Post-anesthesia awakening bed of supporting assembly and medical health big data sharing platform
By designing a post-anesthesia awakening bed with supporting components and a medical health big data sharing platform, combined with bed tilt, red laser pen, wristband monitoring, electric shock and tapping structure, the problems of single post-anesthesia awakening method and inaccurate monitoring are solved, and efficient and safe patient awakening and monitoring are achieved.
Patent Information
- Application Number
- CN202511115469.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-11
- Publication Date
- 2025-10-10
AI Technical Summary
The existing post-anesthesia awakening method is single and lacks multiple means. The monitoring equipment is complicated to operate and the detection is inaccurate, which cannot meet the needs of efficient and safe patient awakening and monitoring.
A post-anesthesia wake-up bed with support components and a medical health big data sharing platform was designed. Combining bed tilt, red laser pen, wristband monitoring, electric shock and tapping structures, it promotes the patient's consciousness recovery in multiple ways and monitors the patient's physical condition in real time.
It achieves the synergistic effect of multiple means, improves the efficiency of awakening patients after anesthesia, ensures the accuracy and security of monitoring data, and meets the efficient awakening and monitoring needs of modern medicine.
Smart Images

Figure CN120754398A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical devices, in particular to a support assembly and an anesthesia postoperative wake-up bed of a medical and health big data sharing platform. BACKGROUND
[0002] In the medical field, the consciousness recovery of patients after anesthesia is of great importance. The traditional wake-up method is relatively single, and lacks multiple means to effectively promote consciousness recovery. For the monitoring of the patient's physical condition, some devices are complex to operate, and are not closely in contact with the patient's skin, which can easily result in inaccurate detection data or detection structure disengagement.
[0003] During the wake-up process, the ways of stimulating the patient's body are limited, and the patient's consciousness recovery cannot be well stimulated. For example, single manual knocking or simple electric shock, which has poor effect and is difficult to control the force and frequency. At the same time, there is a lack of devices that can simultaneously integrate multiple wake-up methods and monitor the patient's physical condition in real time, and accurately transmit the data to the medical platform, which cannot meet the needs of modern medicine for efficient and safe wake-up and monitoring of patients after anesthesia. SUMMARY
[0004] The purpose of the present application is to solve the problems of single wake-up method and inconvenient monitoring of the existing wake-up method, and to provide a support assembly and an anesthesia postoperative wake-up bed of a medical and health big data sharing platform.
[0005] In order to achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:
[0006] The support assembly comprises:
[0007] A bed frame is provided, and a first bed plate is fixed in the bed frame. A second bed plate is rotatably connected in the bed frame. The first bed plate and the second bed plate cooperate to bear the patient.
[0008] A driving structure is provided, comprising a bidirectional screw rod rotatably connected in the bed frame, a first support plate slidingly fitted at the bottom of the second bed plate, and two sliding seats.
[0009] The two sliding seats are respectively threadedly fitted on the forward and reverse threaded segments of the bidirectional screw rod. The top of each sliding seat is rotatably connected with a connecting rod. The top end of each connecting rod is rotatably connected with a rotating support.
[0010] The bottom of the first support plate is provided with two guide grooves, and a fixed rod is fixed in each guide groove. The rotating support is rotatably connected to the outer wall of the fixed rod.
[0011] The bidirectional screw rod is rotated to drive the two sliding seats to move towards each other. The first support plate is pushed upward by the connecting rod, so that the second bed plate is rotated and inclined by 15-30°, so as to increase the cerebral perfusion pressure and accelerate the consciousness recovery of the patient.
[0012] In a possible design, a guide rod is fixed in the bed frame, and the two sliding seats are slidingly sleeved on the outer wall of the guide rod to restrict the moving direction.
[0013] In a possible design, a red laser pen is embedded on the side of the second bed plate away from the first bed plate, a scale table is fixed on the top of the bed frame, and the red laser pen and the scale table cooperate to determine the rotation angle of the second bed plate.
[0014] The anesthesia postoperative awakening bed of the medical and health big data sharing platform comprises the support assembly, and further comprises:
[0015] Two hand rings, one side of each of the two hand rings is rotationally connected with a rotating rod, and one end of each of the two rotating rods is fixed with a hollow sphere;
[0016] A knocking plate is slidingly connected to the top of the first bed plate and used for knocking the instep of the patient;
[0017] A monitoring structure is arranged on the hand ring and used for monitoring the physical condition of the patient in real time;
[0018] An electric shock structure is arranged in the hollow sphere and used for electrically shocking the fingers of the patient;
[0019] A knocking structure is arranged on the first bed plate and used for intermittently knocking the instep of the patient by the knocking plate, and the knocking structure can synchronously drive the electric shock structure to intermittently electrically shock the patient;
[0020] Two second support plates are fixed in the bed frame, and the two second support plates are located at the bottom of the first bed plate and used for supporting the first bed plate;
[0021] The monitoring structure comprises a detection structure to detect the heart rate, blood pressure and body temperature of the patient and transmit the same to the medical and health big data sharing platform through a Bluetooth module, and the electric shock structure and the knocking structure generate pain signals through intermittent electric shock and knocking to promote the recovery of consciousness.
[0022] In a possible design, the monitoring structure comprises a hollow screw rod rotatably connected to the bottom of the bracelet and a ring-shaped groove arranged in the bracelet, the monitoring structure further comprises a rotating ring rotatably arranged in the ring-shaped groove, a ring-shaped rubber air bag fixed to the inner wall of the rotating ring, and a detection structure fixed to the inner wall of the ring-shaped rubber air bag, the bottom end of the hollow screw rod is threaded through the No. 1 bed plate and abuts against the top of the adjacent No. 2 support plate, a piston plate is sealingly and slidably connected in the hollow screw rod, a jack rod is arranged in the hollow screw rod, the bottom end of the jack rod is fixedly connected to the top of the adjacent No. 2 support plate, the top end of the jack rod is configured to push the piston plate upward, the top of the piston plate is connected to the inner wall of the top of the hollow screw rod through a No. 1 spring, a hose is fixedly and continuously connected to the top end of the hollow screw rod, and the top end of the hose is continuously connected to the ring-shaped rubber air bag, so that when the hollow screw rod is threaded through the No. 1 bed plate, the jack rod pushes the piston plate upward to inject air into the ring-shaped rubber air bag, and the detection structure is tightly attached to the skin of the patient.
[0023] In a possible design, the detection structure is composed of an electrode sheet, a pressure sensor and a temperature sensor, which are used to detect the heart rate, blood pressure and body temperature of the patient in real time.
[0024] In a possible design, the electric shock structure comprises three electrode sheets arranged in a hollow sphere, two cross bars fixed in the hollow sphere, a push plate slidingly sleeved on the outer wall of the cross bar, and three extension rods slidingly penetrating one side of the hollow sphere, the three electrode sheets are respectively fixedly embedded at one end of the three extension rods away from the push plate, the push plate cooperates with the extension rods to push the extension rods to move outward of the hollow sphere, a fixing ring is fixedly and sleeved on the outer wall of the extension rod, a No. 2 spring is connected between the fixing ring and the inner wall of the hollow sphere to reset the extension rod, a trapezoidal block is fixed to the side of the push plate away from the extension rod, a trapezoidal rod slidingly penetrates the bottom of the hollow sphere and cooperates with the trapezoidal block to drive the push plate to move.
[0025] In a possible design, the wall thickness of the hollow sphere is 0.5cm-1cm, so that the electrode sheet is located in the hollow sphere after the extension rod is reset.
[0026] In a possible design, the knocking structure comprises two connecting ears slidingly connected in the No. 1 bed plate, the top ends of the two connecting ears are respectively fixedly connected to the bottom of both sides of a knocking plate, an installation base plate is fixed to the top of the No. 1 bed plate, two threaded rods slidingly penetrate the installation base plate and are fixedly connected to the knocking plate at one end, a nut block is threadedly sleeved on the outer wall of the threaded rod, a No. 3 spring is abutted between the nut block and the installation base plate to drive the knocking plate to reset, two transmission rods are rotatably connected between the two No. 2 support plates, a driving disc is fixedly sleeved on the outer wall of the transmission rod, a No. 1 arc-shaped plate is fixed to the side of the driving disc close to the connecting ear, and a No. 2 arc-shaped plate is fixed to the side of the connecting ear and cooperates with the No. 1 arc-shaped plate to intermittently drive the connecting ear to move.
[0027] In a possible design, the bottom end of the trapezoidal rod is threadedly connected with a connecting rod, the bottom end of the connecting rod is slidably penetrated through the No. I bed plate, the outer wall of the transmission rod is fixedly sleeved with a cam, and the cam cooperates with the connecting rod to intermittently drive the connecting rod to move upwards, so as to synchronously drive the electric shock structure.
[0028] Beneficial effects: in the application, the rotating ring rotates in the annular groove, the inner wall of the rotating ring is fixedly provided with an annular rubber air bag, the inner wall of the annular rubber air bag is fixedly provided with a detection structure, the bottom end of the hollow lead screw is threadedly penetrated through the No. I bed plate, the hollow lead screw is slidably and tightly connected with a piston plate, the hollow lead screw is provided with a jacking rod, the bottom end of the jacking rod is fixedly connected with the top of the adjacent No. II supporting plate, and the hollow lead screw is fixedly communicated with the annular rubber air bag through a hose; the hollow lead screw is threadedly penetrated through the No. I bed plate, and the jacking rod top end pushes the piston plate to move upwards during the penetration process; the piston plate injects the air in the hollow lead screw into the annular rubber air bag through the hose; after the annular rubber air bag is inflated, the detection structure installed on the inner wall of the annular rubber air bag is in contact with the skin of the patient, and the heart rate, blood pressure and body temperature of the patient are detected in real time; the operation is simple, and the detection structure is prevented from being separated from the patient;
[0029] In the application, the hollow sphere is slidably provided with a push plate through a cross bar, one side of the hollow sphere is slidably penetrated through three extension rods, three electric sheets are respectively fixedly embedded at one end of the three extension rods away from the push plate, the push plate is fixedly provided with a trapezoidal block on the side away from the extension rods, and the bottom of the hollow sphere is slidably penetrated through a trapezoidal rod. The cam intermittently pushes the connecting rod and the trapezoidal rod to move upwards, the trapezoidal rod cooperates with the trapezoidal block to drive the push plate to move to one side, the push plate pushes the three extension rods to move outward, the No. II spring is in a compressed state under the action of the fixing ring, and when the extension rod extends to the outside of the hollow sphere, the electric sheet at one end of the extension rod is in contact with the fingers of the patient, so that the fingers of the patient are electrically shocked through the electric sheet, and consciousness recovery is promoted.
[0030] In the application, the top ends of the two connecting ears are fixedly connected with the bottom of the two sides of the knocking plate, two threaded rods are slidably penetrated through the mounting base plate, one end of each of the two threaded rods is fixedly connected with the knocking plate, drive discs are fixedly sleeved on the outer walls of the two transmission rods, No. I arc-shaped plates are fixedly arranged on the sides of the two drive discs close to the connecting ears, and No. II arc-shaped plates are fixedly arranged on the sides of the two connecting ears. The transmission rod drives the No. I arc-shaped plate to rotate through the drive disc, the No. I arc-shaped plate and the No. II arc-shaped plate cooperate to intermittently drive the connecting ears to move, the connecting ears drive the knocking plate to move, when the No. I arc-shaped plate and the No. II arc-shaped plate are separated from each other, the knocking plate is reset by the elastic force of the No. III spring, the instep of the patient is knocked, a pain signal is generated again, and consciousness recovery is further promoted.
[0031] In the present application, the bottom end of the trapezoidal rod is threadedly connected with a connecting rod, the outer wall of the transmission rod is fixedly sleeved with a cam, the outer walls of the two transmission rods are fixedly sleeved with driving discs, the sides of the two driving discs close to the connecting ears are fixedly provided with No.I arc-shaped plates, and the sides of the two connecting ears are fixedly provided with No.II arc-shaped plates.
[0032] In the present application, the monitoring structure is simple to operate, the detection structure is closely attached to the skin through hollow lead screws and other components to avoid disengagement, the heart rate, blood pressure and body temperature of the patient are accurately detected and uploaded, the electric shock structure is driven by cams and the like to intermittently electrically shock the fingers of the patient, the consciousness recovery is promoted, the knocking structure intermittently knocks the instep through the driving rod and the like to generate a pain signal to assist in awakening, and the driving rod rotation can simultaneously drive the knocking and electric shock, multiple means are combined to greatly improve the awakening efficiency, and the needs of efficient, safe awakening and real-time monitoring of the patient after anesthesia are met. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 It is a three-dimensional explosion structure schematic view of the support assembly provided by the present application;
[0034] Figure 2 It is a three-dimensional explosion structure schematic view of the No.I bed plate, No.II bed plate and No.I support plate of the support assembly provided by the present application;
[0035] Figure 3 It is a three-dimensional cross-sectional structure schematic view of the No.I support plate of the support assembly provided by the present application;
[0036] Figure 4 It is a three-dimensional structure schematic view of the anesthesia postoperative awakening bed of the medical health big data sharing platform provided by the present application;
[0037] Figure 5 It is a three-dimensional explosion structure schematic view of the No.I bed plate, No.II support plate and transmission rod of the anesthesia postoperative awakening bed of the medical health big data sharing platform provided by the present application;
[0038] Figure 6 It is a cross-sectional view of the hollow lead screw of the anesthesia postoperative awakening bed of the medical health big data sharing platform provided by the present application, and a three-dimensional explosion structure schematic view of the bracelet and annular rubber air bag;
[0039] Figure 7 It is a three-dimensional cross-sectional structure schematic view of the hollow sphere of the anesthesia postoperative awakening bed of the medical health big data sharing platform provided by the present application;
[0040] Figure 8The three-dimensional explosion structure schematic diagram of the push plate, the extension rod and the electric sheet of the post-anesthesia wake-up bed of the medical health big data sharing platform provided by the application;
[0041] Figure 9 The three-dimensional explosion structure schematic diagram of the knocking plate, the No. III spring and the mounting base plate of the post-anesthesia wake-up bed of the medical health big data sharing platform provided by the application;
[0042] Figure 10 The three-dimensional explosion structure schematic diagram of the driving disc, the No. I arc-shaped plate and the connecting lug of the post-anesthesia wake-up bed of the medical health big data sharing platform provided by the application.
[0043] In the figure: 1, bed frame; 2, No. I bed plate; 3, No. II bed plate; 4, No. I support plate; 5, guide groove; 6, fixed rod; 7, rotating support; 8, bidirectional screw rod; 9, sliding seat; 10, guide rod; 11, connecting rod; 12, red laser pen; 13, scale table; 14, bracelet; 15, annular groove; 16, rotating ring; 17, annular rubber air bag; 18, detection structure; 19, hollow screw rod; 20, hose; 21, piston plate; 22, No. I spring; 23, jacking rod; 24, No. II support plate; 25, rotating rod; 26, hollow sphere; 27, cross rod; 28, push plate; 29, trapezoidal block; 30, trapezoidal rod; 31, extension rod; 32, electric sheet; 33, fixing ring; 34, No. II spring; 35, mounting base plate; 36, threaded rod; 37, knocking plate; 38, nut block; 39, No. III spring; 40, connecting lug; 41, transmission rod; 42, driving disc; 43, No. I arc-shaped plate; 44, No. II arc-shaped plate; 45, connecting rod; 46, cam. DETAILED DESCRIPTION
[0044] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application.
[0045] In an embodiment, referring to Figures 1-3 , the support assembly relates to the technical field of medical devices and mainly comprises a bed frame 1, wherein the bed frame 1 is made of high-strength aluminum alloy material and has sufficient strength and stability to bear a patient. A No. I bed plate 2 is fixed in the bed frame 1, wherein the No. I bed plate 2 is rectangular and is made of hard wood board and covered with a soft sponge pad on the surface. A No. II bed plate 3 is also rotatably connected in the bed frame 1. The No. I bed plate 2 and the No. II bed plate 3 are used in cooperation to bear the patient, and when the patient lies flat, the head can be placed on the No. II bed plate 3.
[0046] Referring to Figures 1-3, in order to make the second bed board 3 tilt, accelerate the patient's consciousness recovery, the driving structure is arranged in the bed frame 1. The driving structure comprises a bidirectional screw rod 8 rotating in the bed frame 1, and the bidirectional screw rod 8 is made of stainless steel. One end of the bidirectional screw rod 8 is rotatably connected to the inner wall of the bed frame 1, and the other end extends to the outside of the bed frame 1 and is connected with a hand wheel, which is convenient for manual rotation. The driving structure further comprises two sliding seats 9, and the two sliding seats 9 are threadedly sleeved on the positive and negative threaded segments of the bidirectional screw rod 8. The top of each of the two sliding seats 9 is rotatably connected to a connecting rod 11, and the connecting rod 11 is made of a steel pipe. The top of each of the two connecting rods 11 is rotatably connected to a rotating support 7. Two guide grooves 5 are arranged at the bottom of the first support plate 4. Two fixed rods 6 are fixedly arranged in the two guide grooves 5, and the fixed rods 6 are cylindrical. Two rotating supports 7 are rotatably sleeved on the outer walls of the two fixed rods 6. A guide rod 10 is fixedly arranged in the bed frame 1, and the guide rod 10 is cylindrical. The two sliding seats 9 are slidably sleeved on the outer wall of the guide rod 10, and are used for restricting the movement of the sliding seat 9, so that the sliding seat 9 can only move linearly along the guide rod 10.
[0047] In specific use, when the second bed board 3 needs to be tilted, the hand wheel is rotated to drive the bidirectional screw rod 8 to rotate, and the bidirectional screw rod 8 drives the two sliding seats 9 to move towards each other. The two sliding seats 9 push the first support plate 4 upwards through the connecting rod 11, the first support plate 4 pushes the second bed board 3 to rotate, and then the head and upper body of the patient are tilted upwards, and the tilt angle is controlled within 15-30°. This angle range can effectively reduce the cerebral venous backflow resistance, increase the cerebral perfusion pressure, and accelerate the consciousness recovery.
[0048] Referring to Figure 1 and Figure 2 , a red laser pen 12 is fixedly embedded on the side of the second bed board 3 away from the first bed board 2. The red laser pen 12 is of a common type available on the market, has an emission power of 5mW, and emits red light with a wavelength of 940nm. A scale table 13 is fixedly arranged on one side of the top of the bed frame 1. The scale table 13 is made of transparent plastic material, has clear scales, and has a scale range of 0-30° and a precision of 1°. The red laser pen 12 is used in cooperation with the scale table 13 to determine the angle of rotation of the second bed board 3. When the second bed board 3 rotates, the red light emitted by the red laser pen 12 is irradiated on the scale table 13, and medical staff can determine the rotation angle of the second bed board 3 by observing the position of the red light on the scale table 13.
[0049] Referring to Figures 4-10 , the anesthesia postoperative awakening bed of the medical health big data sharing platform further comprises two bracelets 14. The bracelets 14 are made of silica gel material and have a certain elasticity, which can adapt to the wrist sizes of different patients. One side of each of the two bracelets 14 is rotatably connected to a rotating rod 25. One end of each of the two rotating rods 25 is fixedly connected to a hollow sphere 26, and the wall thickness of the hollow sphere 26 is 0.5cm-1cm and the material is plastic.
[0050] Referring to Figure 4 and Figure 5 , the top of the first bed plate 2 is slidably connected with a knocking plate 37. The knocking plate 37 is rectangular and made of wood. A rubber pad is arranged on the surface of the knocking plate 37 to increase the comfort when knocking. The knocking plate 37 is used for knocking the soles of the patient's feet to promote the recovery of the patient's consciousness. Two second support plates 24 are fixed in the bed frame 1. The two second support plates 24 are located at the bottom of the first bed plate 2 and are used for supporting the first bed plate 2. The second support plate 24 is rectangular.
[0051] Referring to Figures 4-6 , in order to monitor the physical condition of the patient in real time, a monitoring structure is arranged on the bracelet 14. The monitoring structure comprises a hollow screw rod 19 which is rotatably arranged at the bottom of the bracelet 14. The hollow screw rod 19 is made of stainless steel. An annular groove 15 is arranged in the bracelet 14. A rotating ring 16 is rotatably arranged in the annular groove 15. The rotating ring 16 is annular. An annular rubber air bag 17 is fixed to the inner wall of the rotating ring 16. The annular rubber air bag 17 is made of medical rubber and has certain elasticity and flexibility. A detection structure 18 is fixed to the inner wall of the annular rubber air bag 17. The detection structure 18 comprises an electrode sheet, a pressure sensor and a temperature sensor. The electrode sheet is a commercially available medical electrode sheet and is used for detecting the heart rate of the patient. The pressure sensor is of a type with a measuring range of 0-300 mmHg and an accuracy of 1 mmHg and is used for detecting the blood pressure of the patient. The temperature sensor is of a type with a measuring range of 32-42℃ and an accuracy of 0.1℃ and is used for detecting the body temperature of the patient. The bottom end of the hollow screw rod 19 is threaded through the first bed plate 2 and abuts against the top of the adjacent second support plate 24. A piston plate 21 is sealingly and slidably connected in the hollow screw rod 19. The piston plate 21 is circular and made of plastic. A top rod 23 is arranged in the hollow screw rod 19. The top rod 23 is cylindrical. The top end of the top rod 23 is used for pushing the piston plate 21 upwards. The bottom end of the top rod 23 is fixedly connected with the top of the adjacent second support plate 24.
[0052] Referring to Figure 6 , the top of the piston plate 21 is fixed with a first spring 22 through a spring seat and the inner wall of the top of the hollow screw rod 19. The first spring 22 is a stainless steel extension spring with a wire diameter of 0.5 mm, an outer diameter of 5 mm, a free length of 3 cm, a working length range of 2-2.8 cm and a spring stiffness of 0.5 N / mm. A soft tube 20 is fixedly connected with the top end of the hollow screw rod 19. The soft tube 20 is a medical rubber tube with an inner diameter of 3 mm and a length of 15 cm. The top end of the soft tube 20 penetrates through the bracelet 14, the rotating ring 16 and is fixedly connected with the annular rubber air bag 17.
[0053] During use, the hollow screw 19 is threaded through the bed board No. 1 2, and during the penetration process, the top end of the push rod 23 pushes the piston plate 21 upward, and the piston plate 21 injects the air in the hollow screw 19 into the annular rubber airbag 17 through the hose 20. After the annular rubber airbag 17 expands, the detection structure 18 installed on its inner wall contacts the patient's skin, which is used to detect the patient's heart rate, blood pressure and body temperature in real time, and transmit them to the medical health big data sharing platform through the Bluetooth module, so that the doctor can observe the patient's condition in real time.
[0054] Reference Figure 7 and Figure 8 , also includes an electric shock structure for delivering electric shocks to the patient's fingers. The electric shock structure includes three electric plates 32 disposed within the hollow sphere 26. The electric plates 32 are made of copper and measure 1 cm long, 0.5 cm wide, and 0.1 cm thick. The electric shock structure also includes two cylindrical crossbars 27 fixed within the hollow sphere 26. The outer walls of the two crossbars 27 are slidably fitted with a common push plate 28, which is rectangular and made of plastic. Three cylindrical extension rods 31 slide through one side of the hollow sphere 26. The three electric plates 32 are fixedly mounted on the ends of the three extension rods 31 away from the push plates 28. The push plates 28 cooperate with the extension rods 31 to push the extension rods 31 toward the outside of the hollow sphere 26. The outer walls of the three extension rods 31 are each fixedly fitted with a circular plastic fixing ring 33. A No. II spring 34 is secured between one side of the retaining ring 33 and the inner wall of one side of the hollow sphere 26 via a spring seat. This spring 34 is a stainless steel tension spring with a wire diameter of 0.3 mm, an outer diameter of 3 mm, a free length of 1.5 cm, a working length range of 1-1.3 cm, and a spring stiffness of 0.3 N / mm. This spring 34 is mounted on the outer wall of the corresponding extension rod 31 and is used to reset the extension rod 31 after it loses the push of the push plate 28.
[0055] Reference Figure 7 and Figure 8 A trapezoidal block 29 is fixed to the side of the push plate 28 away from the extension rod 31. A trapezoidal rod 30 is slidably passed through the bottom of the hollow sphere 26. The trapezoidal rod 30 is trapezoidal in shape and cooperates with the trapezoidal block 29 to drive the push plate 28 to push the extension rod 31 to move.
[0056] In actual work, the cam 46 intermittently pushes the connecting rod 45 and the trapezoidal rod 30 to move upwards, the trapezoidal rod 30 drives the push plate 28 to move to one side in cooperation with the trapezoidal block 29, the push plate 28 pushes the three extension rods 31 to move outward, the No. II spring 34 is in a compressed state under the action of the fixed ring 33, when the extension rod 31 extends to the outside of the hollow spherical body 26, the electric sheet 32 at one end of the extension rod 31 contacts the patient's finger, and then the electric sheet 32 shocks the patient's finger, the shock is a slight shock and will not cause harm to the patient's body, the pain signal generated by the shock is transmitted to the cerebral cortex through the spinothalamic tract, and the consciousness recovery is promoted.
[0057] With reference to Figure 7 and Figure 8 , in order to enable the knocking plate 37 to intermittently knock the instep of the patient, a knocking structure is arranged on the No. I bed plate 2, and the knocking structure can synchronously drive the electric shock structure to intermittently shock the patient. The knocking structure comprises two connecting ears 40 sliding in the No. I bed plate 2, the connecting ears 40 are rectangular and made of plastic. The top ends of the two connecting ears 40 are fixedly connected with the bottom sides of the knocking plate 37. The top of the No. I bed plate 2 is fixedly provided with a mounting base plate 35, the mounting base plate 35 is rectangular and made of steel plate. Two threaded rods 36 are slidingly and penetratingly arranged in the mounting base plate 35, and the threaded rods 36 are cylindrical. One end of each of the two threaded rods 36 is fixedly connected with the knocking plate 37, and the outer walls of the two threaded rods 36 are threadedly provided with nut blocks 38 (the nut blocks 38 can be hexagonal) made of cast iron. The nut blocks 38 and the mounting base plate 35 are abutted by spring seats and provided with No. III springs 39, the No. III springs 39 are made of stainless steel extension springs, the wire diameter is 0.6 mm, the outer diameter is 6 mm, the free length is 4 cm, the working length range is 3-3.5 cm, and the spring stiffness is 0.6 N / mm. The No. III springs 39 are used to drive the knocking plate 37 to move back.
[0058] With reference to Figure 5 and Figure 10 , two transmission rods 41 are rotatably connected between the two No. II support plates 24, and the transmission rods 41 are cylindrical. Drive discs 42 are fixedly and sleevedly arranged on the outer walls of the two transmission rods 41, the drive discs 42 are disc-shaped and made of plastic. The No. I arc-shaped plates 43 are fixedly arranged on one side of each of the two drive discs 42, and the No. I arc-shaped plates 43 are arc-shaped. The No. II arc-shaped plates 44 are fixedly arranged on one side of each of the two connecting ears 40, the No. II arc-shaped plates 44 are arc-shaped and have a size suitable for the No. I arc-shaped plates 43, and the No. II arc-shaped plates 44 are matched with the adjacent No. I arc-shaped plates 43 to drive the connecting ears 40 to move intermittently.
[0059] The motor drives the transmission rod 41 to rotate, and the motor adopts a common type on the market, with a power of 50W and a rotating speed of 100r / min. The transmission rod 41 drives the No. I arc-shaped plate 43 to rotate through the driving disc 42, and the No. I arc-shaped plate 43 and the No. II arc-shaped plate 44 are cooperated to drive the connecting lug 40 to move in an intermittent manner, the connecting lug 40 drives the knocking plate 37 to move, when the No. I arc-shaped plate 43 and the No. II arc-shaped plate 44 are disengaged, the elastic force of the No. III spring 39 pushes the knocking plate 37 to reset, and the knocking plate 37 knocks the instep of the patient, and the pain signal is generated again, and the consciousness recovery is further promoted. In addition, the rotation of the nut block 38 can further compress the No. III spring 39, so that when the No. III spring 39 pushes the knocking plate 37 to reset, the knocking force of the knocking plate 37 on the instep can be increased, and the pain signal can be increased.
[0060] In another embodiment: refer to Figure 7 , on the basis of the improvement of embodiment 1: the bottom end of the trapezoidal rod 30 is threadedly connected with a connecting rod 45, and the connecting rod 45 is cylindrical. The bottom end of the connecting rod 45 is slidably penetrated through the No. I bed plate 2; the outer wall of the transmission rod 41 is fixedly sleeved with a cam 46, and the cam 46 is irregularly shaped. The cam 46 is cooperated with the adjacent connecting rod 45 to intermittently drive the connecting rod 45 to move upward.
[0061] The rotation of the transmission rod 41 not only drives the knocking plate 37 to knock the instep, but also intermittently shocks the patient's fingers through the electric sheet 32, so that the awakening efficiency is greatly improved.
[0062] The use method of the anesthesia postoperative awakening bed of the medical health big data sharing platform, comprising the following steps:
[0063] S1, the patient after anesthesia is half-laid on the No. I bed plate 2, and the upper body is laid on the No. II bed plate 3; when it is needed to awaken the patient, the bidirectional screw rod 8 is rotated, the bidirectional screw rod 8 drives the two sliding seats 9 to move towards each other, the two sliding seats 9 push the No. I support plate 4 to move upward through the connecting rod 11, the No. I support plate 4 drives the No. II bed plate 3 to rotate, and then the head and the upper body of the patient are inclined upward by 15-30°, the cerebral venous return resistance is reduced, the cerebral perfusion pressure is increased, the consciousness recovery is accelerated, and the red light emitted by the red laser pen 12 is irradiated on the scale table 13. The cooperation of the red laser pen 12 and the scale table 13 can determine the inclination angle of the No. II bed plate 3 (calculated by the Pythagorean theorem);
[0064] S2, in order to be able to monitor the patient's physical data in real time when waking up the patient, when the patient lies on the No. 1 bed board 2 and the No. 2 bed board 3, inserts his hands into the two hand rings 14 respectively, when the bed frame 1 is installed on the No. 1 bed board 2, the hollow lead screw 19 is screwed through the No. 1 bed board 2, and the top rod 23 pushes the piston plate 21 to move up during the process, the piston plate 21 injects the air in the hollow lead screw 19 into the annular rubber air bag 17 through the hose 20, after the annular rubber air bag 17 expands, the detection structure 18 (electrode sheet, pressure sensor, temperature sensor) installed on the inner wall of the annular rubber air bag 17 contacts the skin of the patient, which is used for real-time detection of the patient's heart rate, blood pressure and body temperature, and is transmitted to the medical health big data sharing platform through the Bluetooth module, so as to facilitate the doctor to observe the patient's condition in real time;
[0065] S3, before the hand ring 14 is installed on the No. 1 bed board 2 through the hollow lead screw 19, the connecting rod 45 is screwed at the bottom end of the trapezoidal rod 30, then after the hand ring 14 is installed on the No. 1 bed board 2, the bottom end of the connecting rod 45 is in the process of the No. 1 bed board 2 and extends below the No. 1 bed board 2, in addition, after the patient's hand penetrates the hand ring 14, the hollow sphere 26 is held in the palm by the patient's bent fingers, and the patient's three fingers (index finger, middle finger and ring finger) correspond to the positions of the three electrode sheets 32 respectively, when the transmission rod 41 drives the cam 46 to rotate, the cam 46 intermittently pushes the connecting rod 45 and the trapezoidal rod 30 to move up, the cooperation of the trapezoidal rod 30 and the trapezoidal block 29 drives the push plate 28 to move to one side, the push plate 28 pushes the three extension rods 31 to move outward, the No. 2 spring 34 is in a compressed state under the action of the fixed ring 33, when the extension rod 31 extends to the outside of the hollow sphere 26, the electrode sheet 32 at one end thereof contacts the patient's finger, and then the patient's finger is shocked (the shock is a slight shock, which will not cause harm to the patient's body) through the electrode sheet 32, the pain signal generated by the shock (within the safe range) is transmitted to the cerebral cortex through the spinothalamic tract, which promotes the recovery of consciousness;
[0066] S4, after the patient lies on the No. 1 bed board 2 and the No. 2 bed board 3, the knocking plate 37 is in contact with the patient's instep under the elastic force of the No. 3 spring 39, then the transmission rod 41 is driven to rotate by the motor, the transmission rod 41 drives the No. 1 arc plate 43 to rotate through the driving disc 42, the cooperation of the No. 1 arc plate 43 and the No. 2 arc plate 44 can drive the connecting lug 40 to move intermittently, the connecting lug 40 drives the knocking plate 37 to move, when the No. 1 arc plate 43 and the No. 2 arc plate 44 are separated, the elastic force of the No. 3 spring 39 drives the knocking plate 37 to reset, the knocking plate 37 knocks the patient's instep, and the pain signal is generated again, which further promotes the recovery of consciousness; in addition, the No. 3 spring 39 can be further compressed through the rotation of the nut block 38, so that when the No. 3 spring 39 drives the knocking plate 37 to reset, the knocking force of the knocking plate 37 on the instep can be increased, and the pain signal can be increased;
[0067] S5, the rotation of the transmission rod 41 can not only drive the knocking plate 37 to knock the instep, but also can shock the patient's fingers intermittently through the electric sheet 32, multiple cooperation, greatly improve the efficiency of awakening.
[0068] Those skilled in the art should understand that the operation principle and circuit connection mode of the electric sheet 32 and the red laser pen 12 all belong to the technical means known in the technical field. Since the conventional technical configuration is known to the relevant practitioners, the specific implementation details will not be repeated in the specification. It is particularly pointed out that the selection, collocation and parameter adjustment of the above components can be carried out by those skilled in the art according to the technical requirements of the specific application scene.
[0069] The drawings in the specification are only schematic in nature, and the size and shape of each component shown are not actual limitations, but only a kind of schematic representation. In actual implementation process, each component can be reasonably configured and adjusted according to specific needs and actual situation.
[0070] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A support assembly, characterized in that: include: A bed frame (1), wherein a bed board No. I (2) is fixed in the bed frame (1), a bed board No. II (3) is rotatably connected in the bed frame (1), and the bed board No. I (2) and the bed board No. II (3) cooperate to carry a patient; The driving structure comprises a bidirectional screw rod (8) rotatably connected to the bed frame (1), a No. 1 support plate (4) slidably fitted on the bottom of the No. 2 bed board (3), and two sliding seats (9); The two sliding seats (9) are respectively threadedly engaged with the forward and reverse thread segments of the bidirectional screw rod (8); the top of each sliding seat (9) is rotatably connected to the connecting rod (11); and the top of each connecting rod (11) is rotatably connected to the rotating support (7); The bottom of the No. 1 support plate (4) is provided with two guide grooves (5), a fixed rod (6) is fixed in each guide groove (5), and the rotating support (7) is rotatably connected to the outer wall of the fixed rod (6); The two-way screw rod (8) is rotated to drive the two sliding seats (9) to move toward each other, and the connecting rod (11) pushes the No. 1 support plate (4) upward, so that the No. 2 bed plate (3) is rotated and tilted by 15-30 degrees, thereby increasing the cerebral perfusion pressure and accelerating the patient's recovery of consciousness.
2. The support assembly according to claim 1, wherein: A guide rod (10) is fixed inside the bed frame (1), and the two sliding seats (9) are both slidably sleeved on the outer wall of the guide rod (10) to constrain the moving direction.
3. The support assembly according to claim 2, characterized in that A red laser pen (12) is embedded on the side of the No. II bed board (3) away from the No. I bed board (2), and a scale (13) is fixed on the top of the bed frame (1). The red laser pen (12) cooperates with the scale (13) to determine the rotation angle of the No. II bed board (3).
4. A post-anesthesia wake-up bed for a medical health big data sharing platform, comprising the support assembly according to claim 3, characterized in that: Also includes: Two wristbands (14), one side of each of the wristbands (14) is rotatably connected to a rotating rod (25), and one end of each of the rotating rods (25) is fixed with a hollow sphere (26); A knocking plate (37) is slidably connected to the top of bed board No. 1 (2) and is used to knock the soles of the patient's feet; A monitoring structure, provided on the wristband (14), for monitoring the patient's physical condition in real time; An electric shock structure, disposed in the hollow sphere (26), for delivering an electric shock to the patient's finger; A knocking structure is provided on bed board No. 1 (2), and is used to cause the knocking plate (37) to intermittently knock on the soles of the patient's feet, and the knocking structure can synchronously drive the electric shock structure to intermittently shock the patient; Two No. II support plates (24) are fixed in the bed frame (1), and the two No. II support plates (24) are both located at the bottom of the No. I bed board (2) and are used to support the No. I bed board (2); The monitoring structure includes a detection structure (18) to detect the patient's heart rate, blood pressure and body temperature and transmit them to the medical health big data sharing platform through a Bluetooth module. The electric shock structure and the knocking structure generate pain signals through intermittent electric shock and knocking to promote consciousness recovery.
5. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 4 is characterized in that: The monitoring structure includes a hollow screw (19) rotatably connected to the bottom of the wristband (14) and an annular groove (15) provided in the wristband (14). The monitoring structure also includes a rotating ring (16) rotating in the annular groove (15), an annular rubber airbag (17) fixed on the inner wall of the rotating ring (16), and a detection structure (18) fixed on the inner wall of the annular rubber airbag (17). The bottom end thread of the hollow screw (19) passes through the No. 1 bed board (2) and abuts against the top of the adjacent No. 2 support board (24). A piston plate (21) is sealed and slidably connected in the hollow screw (19). A push rod (23) is provided in the hollow screw (19). The bottom end of the push rod (23) is fixedly connected to the top of the adjacent No. II support plate (24), and the top end of the push rod (23) is configured to push the piston plate (21) upward. The top end of the piston plate (21) is connected to the top inner wall of the hollow screw rod (19) through the No. I spring (22). The top end of the hollow screw rod (19) is fixedly connected to a hose (20), and the top end of the hose (20) is connected to an annular rubber airbag (17). When the hollow screw rod (19) is threaded through the No. I bed board (2), the push rod (23) pushes the piston plate (21) upward to inject air into the annular rubber airbag (17), so that the detection structure (18) is in close contact with the patient's skin.
6. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 5, characterized in that: The detection structure (18) is composed of an electrode sheet, a pressure sensor and a temperature sensor, and is used to detect the patient's heart rate, blood pressure and body temperature in real time.
7. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 6, characterized in that: The electric shock structure comprises three electric sheets (32) arranged in a hollow sphere (26), two cross bars (27) fixed in the hollow sphere (26), a push plate (28) slidingly sleeved on the outer wall of the cross bar (27), and three extension rods (31) slidingly passing through one side of the hollow sphere (26). The three electric sheets (32) are respectively fixedly embedded in one end of the three extension rods (31) away from the push plate (28). The push plate (28) cooperates with the extension rod (31) to push the extension rod (31) to push the extension rod (31). The rod (31) moves toward the outside of the hollow sphere (26), the fixed ring (33) is fixedly sleeved on the outer wall of the extension rod (31), and the No. II spring (34) connects the fixed ring (33) and the inner wall of the hollow sphere (26) to reset the extension rod (31). A trapezoidal block (29) is fixed on the side of the push plate (28) away from the extension rod (31), and the trapezoidal rod (30) slides through the bottom of the hollow sphere (26) and cooperates with the trapezoidal block (29) to drive the push plate (28) to move.
8. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 7, characterized in that: The wall thickness of the hollow sphere (26) is 0.5 cm to 1 cm, so that the electric sheet (32) is located within the wall thickness after the extension rod (31) is reset.
9. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 8, characterized in that: The knocking structure comprises two connecting ears (40) slidably connected in the No. Ⅰ bed board (2), the top ends of the two connecting ears (40) are fixedly connected to the bottom two sides of the knocking plate (37), the mounting base (35) is fixed on the top of the No. Ⅰ bed board (2), two threaded rods (36) slide through the mounting base (35) and one end is fixedly connected to the knocking plate (37), a nut block (38) is threadedly sleeved on the outer wall of the threaded rod (36), and a No. Ⅲ spring (39) abuts against the nut block. (38) and the mounting base plate (35) are used to drive the knocking plate (37) to reset, the two transmission rods (41) are rotatably connected between the two No. II support plates (24), the driving disc (42) is fixedly sleeved on the outer wall of the transmission rod (41), the No. I arc plate (43) is fixed on the side of the driving disc (42) close to the connecting ear (40), the No. II arc plate (44) is fixed on one side of the connecting ear (40) and cooperates with the No. I arc plate (43) to intermittently drive the connecting ear (40) to move.
10. The post-anesthesia wake-up bed of the medical health big data sharing platform according to claim 9, characterized in that: The bottom end of the trapezoidal rod (30) is threadedly connected to a connecting rod (45), and the bottom end of the connecting rod (45) slides through the No. 1 bed board (2). The outer wall of the transmission rod (41) is fixedly sleeved with a cam (46), and the cam (46) cooperates with the connecting rod (45) to intermittently drive the connecting rod (45) to move upward, thereby synchronously driving the electric shock structure.
Citation Information
Patent Citations
Multifunctional anesthesia depth monitoring device for anesthesiology department and use method thereof
CN117017230A
Multifunctional intelligent caring bed
CN205626336U
Monitoring bed for awakening nursing of anesthesia patient
CN213373153U