the connecting seat (5), and two lifting rods (6) being mounted on a side of the connecting seat (5) away from the electric telescopic column (4), and the lifting rods (6) are used to lift the arms of elderly patients.

3. The intelligent blood pressure monitoring device for elderly patients according to claim 2, characterized in that: The side wall of the support clamp seat (1) is installed with an electric telescopic column 2 (7), the telescopic end of the electric telescopic column 2 (7) is connected to the upper end surface of the lifting seat (2), the side wall of the support clamp seat (1) is provided with a limiting groove (101), and the side wall of the lifting seat (2) close to the limiting groove (101) is installed with a limiting slider (8), the shape of the limiting slider (8) is adapted to the shape of the limiting groove (101), and the limiting slider (8) is slidably arranged inside the limiting groove (101).

4. The intelligent blood pressure monitoring device for elderly patients according to claim 2, characterized in that: The two lifting rods (6) have different bending angles relative to the horizontal plane, and the bending angle of one of the lifting rods (6) relative to the horizontal plane is greater than the bending angle of the other lifting rod (6); the outer surfaces of the two lifting rods (6) are both sleeved with rubber pads, and the two lifting rods (6) are designed to be separated from each other and placed at the edge of the side wall of the connecting seat (5).

5. The intelligent blood pressure monitoring device for elderly patients according to claim 4, characterized in that: The side wall of the second splint (303) is installed with a force frame (9), and the side wall of the connecting seat (5) is installed with a force frame (10). When the connecting seat (5) and the force frame (10) are moved upward, the force frame (10) will contact the force frame (9) on the side wall of the second splint (303), and the second splint (303) will open to clamp the arm of the elderly patient.

6. The intelligent blood pressure monitoring device for elderly patients according to claim 5, characterized in that: A rectangular groove (11) is provided on the surface of the force-bearing frame (9), a transverse axis (12) is installed inside the rectangular groove (11), a force-bearing wheel (13) is rotatably provided on the outer peripheral surface of the transverse axis (12), and a force-bearing wheel (14) is installed inside the force-bearing frame (10), and when the force-bearing frame (10) moves upward, the force-bearing wheel (14) contacts the force-bearing wheel (13).

7. The intelligent blood pressure monitoring device for elderly patients according to claim 6, characterized in that: An elastic telescopic rod (15) is installed on the side wall of the second splint (303), and a telescopic spring (16) is sleeved on the outer peripheral surface of the elastic telescopic rod (15). The side of the elastic telescopic rod (15) away from the second splint (303) is connected to the side wall of the blood pressure monitor (301).

8. The intelligent blood pressure monitoring device for elderly patients according to claim 7, characterized in that: The second splint (303) is rotatably arranged below the blood pressure monitor (301) via a rotating shaft (17), and a plurality of damping blocks (18) are installed on the outer peripheral surface of the rotating shaft (17). A circular groove (19) adapted to the rotating shaft (17) is provided inside the blood pressure monitor (301), and a damping block (20) corresponding to the damping block (18) is installed on the groove wall of the circular groove (19).

9. The intelligent blood pressure monitoring device for elderly patients according to claim 8, characterized in that: The damping block 1 (18) is designed in a circular array on the outer peripheral surface of the rotating shaft (17), and the damping block 1 (18) and the damping block 2 (20) are both made of rubber.

10. The intelligent blood pressure monitoring device for elderly patients according to claim 1, characterized in that: Two clamping frames (21) are installed below the support clamping seat (1), and the two clamping frames (21) are used to clamp the support clamping seat (1) at the edge of the elderly patient's bed.

Citation Information

Patent Citations

  • Blood pressure monitoring device for elderly patients

    CN221205413U