Monitoring device for pediatric surgical nursing

By designing a monitoring box structure with automatic adjustment of side guard plates, the inconvenience of operation and child slipping caused by the fixed side guard plates during operation of the existing device is solved, and higher operating convenience and safety are achieved.

CN120078609AInactive Publication Date: 2025-06-03TONGJI HOSPITAL ATTACHED TO TONGJI MEDICAL COLLEGE HUAZHONG SCI TECH
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Patent Information

Application Number
CN202510272387.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-06-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When the existing monitoring device for pediatric surgical nursing is picked up or put down by medical staff, the side guard plate is fixed, which can easily cause the child to slide down and it is difficult to automatically adjust.

Method used

A device including a monitoring box, a curved plate, a curved groove, a curved block, a curved bed plate, a side guard plate and an adjustment mechanism is designed. The side guard plate is automatically adjusted by an adjustment mechanism that drives the side guard plate to reciprocating and flip.

Benefits of technology

The automatic reciprocating and flip of the side guard plate is realized, which improves operation convenience and safety, avoids the risk of children falling, and automatically flips protection when needed, providing comprehensive safety protection.

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Abstract

The invention discloses a pediatric surgical nursing monitoring device which comprises a monitoring box driven by an external frame to move, an arc-shaped bed board is arranged in the monitoring box, arc-shaped reciprocating movement is achieved through an arc-shaped through groove and an arc-shaped block, the parent environment is simulated, and the comfort and safety of a child are improved. Reciprocating overturning of the side protection plates can be achieved, medical staff can conveniently hold up or put down a child, meanwhile, protection is provided for the child in the vertical state, the child is prevented from falling off from the bed plate, reciprocating swinging of the arc-shaped bed plate is achieved through meshing transmission of a gear, a rack and a toothed plate through a swinging mechanism arranged on the device, and the dynamic supporting and abutting functions of an air bag are combined. Through the cooperation of the structure, the safety, comfort and operation convenience of pediatric surgical monitoring are remarkably improved, and a more effective solution is provided for pediatric nursing.
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Description

Technical Field

[0001] The present invention relates to the technical field of monitoring devices for pediatric surgical care, and specifically to a monitoring device for pediatric surgical care. Background Art

[0002] In pediatric surgical care, due to their young age, underdeveloped physical functions, and active and curious nature, child patients often have difficulty cooperating with the care work quietly. This not only increases the work difficulty of nursing staff but also easily leads to accidents, such as children falling off the bed or causing secondary injuries to the trauma site due to restlessness. Therefore, it is particularly important to develop a monitoring device specifically for pediatric surgical care.

[0003] The existing Chinese patent with the publication number CN114587820A includes a chassis, a hollow frame, a carrying bed, a vertical rod, an upper circular plate, a storage mechanism, and a lighting mechanism. A hollow frame is provided on the left side of the top of the chassis, and a vertical rod is provided on the left side of the top of the chassis. The vertical rod is located on the left side of the chassis. A carrying bed for carrying children is placed on the top of the hollow frame. An upper circular plate is provided at the top of the vertical rod, and a storage mechanism for storing medical instruments is provided on the upper part of the vertical rod. A lighting mechanism for lighting is provided on the upper circular plate.

[0004] When the above device is in use, by starting the cylinder, the telescopic rod of the cylinder can extend to drive the connecting frame and the flat plate to move downward. The downward movement of the flat plate drives the box to move downward, and the box can facilitate medical staff to place medical devices. However, in the actual use process, since the side guard plate is fixedly supported on the carrying bed for children, when medical staff pick up or put down a child, they need to raise their arms and cross the side guard plate, which easily causes the child to slip from the medical staff's arms and cause secondary injuries to the child. Therefore, it is difficult to automatically adjust the side guard plate on the carrying bed.

[0005] Therefore, we have proposed a monitoring device for pediatric surgical care. Summary of the Invention

[0006] The purpose of the present invention is to provide a monitoring device for pediatric surgical care, which has the advantage of automatically adjusting the side guard plate on the carrying bed, and solves the problems in the background art.

[0007] To achieve the above object, the present invention provides the following technical solution: A monitoring device for pediatric surgical care, including a monitoring box driven by an external vehicle frame to move. On both sides of the inner wall of the monitoring box at symmetric positions, arc-shaped plates are fixedly connected. Arc-shaped through grooves are opened at corresponding positions of the two arc-shaped plates. The inner walls of the two arc-shaped through grooves are movably connected with arc-shaped blocks that move in an arc-shaped reciprocating manner. The opposite sides of the two arc-shaped blocks are fixedly connected with an arc-shaped bed board for supporting children. Fixed blocks are fixedly connected to symmetric positions on both sides of the monitoring box. V-shaped grooves are opened on both sides of the movable blocks. Two movable blocks are movably connected to the inner wall of each V-shaped groove. Right-angle blocks are fixedly connected to the two movable blocks on each side. Side guard plates for protecting both sides of the arc-shaped bed board are fixedly connected to the ends of the two right-angle blocks. An adjusting mechanism for driving the side guard plates to reciprocally flip is provided on the monitoring box.

[0008] Preferably, track blocks are fixedly connected to symmetric positions on both sides of the monitoring box. Lifting blocks are connected to move up and down inside the inner walls of the two track blocks. Connecting rods for supporting the side guard plates are rotatably connected to the two lifting blocks by fixed axes. The ends of each connecting rod away from the lifting block are respectively rotatably connected to the movable blocks at the bottom ends of the right-angle blocks on the adjacent side.

[0009] Preferably, the adjusting mechanism includes support grooves opened at symmetric positions on both sides of one end of the monitoring box. L-shaped rods are horizontally movably connected to the inner walls of the two support grooves. A rectangular plate is fixedly connected to one end of each L-shaped rod close to the lifting block. First inclined grooves for pulling the lifting block to move up and down reciprocally are opened on the two rectangular plates. A support block is fixedly connected to one side of each lifting block close to the rectangular plate, and the first inclined groove movably supports the support block.

[0010] Preferably, a U-shaped seat is fixedly connected to the inner wall of the monitoring box close to the support groove. One end of the U-shaped seat is penetrated and rotatably connected to a threaded rod driven by a power mechanism to rotate. A threaded sleeve rod is sleeved on the outer contour of the threaded rod, and the threaded sleeve rod is screwed with the threaded rod. A T-shaped block is rotatably connected to the outer contour of the threaded sleeve rod close to the threaded rod. The opposite ends of the two L-shaped rods are fixedly connected to the T-shaped block. A cavity is opened on the T-shaped block. A locking block for locking the threaded sleeve rod is movably connected to the inner wall of the cavity. A locking groove adapted to the locking block is opened on the outer contour of the threaded sleeve rod. A spring for guiding the locking block to move back and forth for reset is fixedly connected to the opposite surfaces of the locking block and the cavity.

[0011] Preferably, arc-shaped racks are fixedly connected to the symmetric positions on both sides of the bottom of the arc-shaped bed board, and gears that are meshed and driven with the arc-shaped racks are rotatably connected to the symmetric positions on both sides of the monitoring box by fixed axes. Track plates are fixedly connected to the symmetric positions on both sides of the bottom of the monitoring box, and rack plates that are meshed and driven with the gears are horizontally movably connected to the inner walls of the two track plates.

[0012] Preferably, a swinging mechanism for driving the arc-shaped bed board to swing reciprocally is provided on the U-shaped seat. The swinging mechanism includes that one end of the U-shaped seat far from the threaded rod is penetrated and rotatably connected with a rotating sleeve rod, and the rack plate penetrates into the inner wall of the rotating sleeve rod and is axially movably connected. A cylindrical block is fixedly connected to the outer contour of the rotating sleeve rod, a W-shaped groove is formed on the outer contour of the cylindrical block, and pull rods for horizontally reciprocally moving the rack plate are movably connected to the symmetric positions on both sides of the inner wall of the W-shaped groove. One end of each pull rod far from the cylindrical block is fixedly connected to the adjacent rack plate respectively.

[0013] Preferably, a moving rod is horizontally movably connected to the side of the T-shaped block close to the locking block. A second inclined groove for pulling the locking block to unlock the threaded sleeve rod is formed on the L-shaped rod. A connecting block is fixedly connected to the side of the locking block close to the moving rod, and the connecting block penetrates into the inner wall of the second inclined groove and is movably connected.

[0014] Preferably, support blocks for supporting children are fixedly connected to the symmetric positions at both ends of the arc-shaped bed board. Columnar shells are fixedly connected to the symmetric positions on both sides of the inner wall of each end of the monitoring box. Connecting pipes are fixedly connected to the opposite ends of the two columnar shells on each side after being penetrated. One end of the two connecting pipes far from the columnar shells at each end penetrates into the inner wall of the air bag at the adjacent end and is fixedly connected. A piston plate for pumping air in and out of the air bag is movably connected to the inner wall of each columnar shell. T-shaped rods are fixedly connected to the opposite surfaces of the two columnar shells on each side, and each T-shaped rod is fixedly connected to the adjacent rack plate.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] First, the side guard plate can be automatically turned over reciprocally through the adjusting machine. When medical staff pick up or put down a child, the side guard plate can be automatically adjusted to the horizontal state, and medical staff can easily place the child on the arc-shaped bed board or pick up the child, greatly improving the convenience and safety of the operation, avoiding the inconvenience of operation and the risk of the child slipping caused by the fixed side guard plate. When protection is needed, the side guard plate can be automatically turned over to the vertical state and fit with the arc-shaped surface of the monitoring box, effectively preventing the child from falling off the arc-shaped bed board. Especially when the child is sleeping or moving, it provides comprehensive safety protection, significantly improves the operation convenience of medical staff, and reduces potential safety hazards in the nursing process.

[0017] Second, the reciprocating swing function of the arc-shaped bed board is realized through the swing mechanism, simulating the rocking feeling of a baby in the mother's body, which can effectively soothe the baby's emotions, making it feel safe and comfortable, thus making it easier to fall asleep and maintain a good sleep state. At the same time, the arc design of the arc-shaped bed board itself has a wrapping property, which can further improve the comfort and sense of security of the baby, contributing to promoting the baby's sleep quality.

[0018] Third, the baby is dynamically supported and leaned against by the airbag. During the swing process of the arc-shaped bed board, the airbag can automatically adjust its inflation and contraction state according to the movement of the baby's body. When one side of the arc-shaped bed board tilts downward, the airbag will automatically inflate to support the baby's body, preventing it from sliding or shaking due to gravity. At the same time, the airbag on the other side will contract accordingly, reducing the sense of pressure on the baby's body, ensuring that the baby always remains stable and comfortable during the swing process, effectively reducing the discomfort caused by the swing of the bed board, and also providing additional protection when the baby is moving or sleeping. For example, when the baby turns over on the arc-shaped bed board, the airbag can timely adjust its support state to prevent the baby from slipping off the bed board due to sudden movements, providing a safer and more reliable monitoring effect for medical staff, ensuring that the baby always remains comfortable and stable during the monitoring process.

[0019] By using the cooperation of the above structures, the problem that in the actual use process of the existing device, since the side guard plate is fixedly supported on the baby's bearing bed, when medical staff pick up or put down the baby, they need to raise their arms and cross over the side guard plate, which is likely to cause the baby to slip from the medical staff's arms, causing secondary harm to the baby, and thus it is difficult to automatically adjust the side guard plate on the bearing bed is solved. Brief Description of the Drawings

[0020] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;

[0021] Figure 2 It is a sectional three-dimensional structure schematic diagram of the present invention;

[0022] Figure 3 It is of the present invention Figure 2 Schematic diagram of the structure at position A in the present invention;

[0023] Figure 4 It is a sectional three-dimensional structure schematic diagram of the part where the side guard plate of the present invention is located;

[0024] Figure 5 It is a three-dimensional structure schematic diagram of the part where the arc-shaped bed board of the present invention is located;

[0025] Figure 6 It is a three-dimensional structure schematic diagram of the part where the T-shaped block of the present invention is located;

[0026] Figure 7 Schematic cross-sectional view of the three-dimensional structure of the part where the T-shaped block of the present invention is located;

[0027] Figure 8 Schematic three-dimensional structure view of the part where the right-angle block of the present invention is located;

[0028] Figure 9 Schematic three-dimensional structure view of the part where the T-shaped rod of the present invention is located;

[0029] Figure 10 Schematic cross-sectional view of the three-dimensional structure of the cylindrical housing of the present invention.

[0030] In the figure: 1. Monitoring box; 101. Support groove; 2. Arc plate; 201. Arc through groove; 3. Arc block; 4. Arc bed board; 5. Fixed block; 501. V-shaped groove; 6. Movable block; 7. Right-angle block; 8. Side guard plate; 9. Track block; 10. Lifting block; 11. Connecting rod; 12. U-shaped seat; 13. Threaded rod; 14. Threaded sleeve rod; 141. Locking groove; 15. T-shaped block; 151. Cavity; 16. Locking block; 17. Spring; 18. L-shaped rod; 19. Rectangular plate; 191. First inclined groove; 20. Support block; 21. Arc rack; 22. Gear; 23. Track plate; 24. Tooth plate; 25. Rotating sleeve rod; 26. Cylindrical block; 261. W-shaped groove; 27. Pull rod; 28. Moving rod; 281. Second inclined groove; 29. Connecting block; 30. Airbag; 31. Cylindrical housing; 32. Piston plate; 33. T-shaped rod; 34. Connecting pipe. Detailed implementation manners

[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] Embodiment 1:

[0033] Please refer to Figures 1 to 10, the present invention provides a technical solution: a monitoring device for pediatric surgical care, including a monitoring box 1 driven by an external peripheral vehicle frame to move. On both sides of the inner wall of the monitoring box 1 at symmetric positions, arc-shaped plates 2 are fixedly connected. Arc-shaped through grooves 201 are opened at corresponding positions of the two arc-shaped plates 2. The inner walls of the two arc-shaped through grooves 201 are movably connected with arc-shaped blocks 3 that move in an arc reciprocating manner. The opposite sides of the two arc-shaped blocks 3 are fixedly connected with an arc-shaped bed board 4 for supporting children. Fixed blocks 5 are fixedly connected to symmetric positions on both sides of the monitoring box 1. V-shaped grooves 501 are opened on both sides of the movable blocks 6. Two movable blocks 6 are movably connected to the inner wall of each V-shaped groove 501. Right-angle blocks 7 are fixedly connected to the two movable blocks 6 on each side. Side guard plates 8 for protecting both sides of the arc-shaped bed board 4 are fixedly connected to the ends of the two right-angle blocks 7. An adjusting mechanism for driving the side guard plates 8 to reciprocally flip is provided on the monitoring box 1.

[0034] Rail blocks 9 are fixedly connected to symmetric positions on both sides of the monitoring box 1. Lifting blocks 10 are connected to move up and down in the inner walls of the two rail blocks 9. Connecting rods 11 for supporting the side guard plates 8 are rotatably connected to the two lifting blocks 10. One end of each connecting rod 11 away from the lifting block 10 is rotatably connected to the movable block 6 at the bottom end of the right-angle block 7 on the adjacent side.

[0035] During use, by setting the monitoring box 1, the monitoring box 1 is supported and driven by an external peripheral vehicle frame, improving the stability and flexibility of the monitoring box 1. Through the arc-shaped plates 2 provided on the monitoring box 1, the arc-shaped plates 2 are fixedly supported on the monitoring box 1. Through the arc-shaped through grooves 201 opened on the arc-shaped plates 2 and the arc-shaped blocks 3 provided on the arc-shaped through grooves 201, the arc-shaped through grooves 201 can movably support the arc-shaped blocks 3. Through the arc-shaped bed board 4 provided on the arc-shaped blocks 3, children are first placed on the arc-shaped bed board 4, and the arc-shaped bed board 4 is in an arc state with wrapping properties, imitating the state of children in the mother's womb, improving the comfort and sense of security of children. Along with the arc-shaped through grooves 201 movably supporting the arc-shaped blocks 3, the arc-shaped blocks 3 can drive the arc-shaped bed board 4 to perform arc-shaped movement connection, so as to drive the baby on the arc-shaped bed board 4 to swing subsequently.

[0036] Through the fixed blocks 5 provided on the monitoring box 1, the fixed blocks 5 are fixedly supported on the monitoring box 1. Through the V-shaped grooves 501 opened on the fixed blocks 5 and the movable blocks 6 provided on the V-shaped grooves 501, the V-shaped grooves 501 can support the movable blocks 6. And the right-angle blocks 7 provided on the movable blocks 6, then the right-angle blocks 7 are fixedly supported on the movable blocks 6. Through the side guard plates 8 provided on the right-angle blocks 7, and the side guard plates 8 are adapted to the arc-shaped surfaces on both sides of the monitoring box 1, so as to protect both sides of the arc-shaped bed board 4 subsequently and prevent children from accidentally falling off the arc-shaped bed board 4.

[0037] Through the track block 9 provided on the monitoring box 1, the track block 9 is fixedly supported on the monitoring box 1, and the lifting block 10 provided on the track block 9 enables the lifting block 10 to be connected in a lifting and moving manner on the inner wall of the track block 9. Through the connecting rod 11 provided on the lifting block 10, the connecting rod 11 can support the position of the side guard plate 8 through the movable block 6, and the adjusting mechanism provided on the monitoring box 1 can drive the side guard plate 8 to reciprocally flip for automatic adjustment, so as to facilitate medical staff to pick up or put down the child on the arc-shaped bed board 4.

[0038] Embodiment 2:

[0039] On the basis of Embodiment 1, further:

[0040] The adjusting mechanism includes support grooves 101 symmetrically opened on both sides at one end of the monitoring box 1. The inner walls of the two support grooves 101 are horizontally movably connected with L-shaped rods 18. One end of each L-shaped rod 18 close to the lifting block 10 is fixedly connected with a rectangular plate 19. First inclined slots 191 for pulling the lifting block 10 to move up and down reciprocally are opened on the two rectangular plates 19. One side of each lifting block 10 close to the rectangular plate 19 is fixedly connected with a support block 20, and the first inclined slot 191 supports the support block 20 movably.

[0041] The inner wall of the monitoring box 1 close to one end of the support groove 101 is fixedly connected with a U-shaped seat 12. One end of the U-shaped seat 12 is penetrated and fixedly connected with a threaded rod 13 driven to rotate by a power mechanism. A threaded sleeve rod 14 is sleeved on the outer contour of the threaded rod 13, and the threaded sleeve rod 14 is screwed with the threaded rod 13. One end of the threaded sleeve rod 14 close to the threaded rod 13 is rotatably connected with a T-shaped block 15. The relative ends of the two L-shaped rods 18 are fixedly connected with the T-shaped block 15. A cavity 151 is opened on the T-shaped block 15. A locking block 16 for locking the threaded sleeve rod 14 is movably connected to the inner wall of the cavity 151. A locking groove 141 adapted to the locking block 16 is opened on the outer contour of the threaded sleeve rod 14, and a spring 17 for guiding the locking block 16 to move back and forth is fixedly connected to the opposite surfaces of the locking block 16 and the cavity 151.

[0042] During use, through the support groove 101 opened on the monitoring box 1 and the L-shaped rod 18 provided on the support groove 101, the support groove 101 can limit and support the moving direction of the L-shaped rod 18. Through the rectangular plate 19 provided on the L-shaped rod 18, the rectangular plate 19 is fixedly supported on the L-shaped rod 18. Through the first inclined slot 191 opened on the rectangular plate 19 and the support block 20 provided on the lifting block 10, the support block 20 can limit and support the position of the lifting block 10 under the action of the rectangular plate 19.

[0043] Through the U-shaped seat 12 provided on the monitoring box 1, the U-shaped seat 12 is fixedly supported on the monitoring box 1. Through the threaded rod 13 provided on the U-shaped seat 12, and the threaded rod 13 is driven by a motor to rotate, so that the motor can drive the threaded rod 13 to perform a fixed-axis reciprocating rotation on the U-shaped seat 12. Through the threaded sleeve rod 14 provided on the threaded rod 13, the threaded sleeve rod 14 is sleeved on the outer contour of the threaded rod 13 and is screwed. And the T-shaped block 15 provided on the threaded sleeve rod 14 can make the T-shaped block 15 rotate and support on the outer contour of the threaded sleeve rod 14. Through the cavity 151 opened on the T-shaped block 15, and the locking block 16 provided on the cavity 151, the locking block 16 is movably supported on the inner wall of the cavity 151. Through the locking groove 141 opened on the threaded sleeve rod 14, and the spring 17 provided on the locking block 16, in the initial state, the locking block 16 moves to the inner wall of the locking groove 141 under the elastic force of the spring 17, so that the locking block 16 can lock the threaded sleeve rod 14. And the L-shaped rod 18 is fixedly supported on the T-shaped block 15. Along with the fixed-axis reciprocating rotation of the threaded rod 13, thus the threaded sleeve rod 14 can drive the T-shaped block 15 and the L-shaped rod 18 to perform a horizontal reciprocating movement under the action of the threaded rod 13.

[0044] As Figure 1 - Figure 4 shown, in the initial state, the side guard plates 8 on both sides are unfolded to the horizontal state, so that medical staff can easily place the child on the arc-shaped bed board 4 or pick up the child on the arc-shaped bed board 4. And the side guard plates 8 are in the horizontal state, and medical staff can place the medical devices and instruments to be used on the side guard plates 8, which is convenient for medical staff to monitor the physical condition of the child on the arc-shaped bed board 4 in real time.

[0045] When the L-shaped rod 18 drives the rectangular plate 19 to move towards the side away from the track block 9, at this time, the support block 20 can drive the lifting block 10 to move in the upward vertical direction under the action of the first inclined groove 191. And the connecting rod 11 is rotatably supported on the lifting block 10 and the movable block 6, so that the connecting rod 11 can push the movable block 6 at the bottom of the right-angle block 7 to move along the arc-shaped groove on one side of the V-shaped groove 501 under the action of the lifting block 10. Thus, the right-angle block 7 can drive the side guard plate 8 to flip in the vertical direction towards the side close to the monitoring box 1 under the action of the connecting rod 11, and the side guard plate 8 can be attached to the arc-shaped surfaces on both sides of the monitoring box 1, realizing the protection of the child on the arc-shaped bed board 4 and preventing the child from falling off the arc-shaped bed board 4.

[0046] When the L-shaped rod 18 drives the rectangular plate 19 to move towards the side close to the track block 9, then the above structure moves in the opposite direction synchronously, so that the right-angle block 7 can drive the side guard plate 8 to reset and flip to the horizontal state.

[0047] Embodiment Three:

[0048] On the basis of the second embodiment, further:

[0049] Arc-shaped rack bars 21 are fixedly connected symmetrically on both sides of the bottom of the arc-shaped bedplate 4, and gears 22 that are meshed and driven with the arc-shaped rack bars 21 are rotatably connected by fixed axes symmetrically on both sides of the monitoring box 1. Track plates 23 are fixedly connected symmetrically on both sides of the bottom of the monitoring box 1, and tooth plates 24 that are meshed and driven with the gears 22 are horizontally movably connected to the inner walls of the two track plates 23.

[0050] During use, through the arc-shaped rack bar 21 provided on the arc-shaped bedplate 4, the arc-shaped rack bar 21 is fixedly supported on the arc-shaped bedplate 4. Through the gear 22 provided on the monitoring box 1, and the gear 22 is rotatably supported on the monitoring box 1, so that the gear 22 can be meshed and driven with the arc-shaped rack bar 21. Through the track plate 23 provided on the monitoring box 1, the track plate 23 is fixedly supported on the monitoring box 1. Through the tooth plate 24 provided on the track plate 23, and the track plate 23 limits and supports the moving direction of the tooth plate 24, the tooth plate 24 can be meshed and driven with the gear 22.

[0051] A swinging mechanism for driving the arc-shaped bedplate 4 to swing reciprocally is provided on the U-shaped seat 12. The swinging mechanism includes that one end of the U-shaped seat 12 far from the threaded rod 13 is penetrated and rotatably connected with a rotating sleeve rod 25, and the tooth plate 24 penetrates into the inner wall of the rotating sleeve rod 25 and is axially movably connected. A cylindrical block 26 is fixedly connected to the outer contour of the rotating sleeve rod 25. A W-shaped groove 261 is formed in the outer contour of the cylindrical block 26. Pulling rods 27 for horizontally reciprocally moving the tooth plate 24 are movably connected symmetrically on both sides of the inner wall of the W-shaped groove 261. One end of each pulling rod 27 far from the cylindrical block 26 is fixedly connected to the adjacent tooth plate 24 respectively.

[0052] One side of the T-shaped block 15 close to the locking block 16 is penetrated and horizontally movably connected with a moving rod 28. A second inclined groove 281 for pulling the locking block 16 to unlock the threaded sleeve rod 14 is formed in the L-shaped rod 18. A connecting block 29 is fixedly connected to one side of the locking block 16 close to the moving rod 28, and the connecting block 29 penetrates into the inner wall of the second inclined groove 281 and is movably connected.

[0053] In use, through the moving rod 28 provided on the T-shaped block 15, the moving rod 28 is horizontally movably connected to the T-shaped block 15. Through the rectangular plate 19 provided on the locking block 16 and the second inclined groove 281 opened on the moving rod 28, the second inclined groove 281 can movably support the rectangular plate 19. When the T-shaped block 15 drives the moving rod 28 to move to the extreme position away from one end of the threaded rod 13 and the moving rod 28 abuts against the U-shaped seat 12, the moving rod 28 is in a static state. Along with the T-shaped block 15 driving the locking block 16 to move towards the end away from the threaded rod 13, the connecting block 29 pulls the locking block 16 to move in the upward vertical direction under the action of the second inclined groove 281, and the spring 17 is squeezed and contracted under the action of the locking block 16. At the same time, the locking block 16 disengages from the locking groove 141 and unlocks the threaded sleeve rod 14, so that the threaded rod 13 can drive the threaded sleeve rod 14 to rotate synchronously.

[0054] Through the rotating sleeve rod 25 provided on the U-shaped seat 12 and the cylindrical block 26 provided on the rotating sleeve rod 25, the rotating sleeve rod 25 can drive the cylindrical block 26 to rotate and support on the U-shaped seat 12. At the same time, the rotating sleeve rod 25 is sleeved on the threaded sleeve rod 14 and axially movably connected, so that the threaded sleeve rod 14 can drive the rotating sleeve rod 25 and the cylindrical block 26 to rotate synchronously on the U-shaped seat 12. Through the W-shaped groove 261 opened on the cylindrical block 26 and the pull rod 27 provided on the W-shaped groove 261, the W-shaped groove 261 can movably support the pull rod 27, and the pull rod 27 is fixedly supported on the tooth plate 24. Along with 205 driving the cylindrical block 26 to rotate on the U-shaped seat 12, the pull rod 27 can pull the tooth plate 24 to horizontally reciprocate on the track plate 23 under the action of the W-shaped groove 261, and the gear 22 meshes and drives with the tooth plate 24 and the arc-shaped rack 21, so that the gear 22 can drive the arc-shaped bed board 4 and the arc-shaped block 3 to swing in an arc reciprocally on the inner wall of the arc-shaped through groove 201 under the action of the tooth plate 24, improving the comfort of the child on the arc-shaped bed board 4 and achieving the effect of soothing the child and promoting sleep.

[0055] Embodiment Four:

[0056] On the basis of Embodiment Three, furthermore:

[0057] Both ends of the arc-shaped bed board 4 are fixedly connected with support blocks 20 for supporting children. On both sides of the inner wall of the monitoring box 1 at each end, cylindrical shells 31 are fixedly connected symmetrically. The opposite ends of the two cylindrical shells 31 on each side are penetrated and fixedly connected with connecting pipes 34. The ends of the two connecting pipes 34 at each end away from the cylindrical shells 31 penetrate into the inner wall of the adjacent airbag 30 and are fixedly connected. The inner wall of each cylindrical shell 31 is movably connected with a piston plate 32 for pumping air in and out of the airbag 30. T-shaped rods 33 are fixedly connected to the opposite surfaces of the two cylindrical shells 31 on each side. Each T-shaped rod 33 is fixedly connected to the adjacent side tooth plate 24.

[0058] During use, through the support blocks 20 provided on the arc-shaped bed board 4, the support blocks 20 are fixedly supported on the arc-shaped bed board 4 to facilitate the support of the heads and legs of children by the support blocks 20. Through the cylindrical shells 31 provided on the monitoring box 1, the cylindrical shells 31 are fixedly supported on the monitoring box 1. Through the connecting pipes 34 provided on the cylindrical shells 31, the two connecting pipes 34 at each end can communicate the adjacent airbag 30 and the cylindrical shell 31. Through the piston plate 32 provided on the cylindrical shell 31 and the T-shaped rod 33 provided on the piston plate 32, the T-shaped rod 33 can fixedly support the piston plate 32 on the tooth plate 24, and the piston plate 32 is movably connected to the inner wall of the cylindrical shell 31. Along with the horizontal reciprocating movement of the tooth plate 24, the T-shaped rod 33 can drive the piston plate 32 to perform horizontal reciprocating movement on the inner wall of the cylindrical shell 31.

[0059] Such as Figure 2 , Figure 5 , Figure 9 and Figure 10As shown, when the toothed plate 24 moves horizontally towards the end away from the cylindrical block 26, the arc-shaped bed plate 4 swings arcuately towards the end close to the cylindrical block 26, and the end of the arc-shaped bed plate 4 away from the cylindrical block 26 is at the bottom of the arc-shaped plate 2. At this time, the air pressure inside the cylindrical housing 31 at the end away from the cylindrical block 26 is in a positive pressure state under the action of the piston plate 32, so that the connecting pipe 34 can fill the gas inside the cylindrical housing 31 into the airbag 30 at the end of the arc-shaped bed plate 4 away from the cylindrical block 26, and the airbag 30 expands and bulges. At the same time, the piston plate 32 at the end close to the cylindrical block 26 can extract the gas inside the airbag 30 at the end of the arc-shaped bed plate 4 close to the cylindrical block 26 into the inside of the cylindrical housing 31 through the connecting pipe 34, then the airbag 30 at the end of the arc-shaped bed plate 4 close to the cylindrical block 26 contracts. When the toothed plate 24 moves back towards the end close to the cylindrical block 26, the above structure moves back synchronously in the opposite direction, so that the airbag 30 on the arc-shaped bed plate 4 at the bottom of the arc-shaped plate 2 can expand and bulge, forming an effect of supporting and abutting the child, ensuring the stability of the child on the arc-shaped bed plate 4, avoiding the shaking of the child's body along with the swing of the arc-shaped bed plate 4, and further improving the comfort of the child.

[0060] Furthermore, it is realized that in the actual use process of the existing device, the upper side guard plate of the bearing bed can be automatically adjusted, which is convenient to use and better than the traditional products.

[0061] The standard parts used in this embodiment can be directly purchased from the market. For the non-standard structural components described in the specification and drawings, they can also be directly processed according to the existing technical knowledge without any doubt. At the same time, the connection methods of each component adopt the mature conventional means in the existing technology, and the machines, parts and equipment all adopt the conventional models in the existing technology, so no specific description will be made here.

[0062] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A monitoring device for pediatric surgical care, characterized in that: The invention comprises a monitoring box (1) driven to move by an external vehicle frame, wherein arc-shaped plates (2) are fixedly connected at symmetrical positions on both sides of the inner wall of the monitoring box (1), arc-shaped through grooves (201) are opened at corresponding positions of the two arc-shaped plates (2), and the inner walls of the arc-shaped through grooves (201) on both sides are movably connected with arc-shaped blocks (3) that can move back and forth in an arc, and the opposite sides of the two arc-shaped blocks (3) are fixedly connected with arc-shaped bed boards (4) that support children, and the symmetrical positions on both sides of the monitoring box (1) are fixedly connected with the two arc-shaped blocks (3). A fixed block (5) is fixedly connected to the upper side, and a V-shaped groove (501) is provided on the fixed blocks (5) on both sides. Two movable blocks (6) are movably connected to the inner wall of each V-shaped groove (501). A right-angle block (7) is fixedly connected to the two movable blocks (6) on each side. The ends of the right-angle blocks (7) on both sides are fixedly connected to side guard plates (8) for protecting the two sides of the arc-shaped bed board (4). The monitoring box (1) is provided with an adjustment mechanism for driving the side guard plates (8) to flip back and forth.

2. A pediatric surgical nursing monitoring device according to claim 1, characterized in that: The monitoring box (1) is fixedly connected to track blocks (9) at symmetrical positions on both sides, and the inner walls of the track blocks (9) on both sides are connected to lifting blocks (10) for lifting and moving. The lifting blocks (10) on both sides are connected to connecting rods (11) for supporting the side guard plates (8) by fixed axis rotation, and the end of the connecting rod (11) on each side away from the lifting block (10) is respectively connected to the movable block (6) at the bottom end of the right-angle block (7) on the adjacent side for rotation.

3. A pediatric surgical nursing monitoring device according to claim 2, characterized in that: The adjustment mechanism comprises support grooves (101) provided at symmetrical positions on both sides of one end of the monitoring box (1), the inner walls of the support grooves (101) on both sides are horizontally movably connected with L-shaped rods (18), one end of each side of the L-shaped rod (18) close to the lifting block (10) is fixedly connected to a rectangular plate (19), and the two rectangular plates (19) are provided with first inclined grooves (191) for pulling the lifting block (10) to perform lifting and reciprocating movements, and one side of each lifting block (10) close to the rectangular plate (19) is fixedly connected to a support block (20), and the first inclined groove (191) movably supports the support block (20).

4. A pediatric surgical nursing monitoring device according to claim 3, characterized in that: The inner wall of the monitoring box (1) near one end of the support groove (101) is fixedly connected with a U-shaped seat (12), one end of the U-shaped seat (12) is penetrated and rotatably connected with a threaded rod (13) driven to rotate by a power mechanism, a threaded sleeve rod (14) is sleeved on the outer contour of the threaded rod (13), and the threaded sleeve rod (14) is screwed to the threaded rod (13), and a T-shaped block (15) is rotatably connected to the outer contour of the threaded sleeve rod (14) near one end of the threaded rod (13), and the L-shaped blocks on both sides are connected to the inner wall of the monitoring box (1) near one end of the support groove (101). The opposite end of the T-shaped rod (18) is fixedly connected to the T-shaped block (15); a cavity (151) is provided on the T-shaped block (15); a locking block (16) for locking the threaded sleeve (14) is movably connected to the inner wall of the cavity (151); a locking groove (141) adapted to the locking block (16) is provided on the outer contour of the threaded sleeve (14); and a spring (17) for guiding the locking block (16) to perform a reset movement is fixedly connected to the opposite surface of the locking block (16) and the cavity (151).

5. A pediatric surgical nursing monitoring device according to claim 1, characterized in that: The bottom of the arc-shaped bed board (4) is fixedly connected to arc-shaped racks (21) at symmetrical positions on both sides, and the monitoring box (1) is fixedly connected to gears (22) that mesh with the arc-shaped racks (21) at symmetrical positions on both sides. The bottom of the monitoring box (1) is fixedly connected to track plates (23) at symmetrical positions on both sides, and the inner walls of the track plates (23) on both sides are horizontally connected to gear plates (24) that mesh with the gears (22).

6. A pediatric surgical nursing monitoring device according to claim 4, characterized in that: The U-shaped seat (12) is provided with a rocking mechanism for driving the arc-shaped bed plate (4) to rock back and forth, the rocking mechanism comprising a rotating sleeve rod (25) penetrating and rotatably connected to one end of the U-shaped seat (12) away from the threaded rod (13), and a tooth plate (24) penetrating the inner wall of the rotating sleeve rod (25) and axially movably connected, a columnar block (26) is fixedly connected to the outer contour of the rotating sleeve rod (25), a W-shaped groove (261) is provided on the outer contour of the columnar block (26), and pull rods (27) for pulling the tooth plate (24) to move horizontally back and forth are movably connected at symmetrical positions on both sides of the inner wall of the W-shaped groove (261), and the end of the pull rod (27) on each side away from the columnar block (26) is fixedly connected to the tooth plate (24) on the adjacent side.

7. A pediatric surgical nursing monitoring device according to claim 4, characterized in that: A moving rod (28) is penetrated and horizontally movably connected to a side of the T-shaped block (15) close to the locking block (16); a second inclined groove (281) for pulling the locking block (16) to unlock the threaded sleeve (14) is provided on the L-shaped rod (18); a connecting block (29) is fixedly connected to a side of the locking block (16) close to the moving rod (28); and the connecting block (29) penetrates the inner wall of the second inclined groove (281) and is movably connected.

8. A pediatric surgical nursing monitoring device according to claim 6, characterized in that: Support blocks (20) for supporting children are fixedly connected at symmetrical positions at both ends of the arc-shaped bed board (4); cylindrical shells (31) are fixedly connected at symmetrical positions on both sides of the inner wall of the monitoring box (1) at each end; the opposite ends of the two cylindrical shells (31) on each side are penetrated and fixedly connected with connecting pipes (34); the ends of the two connecting pipes (34) at each end away from the cylindrical shells (31) are penetrated to the inner wall of the airbag (30) at the adjacent end and are fixedly connected; the inner wall of each cylindrical shell (31) is movably connected with a piston plate (32) for pumping and exhausting air inside the airbag (30); T-shaped rods (33) are fixedly connected to the opposite surfaces of the two cylindrical shells (31) on each side; and the T-shaped rod (33) on each side is fixedly connected to the toothed plate (24) on the adjacent side.

Citation Information

Patent Citations

  • Intensive care device for department of pediatrics

    CN114587820A